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  • Artikel  (5.146)
  • Institute of Electrical and Electronics Engineers (IEEE)
  • 2015-2019  (5.146)
  • Physik  (5.146)
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  • 1
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-08-11
    Beschreibung: Gold nanorods (GNRs) with surface plasmon resonance peak at 1063.8 nm were fabricated and experimentally exploited as the single and combined saturable absorber (SA) in a $Q$ -switched Nd:YAG laser for the first time. In the situation using GNRs as a single SA, the maximum pulse energy of 19 $muhbox{J} $ was achieved at a pulse repetition rate of 20 kHz. However, due to the small effective modulation depth of the GNRs, microsecond pulses were generated in such a GNRs-based passively $Q$ -switched laser. A novel configuration using GNRs as a combined SA in an acoustooptic $Q$ -switched Nd:YAG laser was proposed. The small nonlinear loss modulation induced by the GNRs played a distinctive role in flexibly manipulating the nanosecond pulse waveforms. Our study demonstrated the feasibility of generating high-energy pulses by singly using GNRs-based SA in all solid-state lasers. Meanwhile, a new application mode incorporating GNRs as a combined SA was studied, providing an alternative method to take advantage of the nanomaterial-based SA with a relatively small modulation depth.
    Digitale ISSN: 1943-0655
    Thema: Elektrotechnik, Elektronik, Nachrichtentechnik , Physik
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  • 2
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-08-04
    Beschreibung: This paper proposes the improved design of an ultraviolet (UV)- and-blue-light-inhibited white light-emitting diode for use as a safe and practical light source. Covered with a glass substrate coated with a photocatalyst resin on one side and a reflectance film on the other side, wavelengths below 400 nm are reflected back to re-excite the red–green–blue phosphors and, consequently, enhance luminous efficiency. The absorption spectrum of bismuth oxide photocatalysts is below 521 nm, and the leaked UV and blue light can be absorbed, thereby exciting electron–hole pairs and producing the photocatalytic effect. Thus, blue light and UV leakage can be suppressed appreciably, and the luminous efficiency can be increased markedly. Experimental results showed a UV suppression ratio of 88.43% and a visible light increasing ratio of 21.66%. The Commission International de L'Eclairage chromaticity coordinates $(x,y)$ were (0.343, 0.404), the correlated color temperature and the deviation from de Blackbody locus were (5201 K, 0.0250), and the color rendering index was 93.16. In addition, the photocatalyst coating layer can act as a diffuser to provide a comfortable visual experience and facilitate environmental purification.
    Digitale ISSN: 1943-0655
    Thema: Elektrotechnik, Elektronik, Nachrichtentechnik , Physik
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  • 3
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-08-04
    Beschreibung: Metamaterial-based perfect absorbers have attracted considerable attention due to their potential for practical applications. The existing absorbers, however, are mostly polarization insensitive or only sensitive to one direction, which is inapplicable in some areas. Polarization tunable or high absorption in two orthogonal directions is very useful and necessary. Herein, we present a polarization tunable absorber formed by an asymmetric patch and a dielectric layer on top of a metallic board. With this structure, the frequency of the absorber can be tuned by merely changing the polarization of the incident. The tunable mechanism originates from the different length of the patch along the two orthogonal directions. The concept is rather general and applicable to various absorbers, as long as the asymmetric design is valid. The absorber can find practical applications in manipulation of the polarization of the light and detecting waves with specific polarization.
    Digitale ISSN: 1943-0655
    Thema: Elektrotechnik, Elektronik, Nachrichtentechnik , Physik
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  • 4
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-08-07
    Beschreibung: We demonstrate low-voltage waveguide-coupled germanium avalanche photodetectors (APDs) with a (wafer-scale mean) gain $times$ bandwidth product of 140 GHz at $-$ 5 V by utilizing a 185-nm-thick Ge layer. An optical receiver based on such an APD operating up to 25 Gb/s is demonstrated.
    Digitale ISSN: 1943-0655
    Thema: Elektrotechnik, Elektronik, Nachrichtentechnik , Physik
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  • 5
    Publikationsdatum: 2015-08-18
    Beschreibung: We report on the fabrication and measurement of the switching characteristics of Co/Pd multi-layer thin films and nanodots. We used the method of anomalous Hall effect to obtain the hysteresis curves of both in-plane and out-of-plane magnetization. While Co/Pd thin film is found to switch by nucleation followed by domain propagation, Co/Pd nanodots switch by quasi-coherent rotation. We found that the coercivity of Co/Pd increases by a power law with respect to decreasing dots size. The coercivity can be reduced by exchange coupling the Co/Pd multi-layer to a 2 nm thick Co layer. Adding a Cu spacer layer between the Co/Pd multi-layer and Co layer provides a reliable way to modulate the strength of exchange coupling and tailoring the coercivity. As the Cu spacer becomes thicker, the coercivity increases. The exchange energy density is estimated to be 14.6 Merg/cm 3 and the exchange constant, 2.92 erg/cm 2 . The dependence of saturation field and coercivity on the thickness of the Cu spacer layer is fitted to the same empirical model and the exchange interaction is found to decay exponentially with distance. The exchange-coupled samples switch by quasi-domain propagation for both thin films and nanodots.
    Print ISSN: 0018-9464
    Digitale ISSN: 1941-0069
    Thema: Physik
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  • 6
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-08-18
    Beschreibung: In the past decade, nondestructive electromagnetic techniques have been extensively used for the characterization of materials. In this paper, the relation between the microstructural/mechanical characteristics of D2 tool steel with magnetic and electrical properties and eddy current (EC) test outputs has been established. Quenched samples obtained from different austenitizing temperatures (from 1000 °C to 1130 °C) were used to investigate the effect of retained austenite, martensite, and carbides phase fraction as well as prior austenite grain size, on the electromagnetic properties such as electrical resistivity and magnetic saturation. Variations of induced voltage in the pickup coil and location of impedance point in the impedance plane as a function of austenitizing temperature were interpreted by considering the changes in magnetic saturation and electrical resistivity and their effects on the EC outputs. This paper indicated that there is a good correlation between the EC parameters and retained austenite.
    Print ISSN: 0018-9464
    Digitale ISSN: 1941-0069
    Thema: Physik
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  • 7
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-08-18
    Beschreibung: Magnetic flux leakage (MFL) technique is generally considered as an efficient and effective nondestructive testing method, which has been widely used in the drill pipe detection in oil field. This paper aims at studying the magnetic concentrating effect, and proposing a method of gathering the MFL by means of magnetic concentrating device. Electromagnetic finite-element analysis shows that pipe MFL signals centralize near defects obviously and the leakage signals detected by Hall elements enhance greatly as magnetic concentrating structure can collect useful magnetic component. A drill pipe MFL experiment confirms the analysis results that the probe with magnetic concentrating device could obviously improve SNR of MFL signals, increase measuring the width of defects and reduce the requirements of liftoff value. Therefore, it is of great help to improve pipe leakage flux testing sensitivity.
    Print ISSN: 0018-9464
    Digitale ISSN: 1941-0069
    Thema: Physik
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  • 8
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-08-18
    Print ISSN: 0018-9499
    Digitale ISSN: 1558-1578
    Thema: Energietechnik , Physik
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  • 9
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-08-18
    Beschreibung: Programming languages like C and Ada combined with proprietary embedded operating systems have dominated the real-time application space for decades. The new C++11 standard includes native, language-level support for concurrency, a required feature for any nontrivial event-oriented real-time software. Threads, Locks, and Atomics now exist to provide the necessary tools to build the structures that make up the foundation of a complex real-time system. The National Spherical Torus Experiment Upgrade (NSTX-U) at the Princeton Plasma Physics Laboratory (PPPL) is breaking new ground with the language as applied to the needs of fusion devices. A new Digital Coil Protection System (DCPS) will serve as the main protection mechanism for the magnetic coils, and it is written entirely in C++11 running on Concurrent Computer Corporation’s real-time operating system, RedHawk Linux. It runs over 600 algorithms in a 5 kHz control loop that determine whether or not to shut down operations before physical damage occurs. To accomplish this, NSTX-U engineers developed software tools that do not currently exist elsewhere, including real-time atomic synchronization, real-time containers, and a real-time logging framework. Together with a recent (and carefully configured) version of the GCC compiler, these tools enable data acquisition, processing, and output using a conventional operating system to meet a hard real-time deadline (that is, missing one periodic is a failure) of 200 microseconds.
    Print ISSN: 0018-9499
    Digitale ISSN: 1558-1578
    Thema: Energietechnik , Physik
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  • 10
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-08-18
    Beschreibung: The two-, three-, and four-channel mapping multiplexing technique (MMT) is demonstrated to increase the data capacity of multilevel intensity-modulated transmission formats to 2, 3, and 4 bits/symbol with a substantial reduction in power penalty. This paper outlines the $N$ -channel MMT design metric consideration influence on the performance enhancement of higher order amplitude modulated systems in terms of power penalty, receiver sensitivity, and spectral efficiency. The signal space model has been developed for $N$ -channel MMT, where the average electrical and optical power expressions are derived. Transmission of 2, 3, and 4 bits/symbol using MMT system shows better performance in terms of the average optical power penalty, in comparison with pulse amplitude modulation (M-PAM) formats, with respect to the information capacity. The proposed scheme can be considered as an alternative to M-PAM systems with enhanced power efficiency.
    Digitale ISSN: 1943-0655
    Thema: Elektrotechnik, Elektronik, Nachrichtentechnik , Physik
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  • 11
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-08-18
    Beschreibung: In this paper, a novel meander–spiral coil (MSC) was designed as an eddy-current sensor (ECS) probe, which has small sensing area and spot size, nearly no limitation of mounting space, and can perform better than the regular-spiral coil (RSC). The results of the finite-element analysis show that the MSC has a magnetic active area that was only a quarter of that of the RSC. The MSC has much smaller inductance and resistance than the RSC, though the former has high sensitivity similar to the latter. These types of spiral coils were manufactured by printed circuit board technology and tested, which proves that the MSC has a small sensing range. Owing to MSC’s small magnetic active area and high performance, this type of spiral coil is suitable for applications in sensor arrays and micro-electromechanical systems. Furthermore, using the MSC, ECSs have the potential to be used for micro-gap measurement, accelerometers, and pressure measurement applications, as in the case of capacitive sensors. Moreover, ECSs are inherently immune to environmental contaminations.
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    Digitale ISSN: 1941-0069
    Thema: Physik
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  • 12
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-08-18
    Beschreibung: Multiphase brushless dc (BLDC) machines are implemented in electric and hybrid electric vehicle applications due to their high torque/power density, good fault tolerance capability, and low torque ripple. Moreover, the per-phase converter rating can be reduced by increasing the phase number. However, the number of magnetic couplings between phases increases with the phase number, and these magnetic couplings can have an important influence on the machine performance. Therefore, they need to be considered in simulation models and their effect should be considered in control algorithms. Accordingly, the objective of this paper is to analyze the effect of magnetic phase couplings on the performance of multiphase BLDC machines with an overlapping phase winding configuration. First, a detailed electric machine model, in which the machine parameters that are determined by 2-D finite-element method analysis are implemented, is developed. Using this model, the influence of mutual inductances on phase current characteristics with pulse amplitude modulation (PAM) and pulsewidth modulation (PWM) controls is investigated. In addition, a novel PAM-based control strategy, in which the effect of phase mutual inductances is considered, is proposed and analyzed. After demonstrating the influence of mutual inductances on phase current characteristics, the dependence of mutual inductances on the winding configuration is studied. Finally, experimental results with the PAM control and the new PAM-based control are used to validate the simulation results.
