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  • Articles  (1,172)
  • 2020-2022
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  • IEEE Photonics Technology Letters  (1,172)
  • 1264
  • Electrical Engineering, Measurement and Control Technology  (1,172)
  • 1
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-11
    Description: We report on the results of numerical investigations into the effects of slot geometry of horizontal slot microdisk resonators on their performance as optical biosensors. We find that for resonator-based biosensors, the mode overlap is the limiting factor for the performance. With this finding, we suggest that slot resonators are superior to conventional, evanescent-field based resonators primarily for the surface sensing, where a high optical field created by the thin slots can be used. Possible mixing of modes reduces the mode overlap and thus need to be avoided by proper design of the resonator structure. We further propose an optimized triple-slot structure to double the possible detector sensitivity.
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  • 2
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-11
    Description: We demonstrated 3.2-Tb/s (32 $,times,$ 120-Gb/s) unrepeatered transmission over 445-km fiber with ${rm A}_{rm eff}$ -managed-span. This was achieved by employing co-propagating second-order pumped Raman amplification and remote optically pumped amplifier, which was counter-propagating second-order Raman pumped. This letter also discusses design tradeoff on the nonlinear tolerance and Raman gain efficiency within ${rm A}_{rm eff}$ -managed-span for performance enhancement of unrepeatered transmission.
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  • 3
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-11
    Description: We report a new approach to photonic generation of binary phase-coded microwave signals based on the asymmetric phase modulation indexes of a phase modulator in the TE and TM polarization states. The proposed system is extremely simplified compared with any other techniques reported in the previous literature since we only use one phase modulator. The microwave carrier frequency is widely tunable, and the $pi$ phase shift of the microwave signal is independent of the amplitude of the electrical driving signal. The proposed technique is theoretically analyzed and experimentally verified at carrier frequencies of 10 and 25 GHz, respectively.
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  • 4
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-11
    Description: This letter reports a cost-effective transmitter solution for future generations of long reach passive optical networks (PONs). It is based on the direct adaptive orthogonal frequency division multiplexing modulation of a hybrid III/V-on-silicon laser. Because of low-noise and good linearity of the hybrid laser, modulation formats as high as 32-quadrature amplitude modulation are achieved. Data-rates of 21.5 and 12.4 Gb/s are demonstrated, respectively, in optical back-to-back and 50 km single-mode fiber (SMF)-link free from amplifiers, while on-off keying transmission is limited to ${〈}{rm 7}~{rm Gb}/{rm s}$ at 20 km SMF. The proposed solution stands as a cost-effective solution for next-generation time and wavelength division multiplexing PONs with extended reach, as the hybrid laser can further be made tunable.
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  • 5
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-11
    Description: We propose a photonic technique for millimeter-wave ultra-wideband (MMW-UWB) signal generation via direct frequency up-conversion using a dual-parallel Mach–Zehnder modulator (DPMZM). By properly setting the dc bias voltages of the DPMZM, the baseband UWB pulse is up-converted to the MMW band without pulse distortion. In addition, the excessive residual local oscillator component is perfectly suppressed. The electrical spectrum of the up-converted UWB signal satisfies the Federal Communications Commission spectral mask very well.
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  • 6
    Publication Date: 2013-09-11
    Description: We developed a multiframe observation method of femtosecond laser pulse propagating in transparent medium based on optical polarigraphy technique. An echelon was introduced into the probe light and divided it into multipulses both in time and space, allowing a multiframe detection of the intense laser pulse propagating in materials. Using this method, we realized a multiframe observation of a single femtosecond laser pulse propagating in CS2 with ultrafast self-modulation such as filamentation. This imaging method has been demonstrated to be of a femtosecond time resolution and a frame rate of ${sim}{rm THz}$ .
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  • 7
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-11
    Description: An in-line submillimeter hole fabricated by micro-drilling plastic optical fiber (POF) directly has been proposed as a compact refractive index sensor. Since the hole behaves as a concave lens if it is filled with a liquid having lower refractive index than that of the fiber core, transmittance increases in proportion to the refractive index. Analysis of the sensor transmittance has been performed using a simple ray optics model. Through immersing a 1.5-mm POF with a 0.35-mm-radius hole into various liquids, transmittance of the sensor has been measured at 670 nm. It has been shown that the experimental and analytical results are in excellent agreement.
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  • 8
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-11
    Description: We experimentally demonstrate two types of silicon-on-insulator microring devices: 1) a slotted conventional microring resonator (MRR) using a multimode interferometer (MMI) coupler as the coupling element; and 2) an MMI-coupled slotted Mach–Zehnder interferometer (MZI) racetrack microring. We achieved a high bandwidth of 1.1 nm and a quality factor Q of ${sim}{1300}$ at the wavelength of 1510 nm for the conventional MRRs with a radius of 20 $mu{rm m}$ . A high extinction ratio (17–25 dB) is exhibited over a wavelength range from 1490 to 1520 nm. At the 1515-nm resonance wavelength, the MMI-coupled MZI racetrack microring demonstrates a quasi-free spectral range of 22.6 nm with a high extinction ratio of 25 dB. The demonstrated devices have many applications such as biochemical and gas sensing and modulation in communication systems.
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  • 9
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-11
    Description: We report an experimental demonstration of a nonuniformly spaced photonic microwave delay-line filter implemented using an incoherent broadband optical source and a spatially discrete chirped fiber Bragg grating (SD-CFBG). The SD-CFBG performs simultaneously three functions: 1) to slice the spectrum of the broadband optical source for generating the filter taps; 2) to provide nonuniform time delays; and 3) to control the weights of the filter taps. Since negative or complex coefficients are equivalently generated based on the nonuniform sampling, a filter with an arbitrary spectra response is achieved. To verify the effectiveness of the proposed method, a flat-top bandpass microwave filter with seven all-positive nonuniformly spaced taps at 12 GHz is experimentally demonstrated. The proposed method offers a cost-effective and easy-to-implement solution for photonic microwave filters having arbitrary frequency responses.
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  • 10
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-11
    Description: An Si photonic transmitter is integrated in a 130-nm silicon-on-insulator complementary metal–oxide–semiconductor technology. A high-speed photonic ring modulator is designed for 25-Gb/s operation with an 8-dB extinction ratio. The ring is driven with a $2.4hbox{-}{rm V}_{rm pp}$ swing using a low-power inverter driver. With a reference receiver, the 25-Gb/s link is measured with a bit error rate (BER) of $10^{-12}$ . The total transmitter power consumption is 17 mW at 25 Gb/s for an energy efficiency of 680 fJ/b excluding laser and ring tuning power.
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  • 11
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-14
    Description: Through selectively controlling the stimulated Brillouin scattering in optical fibers with different lengths, a continuously tunable time-delay scheme enabling to work in a large range is proposed in this letter. This is realized by connecting a fixed long single-mode fiber (SMF) to one of the several selectable short SMFs that successively have an equal increment in length. These short-length fibers are, respectively, fixed to the different channels between two identical optical switches. Therefore, a wide-range and continuously tunable slow-light delay line can be constructed by changing the power of the pump beam, assisted by switching to different channels. In the experiment, a time delay from 0 to 201.29 ns is demonstrated for a five-channel configuration. A further large-range time delay can be expected if one adds the number of channels accordingly.
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  • 12
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-14
    Description: We demonstrate active coherent polarization locking of two high power polarization-maintained fiber amplifiers using single frequency dithering technique. When the active phasing system is in the closed loop, a 481-W single frequency and polarization-maintained laser beam with near-diffraction-limited beam quality is generated in the circumstance of imbalanced power ratio of the two amplifiers. The beam quality ( ${rm M}^{2}$ factor) of the coherently polarization locked beam is measured to be ${〈}{1.2}$ and the polarization extinction ratio of the phasing beam can be as high as 10 dB (91%).