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    Digitale ISSN: 1941-0069
    Thema: Physik
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  • 13
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-08-21
    Beschreibung: Optical networks-on-chips (ONoCs) are burgeoning structures of communication that can give a solution to the bandwidth and latency for multiprocessor systems-on-chips. Furthermore, photonic devices are widely used in ONoCs but suffer from crosstalk noise. Therefore, crosstalk noise is the critical factor that affects signal transmission and limits the network scale of ONoCs. To reduce the crosstalk noise sharply, an angle optimization that uses the cross angle of 60 $^{circ}$ or 120 $^{circ}$ instead of the conventional angle of 90 $^{circ} $ is proposed to optimize the Crux router. Furthermore, we present a signal transmission system simulation model for the mesh-based ONoC. For different routers applied to the mesh-based ONoC, the simulation model can present the time-domain waveform, eye diagram, and bit-error-rate (BER) curve clearly. On the basis of the analytical model, the results show that the minimum signal-to-noise ratio (SNR) of a 7 $times$ 7 mesh-based ONoC is 20.9 dB when using optimized Crux routers, and the injection power is equal to 0 dBm, which is 2.1 dB better than using Crux routers. Therefore, the application of angle optimization to the Crux router and mesh network can minimize crosstalk noise and improve the scalability of mesh-based ONoCs.
    Digitale ISSN: 1943-0655
    Thema: Elektrotechnik, Elektronik, Nachrichtentechnik , Physik
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  • 14
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-08-25
    Beschreibung: A working small-footprint asymmetrically and vertically coupled hybrid Si/GaN microring resonator (HMR) was demonstrated. The HMR of a minimum radius of 20 $muhbox{m}$ was fabricated in a high-yield ( $sim$ 90%) hybrid nanophotonic platform that allowed interactions between the GaN microring and the underlying Si waveguide circuit. The HMR's spectral response across the telecommunication C- and L-bands was measured. The high extinction ratio of up to 17 dB, the resonance linewidth as narrow as 40 pm, and the intrinsic quality factor of up to 70 000, which was the highest value for GaN microring reported so far, were achieved. The explicit analytical model for the high-index-contrast HMR was developed. Our basic study opened new possibilities for exploring GaN–Si nonlinear phenomena and for developing complex on-chip optical interconnects.
    Digitale ISSN: 1943-0655
    Thema: Elektrotechnik, Elektronik, Nachrichtentechnik , Physik
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  • 15
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-08-18
    Beschreibung: Thallium-bromide (TlBr) is currently under investigation as an alternative room-temperature semiconductor gamma-ray spectrometer due to its favorable material properties (large bandgap, high atomic numbers, and high density). Previous work has shown that 5 mm thick pixelated TlBr detectors can achieve sub-1% FWHM energy resolution at 662 keV for single-pixel events. These results are limited to $ - 20{^ circ }{rm C}$ operation where detector performance is stable. During the first one to five days of applied bias at $ - 20{^ circ }{rm C}$ , many TlBr detectors undergo a conditioning phase, where the energy resolution improves and the depth-dependent electron drift velocity stabilizes. In this work, the spectroscopic performance, drift velocity, and freed electron concentrations of multiple 5 mm thick pixelated TlBr detectors are monitored throughout the conditioning phase. Additionally, conditioning is performed twice on the same detector at different times to show that improvement mechanisms relax when the detector is stored without bias. We conclude that the improved spectroscopy results from internal electric field stabilization and uniformity caused by fewer trapped electrons.
    Print ISSN: 0018-9499
    Digitale ISSN: 1558-1578
    Thema: Energietechnik , Physik
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  • 16
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-08-18
    Beschreibung: Silicon Photomultipliers (SiPMs) are attractive candidates for light detectors for next generation liquid xenon double-beta decay experiments, like nEXO (next Enriched Xenon Observatory). In this paper we discuss the requirements that the SiPMs must satisfy in order to be suitable for nEXO and similar experiments, describe the two test setups operated by the nEXO collaboration, and present the results of characterization of SiPMs from several vendors. In particular, we find that the photon detection efficiency at the peak of xenon scintillation light emission (175-178 nm) approaches the nEXO requirements for tested FBK and Hamamatsu devices. Additionally, the nEXO collaboration performed radio-assay of several grams of bare FBK devices using neutron activation analysis, indicating levels of $^{40}{rm K}$ , $^{232}{rm Th}$ , and $^{238}{rm U}$ of the order of $ 〈 0.15$ , ( $ 6.9cdot 10^{ - 4} - 1.3 cdot 10^{ - 2}$ ), and $ 〈 0.11 ~hbox{mBq}/hbox{kg}$ , respectively.
    Print ISSN: 0018-9499
    Digitale ISSN: 1558-1578
    Thema: Energietechnik , Physik
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  • 17
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-08-18
    Beschreibung: It is very important for plant operators to be informed of the departure from nucleate boiling ratio (DNBR) to prevent the fuel cladding from melting and a boiling crisis in a nuclear reactor. The reactor core monitoring and protection systems require a minimum DNBR value to monitor reactor coolant conditions. In this study, in order to estimate the minimum DNBR value, a cascaded fuzzy neural network (CFNN) method was used. The CFNN model can be used to estimate the minimum DNBR value through the process of adding fuzzy neural networks (FNNs) repeatedly. The proposed DNBR estimation algorithm was verified by applying the nuclear and thermal data acquired from many numerical simulations of the optimized power reactor 1000 (OPR1000). The CFNN model was compared to previously developed models and was found to be superior to them. Therefore, this model can be used to effectively monitor and predict the minimum DNBR in the reactor core.
    Print ISSN: 0018-9499
    Digitale ISSN: 1558-1578
    Thema: Energietechnik , Physik
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  • 18
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-08-18
    Print ISSN: 0018-9499
    Digitale ISSN: 1558-1578
    Thema: Energietechnik , Physik
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  • 19
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-08-18
    Beschreibung: In the light-emitting-diode (LED) industry, it is a great challenge to simultaneously achieve high efficiency values and excellent light quality in practical applications. In this paper, we have designed microscale-roughness-controlled-surface modules to optimize rectified mellowness index, quantum efficiency, correlated color temperature, and color rendering index; we have also discovered a mechanism that reduces the total internal reflection trapped within the diffuser, maximizes phosphor fluorescence probabilities, and randomizes photon emissions. The first effect subsequently leads to the photon-propagation-direction rectification, such that incident photons are allowed to escape from the top but are discouraged to reversely exit from the bottom. In addition to the discovery of this mechanism, we have proposed a previously undefined criterion that evaluates the uniformity of various optical parameters exemplified by wavelengths, solid angles, and spatial distributions. Current findings offer a guide on future research for human-eye-comfort-related uniformities.
    Digitale ISSN: 1943-0655
    Thema: Elektrotechnik, Elektronik, Nachrichtentechnik , Physik
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  • 20
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-08-18
    Beschreibung: A 2-D soft-in, soft-out equalizer consisting of multiple low-complexity constituent equalizers is proposed for the turbo equalization of 2-D intersymbol interference. The constituent equalizers are simple 1-D linear equalizers running in different directions over a 2-D array of storage cells. Simulation results as well as an extrinsic information transfer chart analysis indicate that the proposed concatenation provides performance comparable with finite-window trellis-based equalizers while requiring a much lower complexity level.
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    Digitale ISSN: 1941-0069
    Thema: Physik
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  • 21
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-08-21
    Beschreibung: We experimentally investigate the wavelength-division multiplexing (WDM) transmission of single-carrier 400G based on an orthogonal optical time-division multiplexed (orth-OTDM) 80-GBd polarization-division multiplexed (PDM) 8 quadrature-amplitude modulation (QAM) signal. The 80-GBd 8QAM signal is generated using the OTDM method based on two tributaries of time-domain orthogonal pulses with 40-GBd 8QAM signals. Full-band coherent detection is utilized with digital signal processing based on a single broadband receiver for the 80-GBd signals. The WDM transmission performance of single-carrier 400G signals within different channel grids and carrier spacing is also investigated. Finally, four 400G channels, each carrying an 80-GBd PDM-8QAM signal within 100-, 80-, and 75-GHz grids, are successfully transmitted over 1600-, 800-, and 400-km standard single-mode fibers with Erbium-doped fiber amplifier (EDFA)-only amplification below a pre-Forward error correction (FEC) bit-error rate (BER) of $2.4times10^{-2} $ (20% soft-decision FEC) , respectively. The achieved spectral efficiency for the 400G channel can be 4, 5, and 5.33 bit/s/Hz, respectively.
    Digitale ISSN: 1943-0655
    Thema: Elektrotechnik, Elektronik, Nachrichtentechnik , Physik
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  • 22
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-08-04
    Beschreibung: We design a series of plasmonic bowtie antennas with broadly varying resonant wavelengths from 1.34 to 3.36 $muhbox{m}$ under the same antenna footprint size. Based on the prototype of contour bowtie antennas (CBAs), we modify the geometry of CBAs with extensive resonant paths and, therefore, redshift resonances and maintain the gap enhancement factors, at least at the same level with that of the solid bowtie antenna.
    Digitale ISSN: 1943-0655
    Thema: Elektrotechnik, Elektronik, Nachrichtentechnik , Physik
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  • 23
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-08-04
    Beschreibung: As data centers evolve to sustain the economic scale in network traffic, optical interconnections are adapted to support the vast amount of capacity requirements. Among emerging solutions is the incorporation of digital-signal-processing (DSP) functionalities at the receiver to compensate for the optical fiber and optoelectronic components impairments. The bottleneck in such architecture is often implementing a high-resolution and high-speed analog-to-digital-converter (ADC) device, which usually leads to massive power consumption and high costs. In this paper, we propose novel transmission schemes based on low-resolution ADCs, termed DSP-enhanced analog-to-digital conversion. The proposed methods are based on the mathematical principle of predictive quantization, combined with linear equalization theory. Mathematical analysis and performance bounds associated with common channel impairments are derived. Simulation results demonstrate that the DSP-enhanced ADC provides a significant signal-to-noise-ratio (SNR) gain and, subsequently, may enable heavy digital compensation with reduced-resolution ADCs.