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  • 13
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-14
    Description: We demonstrate a stable gain-switched thulium fiber laser pumped with an acousto-optically modulated Er, Yb co-doped fiber laser at 1.56 $mu{rm m}$ . The laser produced 1850 nm pulses with 2.5 $mu{rm J}$ pulse energy and 75 ns pulsewidth at a repetition rate of 500 kHz, resulting in a maximum average output power of 1.32 W and slope efficiency of 54.7% with respect to absorbed pump power. The dependence of laser output characteristics on the pump power and repetition rate was presented and discussed. Repetition rate of gain-switched pulses was tuned continuously from 68 kHz to over 1 MHz at the maximum pump power-level of 8 W. The broad tuning range of pulse repetition rate makes this laser suitable for various applications.
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  • 14
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-21
    Description: An optical fiber distributed sensing system merging Mach–Zehnder interferometer (MZI) and phase-sensitive optical time domain reflectometer for vibration measurement with wide frequency response and spatial resolution is proposed and demonstrated. Two acoustic optical modulators are adopted to generate narrow and wide pulses, respectively, on both ends of sensing fiber with a time difference. Narrow pulses are used to generate Rayleigh backscattering light, which locates the vibration point, while wide pulses interfere with reference light as an MZI to obtain frequency response. To simulate the high frequency responses of crack in civil structures, the sudden break of pencils adjacent to the fiber loop has been measured. The experimental results show 5 m spatial resolution and up to 6.3 MHz frequency response with 50 ns pulse width are achieved in 1150 m sensing distance.
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  • 15
    Publication Date: 2013-09-21
    Description: We propose a precise submicrometer alignment technique for lenses employing high-power laser irradiation. We investigate the mechanism in detail, and show that manipulation of the lenses is achieved in all directions, for the tightest positional tolerance. In particular, our proposed technique enables lens alignment by irradiating only the top of the lens holder making it suitable for high-density integrated multi-channel systems. With this technique, we have successfully developed the first lens-coupled hybrid integrated optical system for a 100 Gbit/s Ethernet transmitter optical sub-assembly.
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  • 16
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-21
    Description: In this letter, we report on monolithic distributed Bragg reflector ridge waveguide diode lasers. The lasers feature highly strained InGaAs quantum wells and fifth order surface gratings for a stabilized emission wavelength ${sim}{rm 1120}~{rm nm}$ . Output powers up to 1 W and a maximum conversion efficiency of ${sim}{34%}$ were achieved in a spatial and spectral single-mode. In a preliminary reliability test, at 0.4 W a lifetime of ${>}{rm 1000}~{rm h}$ could be demonstrated. Therefore, the laser sources should allow for an efficient non-linear frequency doubling to 560 nm.
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  • 17
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-21
    Description: A novel method to form asymmetrically corrugated long period fiber gratings (LPFGs) by periodically scanning the unstripped optical fiber using the high-frequency ${rm CO}_{2}$ laser under side illumination as well as HF etching processing has been proposed and demonstrated in this letter. Microbends exist in the asymmetric structures when tensile force is applied that greatly enhance the refractive index modulation. Several asymmetrically corrugated LPFGs with a grating pitch of 600 $mu{rm m}$ are fabricated. A linearly step-changed period chirped corrugated LPFG has also been fabricated that well proves the flexibility of this method in fabricating nonuniform corrugated LPFGs.
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  • 18
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-28
    Description: We propose and experimentally demonstrate dynamic control of gain profile in a single-pump fiber-optical parametric amplifier (FOPA) assisted by gain-transparent stimulated Brillouin scattering. The FOPA gain can be enhanced/reduced through controlling the phase-matching condition without disturbing the initial parameters of the FOPA. Both the maximum and minimum gain profiles are obtained, offering operational flexibility in randomly synthesizing the profile to satisfy different requirements. Our synthesis can turn the conventional M-shaped profile into spectrally flat gain with 0.1-dB variation over 24 nm. This scheme can be potentially applied to dual-pump FOPA and can benefit other applications of parametric processes.
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  • 19
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-28
    Description: In this letter, we present an integrated solution for bidirectional WDM optical interconnection based on semiconductor optical amplifiers and nonreciprocal micro-ring resonators in ${rm Si}_{3}{rm N}_{4}/{rm Ce}:{rm YIG}$ . The circuit performance has been numerically evaluated, demonstrating a reduction of crosstalk and back-reflection of ${>}{rm 20}~{rm dB}$ for a 10-channel 100-GHz-spaced WDM bidirectional active optical interconnect. Although a silicon-nitride platform has been considered, the proposed solution can be effective also on a silicon platform, where back-scattering induced by the waveguide roughness is much stronger.
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  • 20
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-28
    Description: A hybrid patterned ZnO micro-cylinders and nanorods array (MCNR) was fabricated to improve the light extraction efficiency for high brightness GaN-based light-emitting diodes (LEDs). The light extraction efficiency of the LEDs with the ZnO MCNR is increased by 86.4% compared with conventional planar LEDs. LEDs with ZnO MCNR have greater light extraction efficiency than those only with ZnO micro-cylinders or ZnO nanorods array. The optical-electrical characteristics and far-field radiation patterns are measured and analyzed. The local optical field distribution patterns of the LEDs with ZnO micro-cylinders, ZnO nanorods, and ZnO MCNR are investigated using confocal scanning electroluminescence microscopy. The higher light extraction enhancement effect of ZnO MCNR is attributed to that it combines the light outputting effect from side walls of ZnO micro-cylinders and the light scattering effect of ZnO nanorods array.
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  • 21
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-28
    Description: Low threshold lasing at room temperature was achieved in optically pumped GaN-based vertical-cavity surface-emitting lasers (VCSELs) with sub-nanometer roughness polishing. The cavity region sandwiched by two dielectric distributed Bragg reflectors, incorporating InGaN/GaN multiquantum wells, a p-type AlGaN layer, and n- and p-type GaN layers, is a typical structure for electrically driven VCSELs. We observed lasing at a wavelength of 431.0 nm with a low threshold pumping energy density of ${sim}{rm 3.2}~{rm mJ}/{rm cm}^{2}$ and a high spontaneous emission coupling factor of ${sim}{rm 0.09}$ . These results were attributed to the significant reduction of the internal cavity loss by the removal of the high-dislocation GaN region, the reduction of cavity length, and the achievement of sub-nanometer level surface roughness (root mean square roughness of 0.3 nm) via inductively coupled plasma etching and chemical mechanical polishing. The loss mechanism is discussed and loss is quantitatively calculated in this letter.
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  • 22
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-28
    Description: Based on phase modulator, balanced photodetector, and fiber Bragg grating, we present a novel microwave downconversion method using direct-detection and post digital signal processing (DSP) to improve the gain and dynamic range of the link theoretically and experimentally. Both the reflection and transmission spectrum are used to increase the system gain. Experimental results show that this method increased the gain by 6 dB. In addition, the linearity of the system is improved by a simple strategy in the DSP module. This suppresses the third-order intermodulation by ${>}{rm 17}~{rm dB}$ without sacrificing system gain. The experimental results show that the third-order limited spurious-free dynamic range increases by 5 dB.
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  • 23
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-11
    Description: In this letter, the information security of an optical code-based communication system employing orthogonal differential phase-shift keying (DPSK)/code-shift keying (CSK) modulation is first investigated using two eaves dropping methods, one-bit delay interference detection and differential detection. The investigation results show that the security vulnerability exists only in the CSK channel while the DPSK channel can thwart these attacks. Therefore, the concept of public-key cryptography is introduced into the system to efficiently use these two orthogonal channels for both public key distribution and encrypted data transmission. The privacy of the transmitted data can be double guaranteed by public-key cryptography scheme logically and optical code-processing techniques physically.
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  • 24
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-11
    Description: We report on the demonstration of a high power tunable femtosecond fiber laser based on soliton self-frequency shift in a large mode area photonic crystal fiber. The laser provides up to 13 nJ pulse energy, ${sim}{rm 550}~{rm mW}$ average power, and wavelength tuning range from 1600 to 1780 nm. The pulse duration is sub-100 fs over the entire tuning range. We have also demonstrated a novel way of tuning the laser output wavelength using chirp control which has allowed us to achieve higher average output power within the tuning range. We believe the laser system will be useful for high speed deep tissue multiphoton bio-imaging and difference frequency generation to create high power tunable mid-IR radiation.
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  • 25
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-25
    Description: An easily scalable eight channel photonic integrated circuit to demultiplex an optical orthogonal frequency-division multiplexing (OFDM) symbol is presented. It is designed and fabricated using a silicon photonic platform. The measured filter response is in close agreement with the modeled results for an ideal device. Emulation using the measured response of the fabricated filter shows that the filter is capable of demultiplexing optical OFDM symbols comprising eight sub-carriers, each operating at 13.5 GBd.
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  • 26
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    Publication Date: 2013-09-25
    Description: Optical frequency combs generators (OFCGs) have demonstrated to be extremely useful tools in a wide variety of applications. The current research trends look toward compact devices that are able to offer high phase correlation between optical lines, and in this sense, mode-locked laser diodes (MLLDs), with repetition frequencies in the few gigahertz (GHz) range, and especially microresonators, with repetition frequencies of hundreds of GHz, are the most promising devices fulfilling these requirements. Nevertheless, focusing in the few GHz frequency rate, MLLDs cannot provide continuous tunability and require special devices that are still far from offering reliability and repeatability for commercial use. In this letter, we demonstrate for the first time the generation of a flat OFCG based on a single commercial vertical cavity surface emitting laser under gain-switching regime with 20 optical lines (spaced by 4.2 GHz) in a 3-dB bandwidth, offering wide tunability range and very high phase correlation between optical modes. This OFCG does not need any external modulator and it is the most energy-efficient OFCG reported to date.
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  • 27
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-28
    Description: A novel bias angle control technique to improve the performances of lithium niobate photonic $E$ -field sensor while not disturbing the measured electric field has been demonstrated. Using this technique, bias locking at linear position along the transfer function is achieved with better than 2.2 $^{circ}$ accuracy. In addition, this bias control technique has been proven to be robust and simple to implement in field applications.
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  • 28
    Publication Date: 2013-09-28
    Description: We experimentally demonstrated a high power mid-infrared optical parametric oscillator that was pumped by a linearly polarized, pulsed Ytterbium-doped fiber laser. Cascaded parametric conversion was realized to obtain a higher conversion efficiency from the pump of 1.06 $mu{rm m}$ to the expected idler ${sim}{rm 3.8}~mu{rm m}$ . A monolithic aperiodically poled magnesium-oxide doped lithium niobate was designed to compensate the phase mismatches of the nonlinear conversions from the pump to idler and the primary signal to idler simultaneously. The highest idler output power of 4.35 W at 3.81 $mu{rm m}$ was obtained under the pump power of 24.8 W at 1063.5 nm with pump-to-idler conversion efficiency of 17.5% and slope efficiency of 21.3%.
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  • 29
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-28
    Description: Direct intensity modulation of laser systems in the mid-infrared is marred by instabilities in power output, emission wavelength, and mode profile. In particular, emission characteristics of current implementations of quantum cascade lasers are especially susceptible to modulations in the driving current. We present a broadband mid-infrared variable optical attenuator with large dynamic range and sub-millisecond response time. The modulator has demonstrated 52 dB dynamic range (limited by the detector noise) and ${>}{rm 1}~{rm kHz}$ frequency response, and has been tested at various wavelength covering 3.5–4.8 $mu{rm m}$ . The system is composed of a piezoelectric controlled tilt-mirror that images the laser beam into a mid-infrared transmitting optical fiber. The use of broadband anti-reflection optics in the system maintains a high throughput of ${>}{90%}$ . Power handling of the system has been confirmed up to 4 W (limited by the laser output power).
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  • 30
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-28
    Description: In this letter, we report for the first time (to the best of our knowledge) the ability of a conventional hollow-core photonic crystal fiber (HC-PCF) to guide light over a wide bandwidth by selectively filling the cladding of the fiber with polymeric material. The transmission spectrum of the new fiber was recorded using a supercontinuum source while the measured near-field profile, combined with the numerical analysis, verified the existence of a single white fundamental guided mode in the air-core. The main advantage of the proposed method is that broadband guidance in air can be easily achieved, avoiding complex and sophisticated designs as well as fabrication of the fiber cladding structure, thus opening new prospects for the HC-PCF.
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  • 31
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-28
    Description: In this letter, a novel linear frequency-domain compensation (FDC) of the resonant cavity light emitting diode (RC-LED) for discrete multi-tone (DMT) modulation has been used for the first time in the nonlinearity mitigation of step-index polymer optical fiber (SI-POF) communication systems. The proposed FDC method can be easily implemented in any multi-carrier communication system. Compared with the classical DMT scheme, FDC DMT benefits from higher power efficiency in terms of clipping for peak-to-average power ratio reduction. Two SI-POF experimental setups with different 3 dB POF bandwidths are built with the same RC-LED. Under the same experimental conditions, a higher transmission rate has been achieved with the proposed FDC DMT method compared with classical DMT at the same bit error rate level.
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  • 32
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-28
    Description: This letter examines edge-illuminated silicon photodiodes (PDs) fabricated using standard CMOS technology operated at 850-nm wavelength. A micro-electro-mechanical systems (MEMS) process was employed to expose the illuminated surface and achieve edge illumination. A single-mode lensed fiber is employed to inject light into the depletion region of the PD directly, limiting and reducing the diffusive carriers within the bulk Si substrate. Through employing this procedure, this letter achieved a superior performance in the 3-dB bandwidth compared with that yielded by vertically illuminated PDs. The 5.4 GHz high bandwidth was obtained using an edge-illuminated PD with a 20 $mu{rm m}times,$ 15.6 $mu{rm m}$ active region.
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  • 33
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-04-03
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  • 34
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-04-03
    Description: We derive an analytical expression for the transmission performance of intra-channel nonlinearity compensated and dispersion unmanaged orthogonal frequency-divison multiplexing (OFDM) systems using practical digital back propagation (DBP) with span-length step size. The analytical expression is verified by numerical simulations with evaluation inaccuracy less than 0.4 dB for 1000-km 16-QAM modulated polarization division multiplexed-OFDM transmissions. Using the derived theory, the dependence of performance and optimum nonlinear compensation coefficient on system parameters is identified. The limitation of processing bandwidth on the performance improvement using practical intra-channel DBP is also investigated. Analytical results show that for achieving 1-dB improvement on maximum $Q^{2}$ factor, the processing signal bandwidth of span-length step size DBP should be within 55 GHz for 2000-km SSMF transmissions over 62.5-km spans.
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  • 35
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-04-03
    Description: We propose and experimentally demonstrate a segmented waveguide taper (SWT) mode adapter for a polarization mode converter to reduce excess loss induced by a 100- $mu{rm m}$ -wide waveguide gap housing a 92- $mu{rm m}$ -thick quartz half waveplate. The SWT mode adapter is a combination of periodically segmented waveguide taper and traditional taper formed in a silica-based waveguide. It is proved that this SWT mode adapter requires no vertical tapering process but can enlarge the mode size in both vertical and horizontal directions. Our newly designed SWT mode adapter based on the 0.75%- $Delta$ silica waveguide is able to reduce the excess loss significantly from 5 dB to less than 1.5 dB.
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  • 36
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-04-03
    Description: An optical vector network analyzer (OVNA) based on unbalanced double-sideband (UB-DSB) modulation with improved measurement accuracy is proposed and experimentally demonstrated. It is different from an OVNA based on optical single-sideband (OSSB) modulation in which one-to-one mapping between the optical and radio frequency responses is employed to measure the magnitude and phase responses of an optical component, the proposed technique measures the magnitude and phase responses by taking into consideration of the power of the other sideband through solving two equations that are associated with the UB-DSB modulation, thus the errors due to the residual power of the other sideband in an OSSB modulation based approach are completely eliminated. A mathematical model providing the transfer function of an optical component is derived. The measurement of a phase-shifted fiber Bragg grating and a linearly chirped fiber Bragg grating is performed. Comparing with the measured results based on OSSB modulation, obvious improvement in measurement accuracy is demonstrated.