    Digitale ISSN: 1943-0655
    Thema: Elektrotechnik, Elektronik, Nachrichtentechnik , Physik
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  • 24
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-08-07
    Beschreibung: A monolithically integrated silicon coherent receiver based on a novel scheme with a crossing-free 90 $^{circ}$ hybrid optical coupler and two balanced germanium photodetectors is reported. The integrated receiver is compact (footprint is $0.8times 1.0 hbox{mm}^{2}$ ), and it is demonstrated by working with single-polarization 56-Gb/s quadrature phase-shift keying (QPSK) and 80-Gb/s 16-quadrature amplitude modulation (16-QAM) signals. In particular, QPSK transmission that is back-to-back at 28 Gbaud shows a bit-error rate (BER) below $10^{-4}$ for an optical signal-to-noise ratio (OSNR) lower than 17 dB, whereas 16-QAM at 20 Gbaud shows a BER not better than $3^{ast}10^{-2}$ because of the nonideal behavior of the device. Reasons for the performance limitations are discussed.
    Digitale ISSN: 1943-0655
    Thema: Elektrotechnik, Elektronik, Nachrichtentechnik , Physik
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  • 25
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-08-14
    Beschreibung: We investigate lifetime (induced dipole–dipole interaction) of spontaneous parametric four-wave mixing (SP-FWM) and multiorder fluorescence (FL) signals controlled by polarization dressing in a heteronuclear-like molecule system of Pr $^{3+} $ :YSO. The comparisons between a lifetime of SP-FWM and multiorder FL controlled by single dressing, double dressing, and triple dressing polarization have been investigated. It is observed that FLs have a stronger dressing effect than SP-FWM. The polarization dressing is more obvious in the intensity signal in the spectral domain than that in the time domain. Such results have potential applications in quantum communication such as optical information storage, routing, and processing on a photonic chip.
    Digitale ISSN: 1943-0655
    Thema: Elektrotechnik, Elektronik, Nachrichtentechnik , Physik
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  • 26
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-08-14
    Beschreibung: The limited band of optical and electrical devices in an intensity-modulation direct detection (IM/DD) system is considered to be a major bottleneck that hinders the increase in transmission capacity. Spectrally efficient modulation formats and advanced digital signal processing are key technologies to improving the performance of IM/DD for high-speed short-reach optical systems. In this paper, we propose and experimentally demonstrate a novel Nyquist eight-level, pulse-amplitude, single-carrier modulation with frequency-domain equalization (PAM8-SCFDE). In addition, 40-GBd Nyquist PAM8-SCFDE signals can be successfully transmitted over 2-km standard single-mode fiber or 20-km large effective area fiber based on 10-G-class DAC and photodiode. Therefore, the achieved aggregate data rate is 120 Gb/s, and the measured bit error rate (BER) is under 7% pre-forward-error-correction (FEC) threshold of $3.8times 10^{-3} $ . Compared with conventional PAM8, this scheme can provide double spectral efficiency and 6-dB receiver sensitivity improvement.
    Digitale ISSN: 1943-0655
    Thema: Elektrotechnik, Elektronik, Nachrichtentechnik , Physik
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  • 27
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-08-14
    Beschreibung: An eight-channel integrated optical add-drop multiplexer with cascaded parent-sub microring resonators is experimentally demonstrated on a silicon-on-insulator (SOI) substrate. Through thermal tuning, each channel can be independently switched between the adding and dropping states. The measured thermal tuning efficiency is 0.15 nm/mW. Typically, all eight channels can be multiplexed and demultiplexed with a 2.6-dB drop loss, a 0.36-nm bandwidth ( $〉$ 40 GHz), and a $-$ 20-dB channel crosstalk. Moreover, the scheme to increase the number of operating channels is also discussed.
    Digitale ISSN: 1943-0655
    Thema: Elektrotechnik, Elektronik, Nachrichtentechnik , Physik
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  • 28
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-08-14
    Beschreibung: We apply the principle of master-slave (MS) interferometry to a full-field swept source optical coherence tomography (OCT) setup equipped with a fast 2-D camera. MS interferometry does not involve Fourier transformations and, therefore, eliminates the need for spectrum data resampling required by the conventional spectral domain OCT. Using this method in a full-field OCT setup, en face images are acquired in vivo from finger skin, Drosophila melanogaster larvae, and pupae, with no spectrum resampling and no mechanical scanning. The signal processing is based on a comparison operation of the shapes of channeled spectra for each camera pixel, with a set of reference signals (masks). In this way, en face OCT images can be obtained with no need for the volumetric assembly and software cutting the en face images from an image volume, which are required by the conventional spectral domain OCT method. We demonstrate that the sensitivity and axial resolution of the MS method in a full-field swept source OCT setup are similar to the values obtained using the conventional Fourier-transformation-based swept source OCT method in a full-field setup. Multiple en face images can be produced in parallel by using multiple stored shapes of channeled spectra for the depths of interest. The full-field MS-OCT method presented here opens the possibility of parallel processing for all image points in a 3-D volume of the object.
    Digitale ISSN: 1943-0655
    Thema: Elektrotechnik, Elektronik, Nachrichtentechnik , Physik
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  • 29
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-09-15
    Beschreibung: We reported a gas pressure sensor based on CO 2 -laser-induced long-period fiber grating (LPFG) in an air-core photonic bandgap fiber (PBF). The LPFG was inscribed in an air-core PBF by the use of an improved CO 2 laser system with an ultraprecision 2-D scanning technique, which induced periodic collapses of air holes along the axis of the PBF. Such an LPFG could be used to develop a promising gas pressure sensor with a sensitivity of −137 pm/MPa. Moreover, a simplified fiber model with a relatively similar elastic response was developed to qualitatively study the gas pressure response of the LPFG inscribed in the air-core PBF. A simulated stress distribution along the LPFG revealed that the gas pressure leads to a stress concentration at the collapsed area of the air holes in the fiber cladding, which finally results in a resonant wavelength shift of the LPFG through an elastooptical effect.
    Digitale ISSN: 1943-0655
    Thema: Elektrotechnik, Elektronik, Nachrichtentechnik , Physik
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  • 30
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-09-15
    Beschreibung: Visible light communication (VLC) is attractive as a supplementary method for future fifth-generation (5G) wireless communication owing to the shortage of radio-frequency bandwidth in conventional wireless communications. The VLC systems reported in the literature are mainly based on PIN receivers (Rxs). It is highly desirable if these VLC signals can be detected by using built-in complementary metal–oxide–semiconductor (CMOS) cameras as Rxs to provide flexible and low-cost wireless communications. However, using the CMOS camera is challenging. In this paper, we propose and demonstrate a VLC link using a CMOS mobile phone camera as Rx. By using the rolling shutter effect of the CMOS sensor, the VLC data rate can be significantly enhanced. We first use a second-order polynomial fitting to mitigate the “blooming effect” (saturation of pixels) of the CMOS sensor. In order to extend the VLC transmission distance and mitigate the influence of the background noise, we also propose and demonstrate using histogram equalization and Sobel filter to enhance VLC signal performance. Finally, a third-order polynomial fitting is used to define the threshold. The experimental results show that significant improvement of bit error rate (BER) for about an order of magnitude under different illuminances can be achieved.
    Digitale ISSN: 1943-0655
    Thema: Elektrotechnik, Elektronik, Nachrichtentechnik , Physik
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  • 31
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-09-18
    Beschreibung: Nd(TTA) 3 (TPPO) 2 complex (HTTA: 2-thenoyltrifluoroacetone, TPPO: triphenylphosphine oxide) doped SU-8 polymer waveguide amplifiers were demonstrated. The absorption and photoluminescence spectra were observed on a 100- $mutextrm{m}$ -thick film of the Nd(TTA) 3 (TPPO) 2 complex doped SU-8 polymer. Under excitation at 808 nm, the fluorescence was obtained at 904 nm, 1068 nm, and 1346 nm wavelengths. The full-width at half-maximum bandwidth was about 25 nm wide around 1068 nm. Using reactive ion etching technology, optical waveguides were fabricated by taking the Nd(TTA) 3 (TPPO) 2 complex doped SU-8 polymer and polymethylmethacrylate (PMMA) material as the core and cladding layers, respectively. According to fundamental rate equations and optical power propagation equations, the gain characteristic of the polymer waveguide amplifier was simulated to be 5.1 dB/cm. An experimental setup for the optical gain measurement was established. A relative optical gain of about 2.4 dB/cm at 1064 nm was obtained in a 20-mm-long multimode waveguide for an input signal power value of 0.1 mW and pump power of 140 mW.
    Digitale ISSN: 1943-0655
    Thema: Elektrotechnik, Elektronik, Nachrichtentechnik , Physik
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  • 32
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-09-18
    Beschreibung: The nonlinearity of a light-emitting diode (LED) limits the system performance of a visible light communications (VLC) system. Many nonlinearity mitigation methods have been studied. Recent technology advances in the micro-LED array have provided a simple alternative to deal with the system nonlinearity. In this paper, we study the approach of providing multiple access for the VLC system with the micro-LED array. A code-division multiple-access (CDMA) scheme that enables multiple access with variable data rate is proposed. In addition, the proposed system architecture is immune to the nonlinearity of the micro-LED array, thus providing optimal system performance. Simulations and laboratory experiments show the robustness and consistency of the proposed scheme.
    Digitale ISSN: 1943-0655
    Thema: Elektrotechnik, Elektronik, Nachrichtentechnik , Physik
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  • 33
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-09-18
    Beschreibung: In this paper, the constitutive relation of longitudinally magnetized ferrites (LMF) is simplified and transformed to an equivalent relation involving tensors with first-order dispersive components more suitable for use in the time domain analysis. Further treatment leads to a diagonal permeability tensor that yields approximating formulas to relate the magnetic field to the magnetic flux density, which allows eliminating this later and reducing the number of field variables involved. Later, a similar result is achieved using a variable transformation. This reveals that magnetized ferrites actually have a permeability tensor simpler than the Polder tensor, in addition to a permittivity tensor with first-order dispersive components, which contradicts the known theory about ferrites. Finally, it is shown that the results obtained for the LMF case could be extended to the transversely magnetized ferrite case and to the general case of arbitrary state of magnetization. Some examples are presented with numerical results to validate the proposed formulations.
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  • 34
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-09-18
    Beschreibung: Provides a listing of the editors, board members, and current staff for this issue of the publication.
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  • 35
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-09-18
    Beschreibung: Using electrodeposition into anodic aluminum oxide (AAO) membranes, we have successfully fabricated near-equiatomic Fe 48±3 Pd 52±3 nanowires (NWs) with the diameter of $approx 200$ nm and the length of $approx 3.5~mu{rm m}$ . X-ray diffraction and transmission electron microscopy/selected-area electron diffraction analyses revealed that the as-deposited NWs are isotropic and polycrystalline with an average crystal size of 5 nm and have an fcc crystal structure. Magnetic force microscopy (MFM) on a single Fe–Pd NW revealed its single-domain behavior with the easy axis of magnetization along the long axis of the NW. The magnetizationswitching behavior of a single Fe–Pd NW studied with the MFM suggested a square-shaped magnetization curve $(M/Ms = 1)$ with $H_{CVert} approx 3.2$ kA/m. In addition, using in-field MFM techniques, the effects of dipolar interactions in an Fe–Pd array of NWs still embedded in the AAO were determined. It was found that the dipolar interactions greatly reduce the parameters of the magnetization hysteresis loop, such as the coercivity, the remanence, and the switching-field distribution of the Fe–Pd NW array.