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  • 37
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-04-03
    Description: A 16-QAM signal is generated using subcarrier modulation with a subcarrier frequency of half the symbol rate, Nyquist pulse shaping, and a directly modulated passive feedback laser at bit rates of 14, 28, and 56 Gb/s. Using polarization multiplexing emulation, a pre-amplified direct detection receiver and digital signal processing, loss margins of 12.6 and 8 dB are achieved for a 112 Gb/s dual polarization signal at back-to-back and after 4 km transmission, respectively.
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  • 38
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-04-03
    Description: The scattering property of a terahertz fiber Bragg grating is characterized. The grating is written in subwavelength polymer fiber with a length of 160 periods. The measured full width at half maximum of the radiated beam is approximately 4 GHz, which may be extended by increasing the grating length. Such a grating shall be used in a spectrometer for the terahertz range.
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  • 39
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-04-03
    Description: A long reach fiber wireless network is proposed for 60-GHz wireless application and all-optical routing/multicasting with simplified structure. This scheme is based on remote up-conversion and can provide flexible reach $({>}{rm 100}~{rm km})$ together with a reconfigurable platform for dynamic bandwidth allocation at the physical layer. The experimental results show that 60-GHz wireless signal with 5-Gbps OOK is successfully delivered over 102-km single mode fiber. Moreover, functionalities, such as all-optical routing and optical multicasting are also demonstrated.
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  • 40
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-04-03
    Description: We investigate transmitter-side digital signal processing to generate 16-ary quadrature-amplitude-modulation (16QAM) Nyquist wavelength-division-multiplexing (WDM) signals by simulations. We first study required digital finite-impulse response (FIR) filter tap numbers and optimum roll-off factors to generate Nyquist 16QAM WDM signals. We show that a root-raised cosine spectrum with a roll-off factor of 0.1 is optimal for Nyquist 16QAM signals considering the tradeoff between the system performance and complexities, and a digital FIR filter with 37 taps is sufficient to generate such signals. Then we look into the effects of digital-to-analog converter (DAC) sampling speeds on the performance of Nyquist-WDM systems. We show that the electrical filter shape and spectral pre-emphasis have a big impact on the system performance. With a fourth-order super-Gaussian electrical filter and spectral pre-emphasis, DACs with 1.2 samples/symbol sampling speed can generate 16QAM Nyquist-WDM signals at 1.05-symbol-rate channel spacing, with an OSNR penalty below 0.2 dB compared with 2 samples/symbol DACs.
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  • 41
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-04-03
    Description: We present the temperature dependence of the performance characteristics of our latest generation high-speed oxide confined 850-nm vertical cavity surface-emitting lasers (VCSELs). Using a 7- $mu{rm m}$ oxide aperture diameter VCSEL, we demonstrate a maximum modulation bandwidth of ${sim}{rm 27}~{rm GHz}$ at room temperature and ${sim}{rm 21}~{rm GHz}$ at 85 $^{circ}{rm C}$ . With a new high-speed optical receiver, these bandwidths enable error-free data transmission (defined as a bit-error-rate ${〈}10^{-12}$ ) at bit-rates up to 47 Gb/s at room temperature, and up to 40 Gb/s at 85 $^{circ}{rm C}$ .
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  • 42
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-04-03
    Description: An electrostatic actuation-based resonating microelectromechanical systems (MEMS) polygonal mirror micro-scanner is developed for endoscopic probes used in clinical investigations. Microassembly technology is utilized to construct this device, which consists of a micro-actuator of four sets of electrostatic comb-drive resonators and an eight-slanted-facet highly reflective pyramidal polygon micro-reflector. The pyramidal polygon micro-reflector is developed using high precision diamond turning and soft lithography molding technologies. An optical scan angle of near-360 degrees is achieved at a resonant frequency of 180 Hz when driven by electrostatic comb-drive resonators with 80 Vpp ac voltage.
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  • 43
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-04-03
    Description: A fiber optic interrogation sensor scheme based on a “figure-of-eight” configuration created from a single directional 3 $,times,$ 3 fiber optic coupler is proposed. Two loops are formed in each arm and one of them contains the sensing head and the other is used as reference signal. A theoretical study based on Jones matrix analysis of this fiber loop mirror combination is reported. The optical configuration is tested as an interrogation scheme for a fiber strain sensor where the spectral response arises from the combination of the reference signal modulated by the sensor signal. The strain sensor configuration shows a phase sensitivity of $6.7pm 4.38times 10^{-2}~{rm mrad/}mu{rm strain}$ by linear regression.
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  • 44
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-04-03
    Description: Gallium nitride (GaN)-based light-emitting diodes (LEDs) equipped with distributed Bragg reflectors (DBR) and covered with either red or green phosphor layers are fabricated to form quasi-monochromatic red or green light sources. Titanium oxide and silicon oxide layers are alternately deposited to form the DBR with high reflectivity of 94.6% at 450 nm on the top of the GaN LEDs. The upward propagating blue light is reflected back by the DBR to excite the red or green phosphor layer at the bottom of GaN LEDs, producing additional fluorescence. However, there is still some blue light emitted out from the DBR and the side wall of the LEDs. Therefore, to obtain more intensive and pure monochromatic red or green light, another red (or green) phosphor thin layer is coated on the DBR. Thus, fabricated LEDs with phosphor layers on both the top and bottom surface show satisfactory monochromaticity and conversion efficiency.
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  • 45
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-04-03
    Description: We experimentally demonstrated a seamlessly integrated fiber-wireless system that delivers multichannel 120-Gb/s data through 80-km fiber and 2-m 2 $,times,$ 2 multiple-input multiple-output (MIMO) wireless link at 92-GHz W-band adopting polarization division multiplexing quadrature phase shift keying (PDM-QPSK) modulation. The three-channel 3 $,times,$ 40-Gb/s optical PDM-QPSK signals with 12.5-GHz channel spacing are simultaneously upconverted to 92-GHz wireless carrier by optical polarization-diversity heterodyne beating and then transmitted and received by two pairs of transmitter and receiver antennas, which form a full 2 $,times,$ 2 MIMO wireless link. At the wireless receiver, a two-stage analog and digital downconversion is performed. Polarization and wireless 2 $,times,$ 2 MIMO demultiplexing are realized by constant modulus algorithm based on digital signal processing. The bit-error ratio performance for the 120-Gb/s PDM-QPSK signal is measured after 80-km single-mode fiber-28 and 2-m wireless transmission.
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  • 46
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-14
    Description: A physical security-enhanced wavelength division multiplexed passive optical network (WDM-PON) based on chaos synchronization between twin laser pairs is introduced. Differing from the conventional WDM-PON systems, the downstream and upstream data are physically encrypted by chaotic carriers, and the decryption processes are performed based on WDM chaos synchronization. We numerically demonstrate that with sufficient wavelength spacing, a high quality chaos synchronization between the chaotic carriers with identical wavelength can be maintained, which enables the proposed WDM-PON to afford multichannel chaotic communications at high bit rates in both the downstream and upstream directions; in addition, the security of the physical layer can be greatly enhanced. The proposed scheme shows a potential way for implementing physically-secure PONs.