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  • 36
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-09-18
    Beschreibung: The Technical Committee of the IEEE Magnetics Society has selected seven research topics to develop their roadmaps, where major developments should be listed alongside expected timelines: 1) hard disk drives; 2) magnetic random access memories; 3) domain-wall devices; 4) permanent magnets; 5) sensors and actuators; 6) magnetic materials; and 7) organic devices. Among them, magnetic materials for spintronic devices have been surveyed as the first exercise. In this roadmap exercise, we have targeted magnetic tunnel and spin-valve junctions as spintronic devices. These can be used, for example, as a cell for a magnetic random access memory and a spin-torque oscillator in their vertical form as well as a spin transistor and a spin Hall device in their lateral form. In these devices, the critical role of magnetic materials is to inject spin-polarized electrons efficiently into a nonmagnet. We have accordingly identified two key properties to be achieved by developing new magnetic materials for future spintronic devices: 1) half-metallicity at room temperature (RT) and 2) perpendicular anisotropy in nanoscale devices at RT. For the first property, five major magnetic materials are selected for their evaluation for future magnetic/spintronic device applications: 1) Heusler alloys; 2) ferrites; 3) rutiles; 4) perovskites; and 5) dilute magnetic semiconductors. These alloys have been reported or predicted to be half-metallic ferromagnets at RT. They possess a bandgap at the Fermi level $E_{F}$ only for its minority spins, achieving 100% spin polarization at $E_{F}$ . We have also evaluated $text{L1}_{0}$ alloys and $D0_{22}$ –Mn alloys for the development of a perpendicula- ly anisotropic ferromagnet with large spin polarization. We have listed several key milestones for each material on their functionality improvements, property achievements, device implementations, and interdisciplinary applications within 35 years time scale. The individual analyses and the projections are discussed in the following sections.
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  • 37
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-09-18
    Beschreibung: Perpendicular magnetic recording (PMR) in the hard disk drive is approaching its physical limits. In an earlier work, the dedicated servo (DS) recording system has been proposed to provide continuous position error signal for servo, enable higher servo sampling rate, and improve the overall servo performance. A further benefit is that the DS layer results in surface area savings at the data layer. However, it was also reported that the embedded servo layer introduces baseline variation and non-linear transition shift (NLTS) to the readback signal of the data layer. In this paper, we propose novel signal processing techniques to improve the bit error rate (BER) in DS recording. The synchronous averaging technique is proposed to improve the BER in the presence of baseline variation distortions. Further, the servo and data-dependent noise prediction method is proposed to mitigate the effect of the NLTS. Through the use of these techniques the linear density loss from the conventional PMR media is reduced.
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  • 38
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-09-18
    Beschreibung: This paper presents a method that has been developed to determine the quantity of accumulated magnetic particles in mice tissues using magnetization measurements. Dispersions of platelet Fe 3 O 4 particles with the size of 30–50 nm and a saturation magnetization of $sim 80$ Am 2 /kg were intravenously administered to mice. Primary tissues were dried to measure the magnetization. The amounts of Fe 3 O 4 particles accumulated in the tissues were obtained by dividing the magnetization of tissues by the magnetization of Fe 3 O 4 particles under a magnetic field of 39.8 kA/m. A remarkable accumulation of particles was observed in the liver and the spleen, being supported by the observation of tissues using Prussian blue staining. Total Fe 3 O 4 particles accumulated in primary tissues were $sim 38$ –40 and 40–44 wt% against the particles in administered dispersions with 3 and 0.4 wt% contents, respectively. The method developed in this paper is considered to be effective for verifying magnetic hyperthermia and thermoablation therapies, in which the quantity of accumulated particles directly reflects the heating power required for those therapies.
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  • 39
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-09-18
    Beschreibung: Self-ordered arrays of Ni, Ni(50)Pd(50), and Ni(78)Pd(22) nanowires were synthesized by simultaneous electrochemical deposition of Ni and Pd components into porous templates of anodic aluminum oxide using alternating current. This paper is focused on the interplay of structure and chemical composition of Ni and Ni–Pd bicomponent nanowires arrays and the peculiarities of its magnetic anisotropy.
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  • 40
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-09-18
    Beschreibung: Most investigations of all spin logic (ASL) have been based on the monodomain approximation of magnetization switching. The sensitive and stochastic nature of spin transfer torque (STT) switching creates pressing requirements for analyzing ASL from a micromagnetic perspective also. Hence, in this paper, ASL is studied from a micromagnetic perspective by developing a simulation framework that can capture diffusive spin transport. The spin transport model is calibrated from the existing experimental results on nonlocal spin valve measurements. Then, using this framework, STT switching is studied for input–output nanomagnets with in-plane and perpendicular magnetic anisotropy for ASL devices (ASLDs). Precisely defined architecture and design constraints for such input–output nanomagnets are presented. Further, a previously proposed switching mechanism by driving the nanomagnet into a metastable state is also incorporated into micromagnetic framework. Using the aforementioned mechanism, the critical current required for STT switching can be reduced to as low as 20 $mu $ A. Moreover, the graphene channel ASLD using tunnel contact at the injector is demonstrated for copy and invert logic operations.
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  • 41
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-09-18
    Beschreibung: We present coupled spin torque nano oscillators (STNOs) as electronic neurons for efficient brain-inspired computation. The coupled STNOs show two distinct outputs, depending on whether the frequencies are locked or not. The locking mechanisms are based on magnetic coupling or injection locking. The neuron firing threshold can be set by tuning the locking range of the coupled STNOs. We employ a crossbar array of programmable memory devices like memristors to implement electronic synapses that work seamlessly with the coupled STNOs for hardware implementation of neural networks. Results show that injection locking-based neuron model can be attractive from scaling point of view and computation like character recognition can be performed with energy consumption per neuron of $sim $ 1.8X and $sim $ 3X lower than the digital and the analog CMOS counterpart, respectively.
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  • 42
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-09-18
    Beschreibung: With the train’s speed improving, and running interval time decreasing, traditional rail defect inspection methods cannot meet the efficiency requirement of railway industrial standards. In this paper, we propose a new online rail defect inspection method which is using electromagnetic tomography (EMT) technique. The method uses the tomographic approach to measure the alternating magnetic signal modulated by cracks in the rail and then reconstruct the distribution of cracks. The difference to common eddy-current rail defect inspection is, that the EMT can acquire the defect shape and position information. The sensor and signal processing hardware of the EMT rail defect inspection system can be installed on the common passenger or freight train. This solution allows continuous inspection, and therefore reduces the critical accident events caused by rail defect. A model is designed and the forward problem of the model is calculated using electromagnetic finite-element method. Rail defect reconstruction simulations are done using linear backprojection and Tikhonov regularization algorithm to verify the principle of this method. Furthermore, an experimental system is built to simulate the rail defect. The laboratory experiment results show that the electromagnetic rail defect inspection is a feasible approach for reconstruction of the shape and position information of rail defect.
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  • 43
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-09-18
    Beschreibung: This paper provides the 3-D time-dependent analytical solution of the electromagnetic fields and forces emerging if a coil or a permanent magnet moves with a sinusoidal velocity profile relative to a conducting slab of finite thickness. The results can be readily used in application scenarios related to electromagnetic damping, eddy current braking, energy harvesting, or nondestructive testing in order to efficiently analyze diffusion and advection processes in case of harmonic motion. This paper is performed for rectangular and circular coils as well as for cuboidal and cylindrical permanent magnets. The back reaction of the conductor and therewith associated inductive effects are considered. The solutions of the governing equations and the integral expressions for the time-dependent drag and lift force are provided. The analytical results are verified by a comparison with numerical simulations obtained by the finite-element method. The relative difference between the analytically and numerically evaluated force profiles was <0.1%. Exemplary calculations show that the waveforms of both force components strongly depend on the level of constant nominal velocity $v_{0}$ , the magnitude of the velocity oscillation amplitude $v_{1}$ , and the underlying oscillation frequency $f_{v}$ .
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  • 44
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-09-18
    Beschreibung: Provides a listing of board members, committee members and society officers.
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  • 45
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-09-18
    Beschreibung: The mechanism and the influence of the on-load terminal phase voltage distortion by the armature reaction in interior permanent magnet (IPM) machines with fractional-slot concentrated windings (FSCWs) are investigated in this paper, by taking a 12-slot/8-pole machine as an example. The phenomenon is presented first, which shows that the peak voltage will be much higher than the fundamental value, especially under the flux-weakening operation. Then, the mechanism is investigated with the aid of the frozen permeability method. Due to the geometric feature of the FSCW IPM rotor, the armature reaction flux will asymmetrically enhance the local magnetic saturation in the tooth-tips and the rotor lamination region near the rotor ribs, which disrupt the smooth variation of phase flux linkage and lead to a voltage distortion. With the increasing of current advancing angle ( $beta $ ), this effect will become more obvious and result in the higher distortion level. Furthermore, the influences of voltage distortion on the machine torque performance are investigated, which show that it will only contribute to the torque ripple in the constant torque region, but will largely reduce the flux-weakening operation region compared with the ideal one calculated by the fundamental voltages only. Finally, a prototype is manufactured and tested to validate the analyses.
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  • 46
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-09-18
    Beschreibung: A typical giant magnetostrictive actuator (GMA) expands a magnetostrictive rod to generate strain by varying the current in the coil that surrounds the magnetostrictive rod. The heat generated by the current deteriorates the GMA performance. In particular, a constant current in the coil is required to produce the desired magnetic field when an output strain should be maintained. The GMA does not produce any mechanical power in this condition, but constant power is being consumed by the excitation coil. This paper presents a new type of motor-driven GMA (MDGMA), which works in a coil-free driven manner. The magnetic field in the iron–gallium alloy (Galfenol), which is a type of magnetostrictive material, is periodically altered by rotating the permanent magnets instead of varying the coil current in the traditional GMA. The proposed MDGMA not only achieves continuous adjustment of the output strain, but can also maintain a constant output strain without consuming any power. In addition, the coil-free design releases the new MDGMA from the heat generated by the excitation coil, which allows the MDGMA to work more stably.
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  • 47
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-09-18
    Beschreibung: This paper presents a 3-D analytical model for axial-flux eddy-current couplings and brakes, leading to closed-form expressions for the torque and the axial force. The proposed model is valid under a steady-state condition (constant speed operation). It takes into account the reaction field due to induced currents in the moving conducting part. In order to simplify the analysis, we adopt the assumption of linearization at the mean radius, and the problem is then solved in 3-D Cartesian coordinates (curvature effects are neglected). The solution is obtained by solving the Maxwell equations with a magnetic scalar potential formulation in the nonconductive regions (magnets and air gap) and a magnetic field strength formulation in the conductive region (copper). Magnetic field distribution, axial force, and torque computed with the 3-D analytical model are compared with those obtained from the 3-D finite-element simulations and experimental results.