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  • 47
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-14
    Description: In this letter, 3-D solar cells based on radial amorphous/crystalline silicon heterojunctions (SHJs), which are formed on 2-D lattices of vertical high aspect-ratio microholes (MHs) etched in crystalline silicon (c-Si) substrates, are realized with conversion efficiency of ${sim}{3}%$ . Silicon high aspect-ratio MH lattices, with hole diameter of a few micrometers and hole depth of tens micrometers, are produced on n-type c-Si substrates by electrochemical micromachining (ECM) technology with low reflectance ( ${〈}{10}%$ depending on diameter and depth) in the wavelength range between 400 and 900 nm, which is commonly exploited for solar cell application. The radial SHJ solar cells are obtained by successive quasi-conformal deposition of hydrogenated amorphous silicon (a-Si:H) $i$ -layer and $p$ -layer, respectively, via plasma-enhanced chemical vapor deposition at 200 $^{circ}{rm C}$ , within the MH lattices, and subsequent indium tin oxide and Ag deposition for the formation of electrical front and back contacts, respectively. Experimental conversion efficiencies up to 2.72% are obtained under standard AM1.5 illumination with intensity of 100 ${rm mW}/{rm cm}^{2}$ , thus envisaging that ECM technology can be successfully adopted to realize efficient 3-D solar cells based on radial p-n junctions exploiting high aspect-ratio MH lattices, in particular, or other microstructures, in general.
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  • 48
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-14
    Description: In this letter, we focus on coherently detected, non differentially encoded, polarisation division multiplexed 100G communication systems; through incorporating phase noise in the channel model, we assess the net coding gain achievable by various constellations that can be used in lieu of the conventional quadrature phase-shift keying (QPSK). Whereas the optical community put much effort into the optimization of the forward error correction codes for QPSK, trying to reduce the gap to the Shannon limit, we show that a potential gain of more than 2 dB is still available if different constellations are adopted.
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  • 49
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-14
    Description: A pilot-aided channel equalizer (PACE) is proposed to mitigate the impairments caused by the polarization mode dispersion and laser phase noise simultaneously in reduced-guard-interval polarization-division-multiplexing coherent-optical orthogonal-frequency-division-multiplexing (RGI-PDM-CO-OFDM) transmission systems. Since PACE updates the channel state information symbol-by-symbol, it enables us to track the drifts in the optical channel. Adaptive PACE (APACE) and boosted PACE (BPACE) are then proposed to further improve the performance of PACE. Numerical simulations are carried out to compare the performance of APACE and BPACE with a conventional training symbols aided channel equalizer (TSACE) and adaptive decision-direct channel equalizer for a 108-Gb/s (56-GS/s) RGI-PDM-CO-OFDM system. It is revealed that both APACE and BPACE offer superior performances over the other two equalizers in the presence of laser phase noise, and they can tolerate lasers with a line width around $beta=2000~{rm k}$ ( $2pibeta T_{s}=2.24times 10$ when it is normalized to the symbol rate $1/T_{s}$ ). We also show that only small additional computation efforts are required for APACE and BPACE when compared with TSACE.
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  • 50
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-14
    Description: A dispersion-tuned harmonically mode-locked fiber laser is demonstrated using a reflective semiconductor optical amplifier (RSOA) and a chirped fiber Bragg grating. The laser is controlled by modulating the RSOA with a RF signal. The laser performance in terms of tunable bandwidth, pulsewidth, spectral width, output power, and optical signal to noise ratio (OSNR) is studied with respect to their dependence on the injected current levels to the RSOA. This letter indicates that lasing at higher harmonic order results in broaden temporal pulse width, larger spectral width, and lower OSNR. Narrower spectral width is obtained with lower modulation current causing less longitudinal modes to lase. A second synchronously gated RSOA is used to further amplify the laser with peak power up to 0 dBm with a constant output spectrum maintained at all wavelengths and reduced noise between pulses.
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  • 51
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-14
    Description: Soliton eigenstate is found corresponding to a dispersive phase profile under which the soliton phase changes induced by the dispersion and nonlinearity are instantaneously counterbalanced. Much like a waveguide coupler relying on a spatial refractive index profile that supports mode coupling between channels, here we suggest that the soliton spectral tunneling effect can be understood supported by a spectral phase coupler. The dispersive wave number in the spectral domain must have a coupler-like symmetric profile for soliton spectral tunneling to occur. We show that such a spectral coupler exactly implies phase as well as group-velocity matching between the input soliton and tunneled soliton, namely a soliton phase matching condition. Examples in realistic photonic crystal fibers are also presented.
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  • 52
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-14
    Description: We report on a compact ( ${〈}{rm 0.06}~{rm mm}^{2}$ footprint) silicon photonics integrated system performing high-sensitivity monitoring of in-band optical signal-to-noise ratio (OSNR). The system, including a thermally tunable racetrack resonator filter and an unbalanced Mach–Zehnder interferometer, performs the autocorrelation measurement of a filtered fraction of the noisy signal spectrum. Monitor performance is evaluated on a 10 Gb/s ON/OFF keying nonreturn to zero signal, demonstrating an accuracy of 0.4 dB over a wide OSNR range from 8 to 28 dB. We also demonstrate that the proposed system induces a tiny distortion of the optical signal, making it suitable for in-line monitoring of signal quality.
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  • 53
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-14
    Description: A novel parallel optical delay detector is proposed for angle-of-arrival (AOA) measurement of a microwave signal with accuracy monitoring. A theoretical model is built up to analyze the proposed system, including measurement accuracy monitoring. The measurements of AOA are then experimentally investigated with monitored measurement accuracy.
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  • 54
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-21
    Description: We present measurement results of a 0.25 ${rm mm}^{2}$ footprint eight-channel planar concave grating demultiplexer fabricated in a 300-nm-thick InP membrane adhesively bonded to silicon. The measured cross-talk between the different channels of the device is better than ${-}{rm 18}~{rm dB}$ , while the insertion loss is 2.8 dB. The power non-uniformity between the channels is 1.2 dB.
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  • 55
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-21
    Description: Theoretical study of the reflectance response of an asymmetrically-clad bimetallic film that supports coupled surface plasmon polariton modes has been presented. Through adjusting the relative thickness of the two metal film components, the relative coupling strength to the long range (LR) and short range plasmon modes can be altered. It is possible to obtain optimal and equi coupling (zero reflectivity) to both modes for given incident wavelength by further adjusting the overall thickness of bimetallic film. Simultaneous angular and spectral sensitivity calculations of resonance of the LR mode have been demonstrated for sensing application. Tailoring of the structure of individual metal films realizing equi- and non-equi-reflectance modes has been proposed which may further be used for plasmonic trinary logic using binary di-bit images.
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  • 56
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-09-25
    Description: Spatial-mode couplers (SMCs) are critical devices for mode-division-multiplexed (MDM) systems. In this letter, we report a low-loss symmetric SMC fabricated with custom-designed two-mode fiber and commercially available standard fused biconical taper station. Sophisticated hydrofluoric etching or pre-pulling on the fiber sample is not needed for fabrication. We characterize the performance of the fabricated SMC, which shows a low loss of 1.1–2 dB and high modal extinction ratio of ${geq}{rm 20}~{rm dB}$ for a broad wavelength range from 1539 to 1555 nm. We demonstrate transmission of 69.2-Gb/s ${rm LP}_{01}/{rm LP}_{11}$ dual-mode MDM coherent optical orthogonal-frequency division multiplexing signal over 4.5-km two-mode fiber using the fabricated SMC as mode multiplexer. The signal is successfully received at low (0.1/0.5 dB) optical signal-to-noise ratio penalty, and the estimated channel matrix confirms that there is very low modal crosstalk in both the SMC and the fiber.
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  • 57
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2014-11-08
    Description: Phase reconstruction based on optical ultrafast differentiation is implemented using an integrated-waveguide Mach–Zehnder interferometer to demonstrate self-referenced phase characterization of gigahertz-rate complex modulated signals (e.g., quadrature phase shift keying and amplitude phase shift keying modulation formats), through a single-shot and real-time technique. This method is transparent to both modulation format and bit rate, limited only by the bandwidth capabilities of the temporal intensity measurement instrumentation.
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  • 58
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2014-11-08
    Description: A 3D lithium niobate integrated electro-optical electric field (E-field) sensor utilizing three optical waveguide Mach–Zehnder interferometers has been designed, fabricated, and characterized for the measurement of lightning electromagnetic impulse (EMP). The linear detected E-fields with the sensor are 15–370 kV/m. Experimental results demonstrate that the half wave E-fields of the 3D probe are all more than 4000 kV/m which means the maximal detectable E-field can be exceed 1000 kV/m. Based on the time domain response for applying the nanosecond EMP, the frequency response of the sensor has been calculated up to 500 MHz.