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  • 48
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-09-22
    Beschreibung: We describe a compact Yb:YAG laser Q-switched by a graphene-based saturable absorber and pumped by a laser diode at 932 or 969 nm. The compact laser generates a maximum average output power value of 185 mW at 1032 nm with a slope efficiency value of 12%. The shortest duration of the Q-switched pulse achieved is 228 ns at a repetition frequency of 285 kHz. The maximum pulse energy amounts to 0.65 $mumathrm{J}$ .
    Digitale ISSN: 1943-0655
    Thema: Elektrotechnik, Elektronik, Nachrichtentechnik , Physik
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  • 49
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-09-22
    Beschreibung: Orthogonal frequency-division multiplexing (OFDM) has been widely studied and adopted in visible-light communication (VLC) systems because of its high spectral efficiency and low-complexity implementation. However, OFDM-based VLC systems suffer from a high peak-to-average power ratio (PAPR), along with the nonlinear transfer characteristics of light-emitting diodes (LEDs). In this paper, a subcarrier grouping scheme for an OFDM-based VLC system is proposed. This scheme exploits the property that one LED lamp usually contains multiple independent LED chips. In the proposed scheme, all OFDM signal subcarriers are divided into groups, and each group is transmitted by an individual LED chip while the same receiver structure is maintained. The PAPR is reduced significantly because only some of the subcarriers are located on each LED chip. Hence, the achievable input power can be increased, leading to a higher signal-to-noise ratio (SNR) and a lower bit error rate (BER). Simulated and experimental results demonstrate that the BER performance can be improved by over two orders of magnitude. Moreover, an adaptive switching mechanism is also proposed in this paper, in which a subcarrier grouping scheme is employed adaptively when the required input power is high. Simulation results validate that the proposed mechanism can enhance system robustness significantly.
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    Thema: Elektrotechnik, Elektronik, Nachrichtentechnik , Physik
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  • 50
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-09-25
    Beschreibung: Distributed fiber sensing technology based on a Brillouin optical time domain reflectometer is widely applied for health monitoring in engineering. However, it cannot perceive quick external interference. In this paper, we propose to use polynomial fitting on the inverse of an incomplete Brillouin spectrum and find the peak frequency by statistical analysis. Simulation results show that the peak frequency obtained by our method is only 1.096 MHz higher than that by using the Lorenz fitting method on a whole discrete Brillouin spectrum. The method has high accuracy, good repetitiveness, and high stability and is helpful in health monitoring for situations with interference that lasts for a short time.
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    Thema: Elektrotechnik, Elektronik, Nachrichtentechnik , Physik
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  • 51
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-11-27
    Beschreibung: We establish an optical path difference (OPD) distribution model in a spatial scanned polarized low-coherence interferometry (LCI) considering the nonperpendicular incidence of light to explore the spatial frequency drift. Simulation shows that the OPD is no longer linearly distributed on a charged coupled device (CCD) and that the spatial frequency drifts approximately linearly as low coherent interference fringe (LCIF) shifts. A compensation process for spatial frequency domain analysis (SFDA)-based algorithm is proposed to avoid interference-order misidentification and consequent jump error. We verified our analysis and effectiveness of the proposed algorithm with an optical fiber Fabry–Pérot pressure sensing experiment. The measured spatial frequency drift agreed well with simulation results, and the interference-order misidentification was eliminated.
    Digitale ISSN: 1943-0655
    Thema: Elektrotechnik, Elektronik, Nachrichtentechnik , Physik
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  • 52
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-11-24
    Beschreibung: Vehicle-to-vehicle (V2V) communication using visible light communication (VLC) technology under fog conditions is presented. Fog is known as one of the most detrimental atmospheric conditions that causes outdoor optical wireless communications to be unreliable. The effect of the fog conditions is experimentally analyzed in the VLC-based V2V system. Recognizing the least attenuation coefficient and a taillight color of a vehicle, a red light-emitting diode (LED) was employed in the experiment. In addition, a Fresnel lens and multiple photodiodes are utilized to efficiently counteract the impairment caused by fog. The experimental results demonstrate that the proposed VLC-based V2V system offers a reliable V2V data transmission over the fog-impaired optical channel with a relatively high signal-to-noise ratio (SNR), even under a heavy-fog condition.
    Digitale ISSN: 1943-0655
    Thema: Elektrotechnik, Elektronik, Nachrichtentechnik , Physik
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  • 53
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: On behalf of the Publication Committee of the IEEE International Magnetic Conference (Intermag 2015), I am pleased to present a selection of papers from Intermag 2015 held at the China National Convention Center, Beijing, China, on May 11-15, 2015. Among the 1759 oral and poster presentations in Intermag 2015, 1076 papers were submitted for a peer review and possible publication in the present volume of the IEEE TRANSACTIONS ON MAGNETICS, covering various aspects of magnetic materials and devices. After a rigorous review process, 590 manuscripts were selected for publication in this issue of the Transactions, strictly following the IEEE rules for conference-related papers.
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  • 54
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: A series of orthorhombic perovskite Sm 1– x Tb x FeO 3 ( $x$ = 0, 0.3, 0.35, 0.4, 0.45, and 0.5) powder was readily prepared by sol–gel combustion process. The Tb-doping effects on the structure, morphology, and magnetic properties of SmFeO 3 have been studied in detail. Pure phase SmFeO 3 was obtained when calcinated at 900 °C for 3 h. By Tb doping, the synthesis temperature of orthorhombic perovskite-type Sm 1– x Tb x FeO 3 powder increased to 1100 °C. Moreover, the ferromagnetic (FM) interactions within the system are effectively enhanced, while the anti-FM coupling is greatly weakened, which is ascribed to the exchange coupling between Tb and Fe ions.
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  • 55
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: On behalf of the Organizing Committee of the International Magnetics Conference 2015 (Intermag 2015), it is our pleasure to present this issue of the IEEE T ransactions on M agnetics comprising selected papers from Intermag 2015. These categories this year included: Magnetic Recording, Spintronics and Applications, Sensor/MEMS or RF Materials and Devices, Electric Machines and Power Devices, Life Sciences and Applications, Magnetic Thin Film and Nanostructures, Functional Magnetic Materials, Soft Magnetic Materials, Permanent Magnet Materials, and Microscopy Imaging and Characterization.
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  • 56
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: We examine and demonstrate a biosensor using single-mode tapered fiber that has been immobilized with biorecognition molecules to sense targeted proteins. Interaction of evanescent waves with the external medium surrounding the tapered region produces an interferometric-patterned spectrum, which shifts correspondingly to any changes of refractive index (RI) in the external medium. The proposed setup managed to obtain an RI sensitivity and concentration sensitivity of 2526.8 nm/RIU and 20.368 $text{nm}/mutext{M}$ , respectively, which, to our knowledge, is highly sensitive when compared with previous studies. The dynamic performance, good specificity, and high sensitivity of the proposed method highlight an immensely beneficial choice for immunological diagnostics.
    Digitale ISSN: 1943-0655
    Thema: Elektrotechnik, Elektronik, Nachrichtentechnik , Physik
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  • 57
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: Provides a listing of the editors, board members, and current staff for this issue of the publication.
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  • 58
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: In shingled magnetic recording, the multihead multitrack (MHMT) detector can better combat the effect of intertrack interference than the single-head single-track detector. Such a detector, however, has prohibitive implementation complexity. In this paper, we propose to use the reduced-state sequence estimation algorithm to significantly reduce the complexity, and render MHMT practical. A commonly used symmetric two-head two-track channel model is considered in this paper. Well-structured reduced-state trellises are constructed by evaluating the effective symbol pair distances and designing proper set partitioning principles. Different trellis configurations are obtained based on the desired performance/complexity tradeoff. Simulation results show that the MHMT detector can achieve near maximum-likelihood performance with a small fraction of the original number of trellis states.
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  • 59
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: 2-D magnetic recording (TDMR) exploits 2-D signal processing using the waveforms reproduced by array head from the intended and adjacent tracks to mitigate the effects of intertrack interference. However, an array head has the issue on the degradation of bit error rate (BER) performance due to head skew. In this paper, we evaluate the BER performance of TDMR R/W channel with head skew under a specification of 4 Tbit/in $^{2}$ employing low-density parity check coding and iterative decoding system using a 2-D finite-impulse response filter by computer simulation. The results show that our system can achieve the reliable BER performances by appropriately setting the reader scanning positions at the head skew angle between 0° and 3°.
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  • 60
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: Simulations of shingled, microwave-assisted magnetic recording were carried out. First, a simplified model of the head field near the corner of the main pole of a write head was used to understand the effect of the spin torque oscillator (STO) position relative to the head. Next, shingled tracks were written and evaluated for two different write head and STO geometries. For shingled recording, locating a rotated STO on the side of the main pole may provide some advantages in that medium grains experience the high-frequency (HF) field for a longer time and the chirality of the HF field does not change as the grains pass by the STO. Recording simulations show that the rotated STO writes smoother track edges at lower densities, but there is little difference in signal-to-noise ratio at high linear densities.
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  • 61
    Publikationsdatum: 2015-10-27
    Beschreibung: In heat-assisted magnetic recording (HAMR), a higher recording density is pursued. Short-pulse laser heating is a good way to improve the thermal distribution in the media and to reach the full potential of recording density for the HAMR technology. In this paper, the effects of short-pulse laser qualities, such as pulse frequency deviation, pulse power deviation, and pulsewidth deviation, on recording performances for the HAMR with 100 ps pulse laser heating have been analyzed by simulation. The results indicated that the frequency jitter has the most significant effect on the recording performance among these three parameters. The decreases of signal-to-noise ratio (SNR) for 6% deviations of pulse frequency, pulse power, and pulsewidth are 5, 2, and 1.5 dB, respectively. A certain degree phase delay of pulse laser related to magnetic field switching time is beneficial to reducing the effect of pulse frequency deviation on SNR. When the phase delay changes from 0° to 180°, an SNR improvement of $sim 2$ dB is obtained. The measurement result of a real laser diode output (pulsewidth of 97 ps and pulse frequency of 2 GHz) by gain-switching technology presents a very low frequency deviation (<0.5%). It indicates that the gain-switching technology is a suitable approach for a short-pulse laser generation for the HAMR application.
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  • 62
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: A timing recovery method for a high-density tape storage system is studied in this paper. Since tape systems suffer from large speed variations compared with disk systems, the design of a stable timing recovery scheme that can operate under low signal-to-noise ratio (SNR) conditions is important. In such low SNR scenarios, decision errors made by the detector occasionally cause the phase-locked loop circuit to lose track of the correct signal, which is often called the loss-of-lock (LOL) phenomenon. In order to mitigate the LOL issue, soft information from the Viterbi detector is utilized. It is clarified that the negative effect of unreliable decisions from the detector can be compensated for by dynamically controlling the feedback gain of the timing recovery loop as a function of decision reliability. It is shown that the LOL rate performance can be improved by this approach, with only a minor increase in the implementation complexity.
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  • 63
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: The permeability of the magnetic soft underlayer (SUL) was systematically varied by changing the antiferromagnetic exchange coupling, and the effect on recording performance and adjacent track erasure (ATE) and far track erasure (FTE) was investigated. Perpendicular magnetic recording performance highly depends on SUL permeability. Highly permeable SUL can reduce the head erasure field located at far tracks from a stressing track but generates more erasure at adjacent tracks near the side shield. Optimum SUL permeability can improve on-track performance with tolerable ATE or FTE. Finite element method models of a shielded write head and media with different SUL permeabilities were performed. A high-permeability SUL has a larger impact on short-time high FTE fields and potentially affects the erasure at 3–6 tracks from main pole. This shows agreement with experimental results.
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  • 64
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: In this paper, we develop a portable dynamic switching model for perpendicular magnetic tunnel junctions (MTJs) considering both thermal fluctuation and process variations. The model uses macro-spin approximations where the free layer (FL) of MTJ is assumed to be in a single-domain structure. The model can generate dynamic switching transience curves at different current densities and simulate the switching successful rates for the given pulse lengths at different current densities. We also use the model to study the impact of temperature and device process variations on the switching performance, such as switching time variations. It is shown that the temperature effect is not significant when the switching current is relatively larger, and hence the spin current effect is strong enough to overtake the temperature effect. As for the process variations, it is shown that the FL thickness has a more significant effect on the switching time than the size of the FL does.
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  • 65
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: We investigate the transport property of the surface states of a topological insulator (TI) in the presence of a time-dependent potential. We find that the normally incident electrons can be perfectly transmitted through the time-dependent region under symmetrical potential configuration. But the perfect transmission is broken upon application of an asymmetrical potential. The contour plot of the transmission shows a fishlike transmission profile, which varies according to the potential configuration, and the strength and frequency of the time-dependent potential. This distinct transmission characteristic may be utilized to modulate the transport property of the TI.
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  • 66
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: Superparamagnetic tunnel junctions (SMTJs) are noise powered stochastic oscillators, which can harness thermal energy through phenomena such as stochastic resonance and noise-induced synchronization. This enables them to operate with the minimal externally supplied energy, and therefore, makes them promising candidates for implementing bioinspired computing schemes. These applications require understanding how SMTJs can be integrated into CMOS circuits. In this paper, we present a compact model of SMTJ, written in the VerilogA language, that can be used within standard integrated circuit design tools. This compact model is based on the Néel–Brown model and allows for fast simulations. We show that this model can reproduce the experimental characterization of a sample subjected to different values of dc currents. Then, we definitively demonstrate the validity of the model by confronting it to the experimental results in the case of a complex phenomenon: noise-induced synchronization.
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  • 67
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: Spin–orbit torque generated by spin-torque interaction provides a new writing mechanism for spintronic devices. This paper investigates spintronic memory devices for match-in-space, content addressable, and self-reference applications, utilizing spin–orbit torque generated by spin-torque interaction combined with the conventional spin torque generated by magnetization polarization. New system and device solutions are proposed for targeting different spintronic technology development stages. These proposals include spin content addressable memory (CAM) structure of DRAM cell with embedded MRAM, dual spin Hall magnetic tunneling junction CAM device, and spin-orbitronics memory device, capable of multi-bit match-in-space and single-bit nondestructive self-reference functionality.
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  • 68
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: We study a wireless communication system based on a magnetic tunnel junction spin-torque nano-oscillator (STNO) by employing amplitude-shift-keying modulation. By varying the pulse modulation frequency ( $f_{m}$ ) from 1 kHz to 2 MHz and distance ( $D$ ) between the antenna from 25 to 150 cm, we show a maximum data rate of 6 Mb/s (at $D=25$ cm and $f_{m}=1$ MHz), a limit imposed by our setup and noise generated by the STNO itself. We also report the average amplitude noise ( $S_{delta a}$ ) and average white frequency noise ( $S_{rm wh}$ ) of the wireless communication system and discuss their dependence on the distance between the antennas.
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  • 69
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: We report a novel spin-torque diode (STD) radio-frequency detector by utilizing tilted fixed-layer magnetization and in-plane free-layer magnetization. Through macrospin modeling and numerical simulation, we study both the direct current (dc) dependence and the perpendicular external field dependence of the output voltage of the detector. We systematically investigate both the fixed-layer magnetization tilt angle dependence and the dc dependence of the resonance detection regime of the detector. It is found that an ultrawide resonance detection regime 6.5 GHz can be achieved, which is 1200% higher than the traditional STD magnetic tunnel junction detector with in-plane fixed-layer magnetization.
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  • 70
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: Perpendicular-anisotropy magnetic tunnel junction (MTJ) is one of the most promising candidates to build hybrid logic-in-memory architecture, because of its nonvolatility, infinite endurance, and 3-D integration with a CMOS technology. A novel magnetic full-adder (MFA) based on this architecture is proposed, with MTJs switched by spin-Hall-assisted spin-transfer torque (STT). Owing to the assistance of spin-Hall effect (SHE), MTJ switching time can significantly be reduced, and high operation frequency can be achieved. Moreover, the endurance of oxide barrier is largely enhanced as the requirement of lower write voltage. Using an industrial CMOS 28 nm design kit and a physics-based three-terminal spin-Hall-assisted STT-MTJ model, functionality and performance of the proposed MFA have been simulated and validated. A 1 ns STT current pulse assisted by 0.35 ns SHE current pulse is sufficient to switch the MTJ configuration. When compared with the previous MFAs based on STT-MTJ, the proposed MFA achieves 38% less operation time and 31% less power consumption to perform read and write operations.
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  • 71
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: DC magnetization, electrical transport, and magnetoresistance (MR) measurements of Fe 1– x Co x Si single crystals with $x approx $ 0.7–0.3 are reported. Fe 1– x Co x Si series presents a typical Stoner band excitation characteristic in the field-dependent magnetization profile. Co-doping ( x > 0.3) in the Fe 1– x Co x Si compound shows a semiconductor–to–metal transition. Enhanced positive MR has been observed when $sim$ 1/3 of the Fe was substituted with Co, which suggests that the spin density of states in the minor band (semiconductor characteristic) dominates the electronic properties.
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  • 72
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: The magnetic properties of $3d$ transition metal ( ${mathrm{ TM}}={mathrm{ V}}$ , Cr, and Mn)-doped ZnO nanowires (NWs) with and without oxygen vacancy are investigated by ab initio calculations. The magnetic moments can be induced by TM impurities in ZnO NWs, localized on the $3d$ TM atoms and their neighboring O atoms. Furthermore, the ferromagnetism in V-, Cr-, and Mn-doped ZnO NWs is strongly correlated with oxygen vacancies.
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  • 73
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: The polycrystalline Ba 3– x Sr x Co 2 Fe 24 O 41 ( $x = 0.0, 0.5, 1.0$ , and 1.5) samples were synthesized by the solid-state reaction method. The crystalline structure of the samples was found to be a hexagonal structure with a space group of $P6_{3}/mmc$ . The lattice constants $a_{0}$ , $c_{0}$ , and $V_{u}$ of the samples decrease with increasing Sr concentration. From the field-dependent hysteresis curves under 10 kOe at 295 K, the values of $M_{s}$ increase while the values of $H_{c}$ decrease. The zero-field-cooled magnetization curves under 100 Oe between 4.2 and 300 K show the spin transition, and the value of $T_{s}$ decreases from 230 K for $x=0.0$ to 135 K for $x = 1.5$ with increasing Sr concentration due to the reduction of planar anisotropy with the difference in ionic radius between Ba 2+ and Sr 2+ ions. From the isomer shift value ( $delta $ ) obtained from Mössbauer spectra, the charge states of all samples are determined to be Fe 3+ high spin state. With increasing Sr concentration, the reduction of hyperfine field $langle H_{mathrm {hf}}rangle $ suggests the change in hyperfine interaction between Fe ions because of the larger ionic radius of Ba 2+ ion than that of Sr 2+ ion, leading to decreasing $M_{s}$ .
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  • 74
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: The effects of silicide formation on the surface structure and magnetic properties of Co thin films on Si (100) were investigated. Annealing temperature significantly changed the formation of silicide. CoSi phase was formed during annealing at 600 °C and 700 °C. CoSi 2 phase was formed during annealing at 800 °C. The anisotropy of Co/Si (100) films changed due to the formation of silicide. In addition, both the particle size and the surface roughness increased with the increase of annealing temperature, which led to the increase of coercivity up to 700 °C. However, the better crystallinity $ {H_{C}}$ decreased at 800 °C.
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  • 75
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: Alloy composition (Co 94 Fe 6 ) 72.75 Si 12.25 B 13.25 Cr 1.75 was designed to develop nearly zero-magnetostrictive materials in the form of ribbons and wires to obtain suitable magnetic properties for use as giant magnetoimpedance (GMI) and low-noise fluxgate sensor cores. During the development of magnetic sensing core using amorphous wires of diameter 80 $mu text{m}$ for GMI sensing, we observed a maximum impedance change (GMI ratio) of 430% with as-cast wires, which further enhanced to 650% when annealed at 300 °C for 5 min. The effect of annealing temperature and stress on the magnetic properties of fluxgate sensing core materials has been studied. Magnetic hysteresis loops were measured with 3-mm-wide and 45- $mu text{m}$ -thick amorphous ribbons on a toroidal ring of 50 mm diameter for fluxgate sensor core. A coercivity of 10.57 A/m and saturation field of $sim$ 150 A/m were observed with as-quenched ribbon, which improved to a coercivity of 2.16 A/m and saturation field $sim$ 100 A/m when annealed without stress just above its Curie temperature. An induced anisotropy transverse to excitation direction was achieved by applying temperature with stress and time (300 °C/ 100 MPa/ 20 min) to use it for fluxgate sensor core.
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  • 76
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: The change in the lancet domains of grain-oriented steels in the range from the room temperature (RT) to far above the Curie temperature ( $T_{c}$ ) was investigated using the domain observations by the photoemission electron microscopy combined with X-ray magnetic circular dichroism and the domain theory. Lancet domains were observed to be annihilated at the temperature below $T_{c}$ , with 180° basic domains occurring. The minimization of the magnetic free energy considering the intrinsic physical constants as the functions of the temperature enabled us to quantitatively explain the observed temperature dependence of lancet domains. The present model revealed that the temperature dependence of the cubic anisotropic constant greatly contributes to the annihilation of lancet domains at the temperature below $T_{c}$ . The improvement of the crystal misorientation, the thinner thickness, and the enhancement of the tensile stress applied to the steels are predicted to reduce the annihilation temperature of lancet domains. The tensile stress required to annihilate lancet domains at 200 °C is predicted to allow approximately half the stress to annihilate them at RT.
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  • 77
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: We report investigations on temperature-induced transformation of magnetic domain structures in the Fe-rich amorphous glass-covered microwires. The images of domain structures and magnetization reversal process were registered by means of magnetooptical Kerr microscopy. The coexistence of two different types of surface domain structures with helical magnetization components has been found. The obtained results discussed in the frame of the model supposed the stress influence on the domain structure.