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  • 59
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2014-11-08
    Description: A high-accuracy fiber-optic Michelson accelerometer based on frequency modulation is demonstrated and a new type of sensing elements is designed in this letter. The interference optical waves are modulated and demodulated. In theory, the sensitivity of the accelerometer goes up with the increase of frequency. The experimental results demonstrate that when the modulation frequency increases from 200 to 800 Hz, the sensitivity increases from 0.188 to 0.751 rad/g and the average error of acceleration measurement is $sim 1$ %.
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  • 60
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2014-12-06
    Description: An on-chip error-free 40-Gb/s-aggregated-data-rate link is achieved by transmitting a single wavelength of dual polarization-multiplexed (pol-mux) data at 10 Gb/s through a two-mode mode-division-multiplexing (MDM) chip, with a power penalty of <5 dB/channel. This is the first system-level experimental demonstration of combining pol-mux with MDM to enhance the performance of an on-chip Si photonics network, illustrating the potential to reduce total system electrical power budget by enabling multiple data channels with a single laser.
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  • 61
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2014-12-06
    Description: We propose and investigate a generalized quadrature phase-shift keying (QPSK) partitioning algorithm for carrier frequency offset (CFO) estimation in coherent optical 16-quadrature amplitude modulation (QAM) receivers. The algorithm utilizes the phase difference between the samples with different time-domain separations, so that the estimation accuracy can be significantly enhanced. We propose a computationally efficient procedure to implement the generalized CFO estimation algorithm. In a 28-GBd coherent 16-QAM system, simulation results and complexity analysis show that the time span of 16 can realize an optimal balance between performance and complexity. With the optimal time span, the complexity to achieve a normalized variance of $10^{mathrm {mathbf {-8}}}$ for the CFO estimation error can be reduced by 150 times compared with the conventional QPSK partitioning algorithm.
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  • 62
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2014-12-06
    Description: A novel and compact magnetic field sensor based on a tapered photonic crystal fiber (PCF) coated with ferrofluid is proposed. It consists of a section of tapered PCF, which is spliced between two single-mode fibers with a waist diameter of $24~mu $ m. The ferrofluid is filled in the capillary to coat the PCF taper. Experimentally, the refractive index (RI) of the ferrofluid increased under increasing magnetic field intensity ( ${H}$ ) with a sensitivity of $mathbf {4 times 10}^{mathbf {-5}}$ RIU/Gs and the RI sensitivity in the evanescent field is 401 nm/RIU. Therefore, the interference spectrum is shifted as the change of $boldsymbol {H}$ ranged from 100 to 600 Gs with a sensitivity of 16.04 pm/Gs and resolution of 0.62 Gs. The proposed magnetic field sensor is attractive due to its compact size, low cost, and immunity to electromagnetic interference beyond what conventional magnetic field sensors can offer.
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  • 63
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2014-12-06
    Description: To reduce the guard interval, short-cyclic-prefix coherent optical orthogonal frequency division multiplexing (CO-OFDM) divides a band into two subbands and precompensates for chromatic dispersion (CD) with timing offset. Implementation using full band inverse discrete Fourier transformations (IDFTs), however, can excessively increase hardware complexity. We propose an efficient hardware implementation of IDFT with timing offsets for short-cyclic-prefix CO-OFDM. In addition, the residual intersubband CD induced by quantized timing offset is compensated using subcarrier-based phase rotation. By increasing the number of subbands efficiently and compensating for the residual intersubband CD, the transmission performance can be improved. Simulation results show 112-Gb/s single-channel transmission over a 2250-km standard single-mode-fiber with polarization division multiplexing 16 quadrature amplitude modulation (PDM-16 QAM) using 128 DFT with a 16 guard interval.
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  • 64
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2012-12-20
    Description: A narrowband mid-infrared (mid-IR) guided-mode resonance filter (GMRF) is designed and fabricated using a Hafnium Dioxide film/quartz wafer material system. The fabricated GMRF is then integrated into an erbium (Er)-doped Zr-Ba-La-Al-Na (ZBLAN) fluoride glass fiber laser as a wavelength selective feedback element. The laser operated at 2782 nm with a line-width less than 2 nm demonstrates the viability of GMRFs for wavelength selection in the mid-IR.
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  • 65
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2012-12-20
    Description: We propose a mutually injection-locked tunable (MILT) laser for L-band generation based on arrayed waveguide grating and gain-saturated reflective semiconductor optical amplifiers. The laser generates a 3-dB bandwidth less than 0.05 nm and a high and uniform sidemode suppression ratio $({rm SMSR}>52~{rm dB},~Delta{rm SMSR}>3~{rm dB})$ over 40 L-band wavelengths. Using an MILT laser greatly reduced the phase noise, which is measured to be ${-}{rm 107.83}~{rm dBc}/{rm Hz}$ at a frequency of 10-kHz offset from the center. Furthermore, the 1.25-Gb/s directly modulated transmission performance of the MILT laser shows that there is a power penalty of ${sim}{rm 0.2}~{rm dB}$ over a 20-km single mode fiber.
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  • 66
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-02-20
    Description: We present a procedure for determining the linewidth enhancement factor ( $alpha$ factor) of semiconductor lasers under continuous-wave operation with a proper correction of thermal effects. Gain spectra are measured by the Fourier series expansion method, and the variations of refractive index are determined by the mode wavelength shift and Kramers–Kronig relation, respectively. The $alpha$ factors are measured in a wide wavelength range from 1170 to 1320 nm for an InAs/GaAs quantum dot (QD) laser with a cavity length of 440 $mu{rm m}$ . The $alpha$ factors of 0.42 and 0.79 are obtained at gain peak wavelength of 1210 nm for the excited state at the injection currents of 40 and 60 mA, and the corresponding values of 1.97 and 3.97 are obtained at a wavelength of 1285 nm, respectively. The results show a relative low $alpha$ factor at the gain peak position of QD excited state. We also calculate theoretically the optical gain and $alpha$ factor for the QD laser, and compare with the experimental results. The results indicate that high injection current will result in higher $alpha$ factor due to the appearance of asymmetry gain spectrum.
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  • 67
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-02-20
    Description: We demonstrate a five-port optical router that is suitable for large-scale photonic networks-on-chip. The optical router is designed to passively route the optical signal travelling in one direction and actively route the optical signal making a turn. In the case that an XY dimension-order routing is used, the passive routing feature guarantees that the maximum power consumption to route the data through the network is a constant that is independent of the network size. The fabricated device has an efficient footprint of ${sim}460times 1000~mu{rm m}^{2}$ . The routing functionality of the device is verified by using a 12.5-Gbit/s optical signal. The capability of multiwavlength routing for the optical router is also explored and discussed.
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  • 68
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-02-20
    Description: We report on sensing characteristics of a long period grating fabricated in polymer microstructured fiber using transverse periodic loading combined with fiber heating. The grating is characterized for strain and hydrostatic pressure sensitivity and shows linear response to both parameters with sensitivity coefficients equal, respectively, ${-}{rm 1.39}~{rm nm}/{rm mstrain}$ and 2.29 nm/MPa. We also measure the variation of the resonance depth induced by both parameters and study the temperature response of the grating.
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  • 69
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-02-20
    Description: This letter presents a novel design for a silicon-based light emitting diodes (LEDs) packaging module with an integrated photosensor. The carrier substrate for the LED submount and a photosensitive element are directly fabricated on a silicon wafer, using ion doping and inductively coupled plasma etching, thereby achieving a smart LED packaging module featuring miniaturization, integration and low cost. The subsequent assembly, with a specific heat sink and a shelled optical cap, results in a decrease in thermal effects and improves measurement sensitivity. The typical experiment result shows that the operating temperatures of the LED die and the photosensing element remain below 70 $^{circ}{rm C}$ and 45 $^{circ}{rm C}$ , respectively, when the input current to the LED is 0.3 A. The sensitivity of the photosensing module is 8.2 $mu {rm A}/{rm nt}$ for a chip size of 1 $,times,$ 1 $,times,$ 0.15 ${rm cm}^{3}$ . The working temperature and photosensitivity of this packaging module can be improved by using a system with high heat dissipation efficiency.