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  • 78
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: NiZn ferrites with different amounts of CuO have been synthesized by the conventional ceramic method and their spectra of complex permeability were investigated. The CuO contents affect the grain size and microstructure of NiZn ferrite obviously, which also result in the variation of saturation magnetization, magnetocrystalline anisotropy, and porosity. Along with these relevant magnetic properties, the superposition of magnetizing mechanisms was testified to be predominant in determining the value of permeability. To manifest the increase of initial permeability, the permeability spectra of NiZn ferrite were resolved into two components, including domain wall movement and spin rotation magnetization. The fitting results show that, with the increasing amounts of CuO, the dominant contribution to dynamic magnetization changes from spin rotation magnetization mechanism to domain wall movement.
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  • 79
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: Fe-based soft magnetic composites (SMCs) with high $B_{s}$ and low core loss were fabricated by acidic bluing coating. Effects of reaction time and annealing temperature on the magnetic properties of the SMCs have been investigated. The Fe 3 O 4 grows as the coating layer of the Fe powders and converts to Fe 2 O 3 with increased reaction time. The iron oxide coating layer gives rise to highly normalized saturation magnetization (0.954–0.928) and low core loss due to its high electrical resistivity. The lowest core loss (785.1 mW/cm 3 measured at 50 mT and 100 kHz) of the Fe SMCs can be achieved with the reaction time of 30 min and annealing temperature of 550 °C.
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  • 80
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: In general, the contribution to the reinforcement of the magnetism in the order–disorder transition of FeAl alloys depends on their Fe content and the order–disorder transition. However, the Fe 75 Si 15 Al 10 alloys were investigated by means of first-principles calculation and experimental verification. We found that the mechanism of the magnetic moment ( $mu _{m}$ ) reinforcement is the exchange interaction of Fe atom with its nearest neighbor Fe atoms. In addition, the exchange interaction of Fe–Fe atoms is affected by internal stress, lattice distortion, the Fe content, and the position of nearest neighbor nonferrous atoms (Si and Al atoms). At the annealing temperature of 600 °C , the $mu _{m}$ is the maximum value, as the ordered DO3 structure is transformed extremely.
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  • 81
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: A 0.23 mm thick grain-oriented silicon steel sheet was successfully produced based on strip casting and two-stage cold rolling route. The evolutions of microstructure and texture along the complete processing route were briefly investigated. It was shown that the as-cast strip was composed of coarse ferrite grains and martensite, and the texture was mainly characterized by strong {001} $langle 0vwrangle $ texture. Goss texture was absent in the hot-rolled strip, which was distinct from the well accepted results that Goss texture had its origin during hot rolling. After the cycle of the first-stage cold rolling, an intermediate annealing, the second-stage cold rolling, and a primary annealing, the strip exhibited a fully recrystallized microstructure with a weak $alpha $ -fiber texture and a relatively strong $gamma $ -fiber texture. Goss texture was not observed through the thickness of the primary annealed strip. This was significantly different from the previous results that Goss texture was the most populous component in the primary recrystallization texture of two-stage route in conventional process. After secondary recrystalization annealing, the magnetic induction $B_{8}$ of the sheet was as high as 1.84 T.
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  • 82
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: The BaCo 2− x Zn x Fe 16 O 27 ( x = 0, 0.5, 1) samples were prepared by solid-state reaction method. The prepared samples are single-phased, and their crystal structures are determined to be hexagonal with a space group of P6 3 /mmc from Rietveld refinement analysis. The magnetic saturation values were increasing, and the values of coercivity were decreasing with increasing Zn contents. The experimentally measured temperature dependence of magnetization curves shows magnetic transitions. We have measured Mössbauer spectroscopy at various temperatures to investigate microscopic magnetic properties. We analyze the obtained spectra with the five magnetic sites of $4f_{mathrm {VI}}$ , $6g$ + $4f_{mathrm {VI}}$ , $4e_{mathrm {IV}}$ , + $4f_{mathrm {IV}}$ , $12k_{mathrm {VI}}$ , and $2d_{mathrm {V}}$ . In addition, from the Mössbauer spectra, we notice the changes in the magnetic hyperfine field and electric quadrupole shift. The substituted Zn 2+ ions are located at tetrahedral site, and increase the $M_{s}$ . Curie temperatures were determined from zero-field-cooled magnetizations measurement.
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  • 83
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: This paper proposed a temperature-dependent iron loss model and corresponding dynamic hysteresis model, where temperature coefficient ${k}$ is introduced to consider the thermal effect on eddy-current loss. The iron loss model is validated by massive experimental measurement of test samples, 1174 combinations of various temperatures, magnetic inductions, and frequencies for nonoriented silicon steel specimen. The relative error of the model is $sim 11$ % in a wide range of 50–400 Hz, 26 °C–200 °C, and 0–2 T. The proposed method can be applicable to other types of magnetic materials as long as whose resistivity rate exhibits approximately linear thermal dependence within a temperature range of 26 °C–200 °C.
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  • 84
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: We have studied a NANOPERM-type Fe 76 Mo 8 Cu 1 B 15 metallic glass with emphasis upon its magnetic properties at low temperatures. Temperature evolution of magnetization measured under zero-field cooling and field cooling conditions upon samples with different amounts of nanocrystalline grains have unveiled a two-phase behavior in temperature range from 50 up to about 200 K. In order to understand the correlation between the structural arrangement and resulting magnetic properties, we have employed a local probe method of 57 Fe Mössbauer spectrometry performed at 300 and 4.2 K. The latter experiments were also accomplished in an external magnetic field of 6 T. Magnetically distinct regions were unveiled in the amorphous structure of the as-quenched and annealed samples. They are demonstrated by the distributions of hyperfine magnetic fields.
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  • 85
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: We studied giant magnetoimpedance (GMI) effect and magnetic properties of various Co-rich amorphous microwires. We measured the values of magnetic field dependence of the GMI ratio up to gigahertz frequency range, and observed quite high GMI ratio in as-prepared Co-rich microwires even at gigahertz frequencies. We observed the different values of the magnetic anisotropy field obtained from the hysteresis loops and the impedance curves. Observed dependence can be explained considering different magnetic anisotropy in the surface layers and in the inner part of metallic nucleus and skin depth effect. Features of high-frequency GMI effect have been analyzed using ferromagnetic resonance-like approximation.
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  • 86
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: In this paper, soft magnetic Mn–Zn ferrite samples have been prepared through oxide processes. The magnetic properties and the phase structures were investigated. It was found that the optimal sintering temperature is about 1360 °C. The initial permeability of the samples is 1700–2300, Curie temperature $T_{c}$ is about 140 °C−180 °C, and cutoff frequency fr is about 1 MHz. Moreover, the initial permeability of the samples is relatively stable, and its temperature coefficient is $sim 10^{-6}$ /°C at the temperature range of 20 °C−60 °C. High-frequency simulation results show that the Mn–Zn ferrites samples are suitable for the application of the wireless sensor networks in theory.
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  • 87
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: We describe the enhancement of coercivity of Nd-Fe-B ultrafine powders by the grain boundary diffusion (GBD) process. An effective method for increasing coercivity in Nd-Fe-B sintered magnets is the refinement of the Nd 2 Fe 14 B grains. We decreased the powder size of the grains to <1 $mu$ m by combining hydrogenation-disproportionation-desorption-recombination, hydrogen decrepitation, and helium jet milling (He-JM). The powder size was comparable with the single-domain size of Nd 2 Fe 14 B. However, the coercivity of the ultrafine powders was lower than the value expected from their powder size, which was due to the decrease in the Nd content of the powders and lack of the Nd-rich phase on the powder surface. We performed the GBD process at 700 °C for 30 min before He-JM to increase the amount of Nd-rich phase on the powder surface. The powder showed a high coercivity of $mu_{0}{rm H}_{cJ} = 2$ T after annealing at 600 °C for 30 min. Therefore, the GBD process is an effective method for increasing the coercivity of ultrafine He-JM powders. The process increases the amount of the Nd-rich phase on the powder surface, which is converted to the liquid phase by annealing, and reduces the number of sites for reverse domain nucleation.
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  • 88
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: Motivated by the wide application of the antiferromagnetic/ferromagnetic (FM) bilayer structures in high-frequency microwave magnetic devices, the Si/NiO/Ni 81 Fe 19 films with different orientations of NiO buffer layer are deposited by magnetron sputtering technology. The phase, microstructure, hysteresis loop, and angular dependence of FM resonance (FMR) linewidth are investigated by X-ray diffractometer, field-emission scanning electron microscope, atomic force microscope, vibrating sample magnetometer, and electron spin resonance spectrometer, respectively. The Si/NiO(220) film has much smaller grain size than that of Si/NiO(200) film, which is beneficial to grow a high quality NiFe film on Si/NiO(220)/NiFe bilayer structures. The hysteresis loop of Si/NiO(220)/NiFe films shows an obvious exchange bias and a relatively smaller coercivity. The FMR linewidth ( $Delta {H}$ ) of Si/NiO(220)/NiFe films is much smaller than that of Si/NiO(200)/NiFe films, which is caused by the different structural properties and morphologies of the NiO buffer layer. The Landé $g$ factors and effective damping parameters $alpha_{rm eff}$ are also discussed.
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  • 89
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: In this paper, we report that W/Fe/W (001) epitaxial trilayer films exhibit very large negative uniaxial magnetic anisotropy $K_{u}$ . The magnitude of $K_{u}$ increases with decreasing the Fe layer thickness and also exhibits significant temperature dependence varying from $-2.1 times 10^{7}$ erg/cc at 300 K to $-3.5 times 10^{7}$ erg/cc at 10 K for the Fe layer thickness of 0.5 nm. The large negative $K_{u}$ is attributable to interface magnetic anisotropy in nature at the W/Fe interface and can be quantitatively reproduced by the firstprinciples calculation. The X-ray magnetic circular dichroism measurement at room temperature has revealed that the interfacial W atom is polarized in antiparallel with the magnetic moment of Fe. The induced magnetic moment of the interfacial W is almost the half of the values obtained by the first-principles calculation and the previous experiment at low temperature. This small induced W moment may be ascribed to the significant temperature dependence of the negative $K_{u}$ .
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  • 90
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: A 25 nm Fe 0.7 Co 0.3 –B film was deposited by a composition gradient sputtering (CGS) method with a gradient B composition (named CGS-FeCoB). The CGS-FeCoB film showed a well-defined uniaxial magnetic anisotropy with anisotropy field H K of 400 Oe and ferromagnetic resonance frequency $f_{mathrm {FMR}}$ of 6.45 GHz. A (CGS-FeCoB/MgO) 6 multilayer was laminated by six CGS-FeCoB sublayers separated by 2 Å MgO spacers with the easy-axis direction of the neighboring CGS-FeCoB sublayers clockwise rotating 30° in turn. It is exciting that a quasi-magnetic isotropy with a quasi-isotropic hysteresis loop and omnidirectional ferromagnetic resonance around 4.77 GHz was achieved in the designed multilayer. This quasi-isotropic multilayer is promising for the application in inductors, since 100% hard-axis excitation can be achieved for inductors of any shape.
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  • 91
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: The effect of strain and stain rate on microstructure and the magnetic properties of Nd–Fe–B magnets during hot-deformation process have been studied with commercial melt-spun flakes with a composition of Nd 13.6 Fe 73.6 Co 6.6 Ga 0.6 B 5.6 . The compacts produced by hot pressing at 700 °C under 100 MPa in vacuum were subjected to die upsetting at 700 °C with different deformation conditions of strain rate 0.1–0.001 $text{s}^{mathrm {-1}}$ and height reduction 40%–75%. The remanence and coercivity tended to increase and decrease with increasing strain, respectively. At below the strain of 0.5, the remanence increased more quickly with decreasing the strain rate, but the tendency was gradually reversed with increasing the strain. This was because the prolonged deformation induced the squeeze-out of Nd-rich phase from grain boundaries and the formation of coarse Nd-rich phase. In addition, the sample subjected to the prolonged deformation had quite thin and discontinuous grain boundary phase, which resulted in the decrease of the coercivity.
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  • 92
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: The magnetic influence of silicon, boron, phosphorous, niobium, as well as Cu in Fe-rich amorphous was studied through ab initio molecular dynamics simulations. The small concentration of metalloids with large electronegativity is beneficial to the saturation magnetization of Fe-rich amorphous alloys, but may reduce the magnetization by p–d orbital hybridization with a large amount of inclusion. On the other hand, owing to their low electronegativity, early transition metals may bring excess electrons to the alloys system and reduce the effect of Fe electron absorption by boron or phosphorous; therefore, the inclusion of them will significantly reduce the magnetization of the alloy. The minor inclusion of Cu slightly exhibits negatively charged in Fe-rich amorphous alloys, which indicates that the transition metals with low electron losing tendency are acceptable in the alloy to maintain excellent soft magnetic properties with high magnetization.
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  • 93
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: Magnetostrictive behaviors of Fe 100− x B x (001), $x=0$ , 5, and 13 at. %, single-crystal films are studied in comparison with those of poly-crystal Fe–B films under rotating magnetic fields. The output waveform of poly-crystal Fe–B film is sinusoidal and the saturation magnetostriction, $lambda _{s}$ , varies from negative to positive with increasing the B composition, $x$ , from 0 to 13 at. %. On the other hand, the output waveform of single-crystal Fe–B film is bathtub-like when measured along the easy magnetization axis of bcc[100], while it changes to triangular when measured along the hard magnetization axis of bcc[110]. The output waveform is strongly influenced by the magnetocrystalline anisotropy under a magnetic field of 1 kOe which is larger than the anisotropy field of the material. Variations of $lambda _{{mathbf {100}}}$ and $lambda _{{mathbf {111}}}$ values are estimated as a function of B content. $lambda _{{mathbf {100}}}$ of Fe–B film shows a positive value and increases with increasing the B content from 0 to 13 at. %, while the value of $lambda _{{mathbf {111}}}$ changes from negative to positive with increasing the B concentration. The B content dependence of $lambda _{s}$ for poly-crystalline Fe–B samples is explained by co- sidering the B content dependence of $lambda _{{mathbf {100}}}$ and $lambda _{{mathbf {111}}}$ determined with single-crystal film samples.
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  • 94
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: Here, we report strain-induced high coercivity in La 0.7 Sr 0.3 CoO 3 (LSCO) films, which suffer in-plane tensile strains due to the positive lattice mismatch between the substrate and the LSCO bulk. The films on (011)-0.7Pb(Mg 1/3 Nb 2/3 )O 3 -0.3PbTiO 3 exhibit large uniaxial anisotropy, large coercivity, and high saturation magnetization at low temperature in contrast to the well soft magnetic behaviors in LSCO bulk. It is found that the coercivity of the 40 nm (001)-LSCO/SrTiO 3 film can be as high as 1.45 T at 10 K and the observed coercivity decreases rapidly as the thickness increases, though the Curie temperature is below room temperature. The large coercivity and anisotropy should be closely related to the strain-induced structural changes and the different orbital ordering of Co 3+ and Co 4+ ions. Meanwhile, the enhanced domain wall pinning by the tensile strain may also contribute to the observed high coercivity.
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  • 95
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: The influence of the deviation of the easy axis $beta $ on the magnetic reversal of a hard/soft multilayer is investigated within a rigorous micromagnetic method when the thickness of the hard layer $t^{h^{vphantom {b}}}$ is finite. It is found that the pinning fields exhibit an angular symmetry where the minimum occurs at $beta =45 {^{circ }}$ , similar to that according to the well-known Stoner–Wohlfarth model. For intermediate soft layer thickness, the Kondorsly-like pinning is observed, where the pinning fields increase monotonically with $beta $ . On the other hand, the pinning field $H_{P}$ goes up monotonically with $t^{h }$ for all values of $beta $ when the hard layer thickness is less than roughly three times of its domain wall width.
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  • 96
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: NdFeB bulk magnets were synthesized by spark plasma sintering (SPS) using the precursors of melt spun nanocrystalline Nd 10.15 Pr 1.86 Fe 80.41 Al 1.67 B 5.91 ribbons mixed with Zn and/or Dy 2 O 3 powders. The addition of 0.6 wt.% Zn or 2 wt.% Dy 2 O 3 is effective in improving the magnetic properties of the magnets, and their coercivities are about 11% or 15%, respectively, higher than that of the additive free magnet. Both additives can suppress the grain growth of Nd 2 Fe 14 B phase. Dy 2 O 3 is not beneficial to the densification during SPS, but Dy is considered to partly diffuse into the grains near particle boundaries and to form (Nd, Dy) 2 Fe 14 B phase. NdZn and NdZn 5 phases were observed in the SPSed magnets with Zn additions more than 1 wt.%, which leads to coarse grains and porosities between the particles. The magnet with combined additions of 2 wt.% Dy 2 O 3 and 0.6 wt.% Zn showed good thermal stability with small temperature coefficients and optimal magnetic properties with high coercivity and maximum energy product.
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  • 97
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: The electrical resistance is one of the important properties for Nd 2 Fe 14 B magnets with low eddy-current loss. We have coated Nd–Fe–B melt-spun particles with CaF 2 by the liquid-phase coating technique and then performed hot-pressing and hot-deformation to make Nd 2 Fe 14 B/CaF 2 composite magnets. The morphology and distribution of CaF 2 in the magnets and its influence on the coercivity mechanism and the electrical properties of the Nd 2 Fe 14 B/CaF 2 magnets have been investigated by scanning electron microscope, hysteresisgraph, and four-probe resistivity meter. The morphology of CaF 2 depended on the liquid-phase synthesis parameters, especially the concentrations of the reactants. On the surface of Nd–Fe–B particles, there formed only a few CaF 2 nanoparticles and nanoflakes when 0.5 and 1 mol/l reactant aqueous solutions were used as precursors. With the increase of the concentrations of the reactants, there obtained a flake-shaped thin CaF 2 coating on the Nd–Fe–B particles. In addition, the CaF 2 coating became thicker, $sim 150$ –200 nm, with further increasing the concentrations of the reactants to 2 mol/l. After compaction and hot-deformation, the electrical resistances of the Nd 2 Fe 14 B/CaF 2 magnets fabricated using the concentrations of the reactants of 2 mol/l reached approximately 580 $mu Omega $ cm, which increased about 348% comparing with the corresponding pure Nd–Fe–B magnet. It is interesting to find that the coercivity of the Nd 2 Fe 14 B/CaF 2 composite magnets increased from 12.42 to 13.5 kOe when the concentrations of the reactants i- creased from 0.5 to 1.5 mol/l and then decreased to 10.2 kOe with further increasing the concentrations of the reactants to 2 mol/l. The reason for the increment of coercivity may be that CaF 2 nanoparticles and nanoflakes acted like lubricants that were beneficial to the rotation and the orientation of Nd 2 Fe 14 B particles during the hot-deformation process.
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  • 98
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: As-cast Nd–Fe–B strips without an annealing treatment were treated by an appropriate hydrogenation–disproportionation–desorption–recombination (HDDR) process, and highly textured HDDR strip powders with uniform Nd-rich grain boundary layers can be obtained. The HDDR powders with a particle size of $50~mu text{m}$ show a Br of 1.13 T and a $_{i}H_{c}$ of 10.5 kOe. The crystal texture in the HDDR powders may come from the memory for the own crystallographic orientation and the casting texture of Nd 2 Fe 14 B columnar grains in the as-cast strips. The highly textured HDDR powders with uniform Nd-rich grain boundary layers can be used to prepare the fine-grained sintered magnets by a conventional jet-milling technique and sintering process.
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  • 99
    Publikationsdatum: 2015-10-27
    Beschreibung: Magnetic properties and structure of sputter-prepared FePd thin films on the glass substrates by underlayering with refractory elements M (M = Nb, Mo, and W) have been studied. The structural analysis shows that FePd films have a (111) preferred orientation. All studied FePd films exhibit in-plane magnetic anisotropy. For single-layer FePd films, the coercivity ( $H_{c})$ and magnetic energy product [(BH) $_{mathrm {max}}]$ are increased with annealing temperature ( $T_{a})$ and reached the maximum value of 1.3 kOe and 3.8 MGOe in the sample annealing at 600 °C. With the further increase of $T_{a}$ , magnetic properties drop rapidly. Dependence of magnetic hardening on $T_{a}$ can be explained by dominant solid reactions in different region of $T_{a}$ including ordering and grain growth. Interestingly, magnetic properties of L1 0 -FePd are largely improved by underlayering with 5 nm-thick Nb, Mo, and W layers. Both the coercivity and energy product are significantly increased to 1.6 kOe and 4.9 MGOe for M = Nb, 2.5 kOe and 6.4 MGOe for M = Mo, and 3.3 kOe and 8.7 MGOe for M = W, respectively. Structural analysis suggests that this magnetic enhancement is related to both higher ordering degree and refined microstructure.
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  • 100
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publikationsdatum: 2015-10-27
    Beschreibung: The effect of wheel speed as well as an additive Cr 3 C 2 on the structure, crystalline texture, and magnetic properties of SmCo-based nanocrystalline magnets has been investigated. A low wheel speed of melt spinning of SmCo 6.8 (Cr 3 C 2 ) 0.2 promotes the formation of the Cr- and C-contained SmCo 7 main phase with a $langle 0001rangle $ out-of-plane texture, an average grain size of 38–60 nm, and a smooth ${M}$ – ${H}$ loop with sound rectangularity. On the other hand, for SmCo 4.8 (Cr 3 C 2 ) 0.2 alloys, ${H} _{mathrm{ci}}$ significantly enhances from 28.1 to 36.6 kOe and ${M} _{r}$ increases from 23.2 to 28.0 emu/g with an increasing wheel speed from 30 to 50 m/s. A high wheel speed of 50 m/s in SmCo 4.8 (Cr 3 C 2 ) 0.2 contributes to the formation of dendrite SmCo 5 grains with the short axis of about 20–50 nm and the long axis ranging from 100 nanometers to about 1 micrometer. An obviously preferential orientation along the $langle 0001rangle $ direction in SmCo 5 grains is observed, which could be confirmed by the transmission electron microscope analysis and anisotropic magnetic behavior. The addition of Cr 3 C 2 gives a hint toward the direction of texturing in SmCo-based magnets melt spun at high wheel speeds.
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