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  • 70
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-02-20
    Description: We investigate the improvement in the nonlinearity of a conventional wavelength swept laser source on the basis of a fiber Fabry–Pérot tunable filter using a well-established optimization method, simulated annealing (SA). The signal driving the filter is constructed from many short ramps of different slopes that are interconnected. The values of the slopes are optimized through the SA algorithm to achieve maximum amplitude for the Fourier transformed peaks of the photodetected interferometric signal.
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  • 71
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-02-20
    Description: We present a high efficiency terahertz (THz) 90 $^{circ}$ -bend electromagnetic crystal (EMXT) waveguide using Si-based microelectromechanical systems technology. The 2-D EMXT consists of a periodical array of square-shaped gold rods (13 $,times,$ 13 cells) deposited on a silicon substrate, and a 200-nm gold layer is further sputter-coated on the gold rod array. The dimension of each rod is 48 $,times,$ 48 $,times,$ 241 $mu{rm m}^{3}$ , and the total size of the EMXT is 1756 $,times,$ 1756 $,times,$ 787 $mu{rm m}^{3}$ . The 90 $^{circ}$ -bend waveguide is fabricated by removing three rows of rods from the EMXT. Through rigorous numerical simulation, it is found that transmittance higher than 90% are found in the whole range from 0.365 to 0.578 THz. The bending performance of the waveguide is further experimentally measured, where transmittance as high as 91.2% is observed at 0.5 THz. The proposed 90 $^{circ}$ -bend EMXT waveguide can be widely used for applications in THz circuit integrations and THz communications.
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  • 72
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-02-20
    Description: A Q-switched Erbium-doped fiber laser with symmetric cavity design is thoroughly investigated. It is shown theoretically and verified experimentally that such a laser is capable of generating stable giant pulses with smooth temporal shape and maximized peak power $({sim}{rm 40}~{rm W})$ and minimized duration $({sim}{rm 30}~{rm ns})$ , as compared with an analogous laser having conventional asymmetric cavity. The principle that stands behind this performance is also discussed.
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  • 73
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-02-20
    Description: We theoretically study all-optical simultaneous wavelength conversion of multiple channels by four-wave mixing in semiconductor ring lasers. Locking the semiconductor ring laser to a holding beam allows us to achieve large conversion efficiencies with good signal-to-noise ratio in several channels at multi-Gb/s bit rates. Cross-talk between signals, arising from the peculiar four-wave mixing cascade of modes in semiconductor ring lasers and their cross-gain saturation, is studied in detail. We show that it can be controlled by adjusting the intensity of the holding beam, the bias current of the laser, and the number, intensity, and wavelength of signals that one wants to convert.
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  • 74
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-02-20
    Description: We demonstrate a new kind of substrate structure to enhance the correlated color temperature (CCT) consistency of white light-emitting diodes through controlling the liquid morphology by the wetting theory. Based on this method, the effect of the coating phosphor volume variation on CCT can be effectively reduced. Numerical simulations and experiments on the dispensing process with different phosphor gel volumes are conducted. The results show that the height fluctuation of the phosphor layer on the new substrate is 54.5% of that on the conventional substrate when the dispensed phosphor gel volume changes from 3.38 to 4.98 $mu{rm l}$ . The optical simulation results show that compared with the conventional structure, the CCT consistency of the new substrate is improved by 42.3%.
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  • 75
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-02-20
    Description: Polarization splitters are important functions in integrated-optic devices for managing polarization diversity. We present the fabrication and characterization of polymer waveguide couplers with localized anisotropic segments in the coupling region. The core of the waveguide is made up of a polymerizable liquid crystal that is thermally patterned into isotropic and anisotropic regions before etching. For an appropriate coupling length, the coupler behaves as a polarization splitter: the horizontal polarization remains on the direct waveguide, while the vertical polarization is totally transferred to the coupled waveguide. This fabrication technique and the resulting couplers are useful elements for the development of polymer integrated-optic devices.
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  • 76
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-02-20
    Description: We present a quasi-real-time coherent sampling approach that combines the high-bandwidth and high-fidelity signal acquisition of equivalent-time optical sampling with real-time digital signal processing and equalization algorithms. The quasi-real-time concept enables feasibility studies of optical communication at symbol rates beyond the bandwidth of conventional digitizer approaches. Here we demonstrate the technique using a 107-GBd polarization-division-multiplexed quadrature phase shift keyed signal.
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  • 77
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-02-20
    Description: We present rectangular global envelope coherent direct sequence en/decoders for wavelength division multiplexing (WDM)-optical code division multiple access applications. The device presents balanced insertion loss and sharp edges for optimum DWDM channeling. Experimental results using 5 and 1 100-GHz sub-bands en/decoders demonstrate the applicability of these devices both for broadcasting and point-to-point applications.
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  • 78
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-02-20
    Description: A novel photonic approach to simultaneously implement frequency measurement and signal separation is proposed and experimentally demonstrated for pulsed and continuous-wave (CW) microwave signals. In this approach, a light wave is externally modulated with carrier suppressed by a pulsed or CW microwave signal to be measured, and then sent to two optical complementary filters to perform frequency-to-amplitude mapping. The outputs of the two filters are detected by low-speed photodetectors, low-frequency alternating currency (AC) electronic component and direct current (DC) one being generated. The carrier frequency of the pulsed microwave signal can be estimated by monitoring the power of the AC component, while the frequency of the CW microwave signal is discriminated from the power of the DC component, with the frequency measurement and the signal separation simultaneously realized. In proof-of-concept experiments, within the frequency range from 5 to 20 GHz, measurement errors less than ${pm}{0.1}$ , ${pm}{0.11}$ , or ${pm}{rm 0.13}~{rm GHz}$ are achieved for a pulsed signal with pulse repetition frequency of 0.25, 0.5, or 1 MHz, whereas the errors less than ${pm}{rm 0.08}~{rm GHz}$ are derived for a CW signal.
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  • 79
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2012-12-13
    Description: We find strong intensity modulations in surface plasmon polaritons (SPPs) by changing the refractive index and thickness (i.e., the optical length) of the dielectric layer in metal-dielectric nanodevices. We interpret the phenomena by considering the dielectric layer as a Fabry–Pérot cavity. Analysis from finite-difference time-domain numerical studies reveals that the strong periodic variation of the enhancement in SPP fields is due to alternating constructive and destructive interference of optical waves in the dielectric layer. The present results can be applied in designing planar metal-dielectric nanodevices that require optical intensity modulation or high-field enhancement, such as optical switches or thin-film solar cells.
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  • 80
    Publication Date: 2012-12-13
    Description: The blue InGaN light-emitting diodes (LEDs) with specific designs of p-InGaN/GaN superlattice (SL) last quantum barrier are investigated numerically and experimentally. The proposed SL with a graded indium mole fraction from 0% to 5% shows improved efficiency droop and superior optical characteristics in comparison with the conventional LEDs. As indicated by the simulation results, the promotion of hole injection and the reduction of electron leakage play important roles in these improvements. Fabricated LEDs with this specific design exhibit stronger emission intensity, smaller forward voltage, and larger light output power compared to its counterparts.
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  • 81
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2012-12-13
    Description: We propose and experimentally demonstrate the design of seamless integration of the third generation partnership program (3GPP) long-term evolution (LTE) with radio-over-fiber (RoF) for the eNodeB cell extension. The proposed system is optimized for all LTE analogue radio bandwidths (ARBs) namely, 3, 5, 10, 15, and 20 MHz. This letter presents the complete LTE-RoF system design with the optimum modulation region and an optimum optical launch power. The resultant optimized error vector magnitude for the 64-quadrature amplitude modulation-orthogonal frequency division multiplexing modulation scheme across the aforementioned ARBs is ${sim}{0.99%}$ , which is much lower than the 8% margin defined by 3GPP.
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  • 82
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2012-12-13
    Description: The fabrication of gallium-nitride (GaN)-based light-emitting diode (LED) arrays by a direct writing technique, itself using micron-sized LEDs (micro-LEDs), is reported. CMOS-driven ultraviolet GaN-based micro-LED arrays are used to pattern photoresist layers with feature sizes as small as 500 nm. Checkerboard-type square LED array devices are then fabricated using such photoresist patterns based on either single pixel or multipixel direct writing, and implemented as part of a completely mask-less process flow. These exemplar arrays are composed of either 450-nm-emitting 199 $,times,$ 199 $mu{rm m}^{2}$ pixels on a 200- $mu{rm m}$ pitch or 520-nm-emitting 21 $,times,$ 18 $mu{rm m}^{2}$ pixels on a 23- $mu{rm m}$ pitch. Fill factors of 99% and 71.5% are achieved with optical output power densities per pixel of 5 and 20 ${rm W}/{rm cm}^{2}$ at 90- and 6-mA dc-injected currents, respectively.
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  • 83
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2012-12-13
    Description: An integrated photoconductive (PC) sensor is proposed and tested as a fundamental extension of the semiconductor switch. An enhanced field-of-view (FOV) is demonstrated for application to indoor optical wireless communications (OWC). The three-fold symmetric architecture of the corner-cube PC sensor is adapted for use with the dc-shifted ac-three-phase $({rm ac}_{3phi})$ to establish output photocurrent characteristics that are largely independent of the incident optical angle-of-arrival. An enhanced FOV of $60^{circ}times 40^{circ}$ is demonstrated. The device can be integrated in future OWC systems for increased channel redundancy and greater reliability.
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  • 84
    Publication Date: 2012-12-13
    Description: We report 10.7-Gb/s nonreturn-to-zero (NRZ) real-time transmission over a 1-mm large-core polymethylmetacrylate polymer optical fiber (POF) using maximum likelihood sequence estimation. A maximum link length of 10 m of a standard step-index POF (SI-POF) and 35-m graded-index POF (GI-POF) was achieved with a fiber coupled power of 0 dBm, in order to comply with consumer eye-safety regulations. In order to show the robustness of this approach, the influence of fiber bends and different launching conditions were investigated. If the optical output power is increased to ${+}{rm 2}~{rm dBm}$ the link length can be increased up to 40 m of GI-POF.
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  • 85
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2012-12-13
    Description: An all-optical wavelength-division-multiplexing (WDM) to optical time-division-multiplexing (OTDM) conversion is described. The scheme is based on a Raman amplification-based multiwavelength pulse compressor and fiber-based cross phase modulation switch. In this letter, we experimentally demonstrate the conversion from 4 $,times,$ 10-Gb/s WDM channels to one 40-Gb/s OTDM channel with the power penalties of less than 2 dB.
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  • 86
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2012-12-13
    Description: A concentrating photovoltaic (CPV) system with a steady electric output adopting an electrically tunable concentration ratio of the liquid crystals (LC) lens is demonstrated. The distribution of the LC directors of the LC lens can be controlled by an applied voltage in order to adjust the number of incident photons in an area. As a result, the CPV system adopting an LC lens can be operated with a static and maximum output power density under different ambient illuminations because the LC lens with an electrically tunable concentration ratio helps to increase the photocurrent at a low illumination and prevent the effect of the series resistance at a high illumination. The detailed operating principles are discussed, and the experimental results are performed. We believe this letter can help enhance the output power density of CPV systems by using active optical elements whose concentration ratio is tunable.
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  • 87
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2012-12-13
    Description: A recent report by the authors presented theoretical studies of a new method of interrogation of the position of arrays of micro-electro-mechanical system (MEMS) cantilever and doubly clamped beams. This letter represents the first experimental evidence of the performance of such an interrogation technique, confirming the modelling and showing noise performance close to the theoretical predictions. Such a technique will be useful in applications such as MEMS-based chemical sensing. Our experimental results show the potential to realize a shot-noise limited component of minimum detectable deflection of 16 ${rm fm}/sqrt{rm Hz}$ .
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  • 88
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2012-12-13
    Description: We demonstrate a novel grating coupler fabricated on a silicon-on-insulator (SOI) wafer operating at 1550 nm, based on an ultrathin 50-nm silicon geometry. The devices are fabricated in a CMOS-compatible process with a single etch step. A low insertion loss of ${-}{rm 3.7}~{rm dB}$ is achieved. We also calculate the backreflection loss to be ${-}{rm 14}~{rm dB}$ . The devices are likely to be useful in terms of light coupling between optical fibers and ultrathin silicon waveguides.
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  • 89
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2012-12-13
    Description: This letter explains color space and signal space in visible light communications using multicolored LEDs. We propose the concept of color intensity modulation that satisfies color and dimming requirements in color space and maximizes communication capacity in signal space. The capacity values and corresponding signal constellation examples are given for orthogonal and nonorthogonal channels.
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  • 90
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-02-09
    Description: We demonstrate dispersion compensation for highly chirped optical pulses with an ultracompact optical pulse shaper. The device integrates a 20-channel arrayed waveguide grating with 20 phase modulators and 20 semiconductor optical amplifiers on a single chip of 6 $,times,$ 6 ${rm mm}^{2}$ . The chip has been realized in an InP-based generic photonic foundry process, which enables a significant reduction in design effort using standardized building blocks.
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  • 91
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    Publication Date: 2013-02-09
    Description: We report on supercontinuum generation using a mode-locked VECSEL emitting 400-fs pulses at a 3-GHz repetition rate, amplified with a cascaded ytterbium-doped fiber amplifier system up to 40 W of average power. The pulses are then recompressed to their original duration via a high throughput transmission grating compressor, and used to generate supercontinuum in two samples of photonic crystal fiber (PCF): an all-normal dispersion PCF, and a PCF with a zero dispersion wavelength of 1040 nm, creating 20 dB spectral bandwidths of 200 nm and 280 nm, respectively.
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  • 92
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    Publication Date: 2013-02-09
    Description: A novel method to improve the measurement range, resolution, and multiplexing capability of time division multiplexed (TDM) fiber Bragg grating (FBM) sensors, based on advanced cyclic pulse coding, is proposed and experimentally demonstrated. The mechanism of noise reduction by quasi-periodic cyclic coding is quantitatively demonstrated, pointing out significant improvement in dynamic strain resolution with respect to single pulse TDM FBG interrogation. The use of cycling pulse coding allows for enhanced dynamic performance of real time strain measurement with respect to other coding techniques. The proposed technique can also enhance the sensing range of hybrid optical fiber sensor systems in which continuous static temperature/strain distributions and discrete dynamic strain in specific critical points are simultaneously measured over the same sensing fiber.
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  • 93
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-02-09
    Description: We introduce and demonstrate an ultra-compact 5 $,times,$ 5 waveband cross-connect module that can process 80 channels (50-GHz spacing) per fiber; it combines 50–100-GHz interleavers and two 5 $,times,$ 5 waveband cross-connect (WBXC) modules with 100-GHz channel spacing that are staggered by 50 GHz. The interleavers have a nearly rectangular spectral shape so that this scheme minimizes the spectrum narrowing effect. Our proposed 50-GHz spaced waveband cross-connect holds the 3 dB bandwidth of 86% of the component WBXC module that is designed for 100-GHz spaced channels. This architecture yields very small size WBXCs that provide wide passband and sharp cutoff. Its routing capability and transmission characteristics are also confirmed.
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  • 94
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-02-09
    Description: We demonstrate the method of stable bound solitons formation by applying the active loss modulation into the cavity. The modulation at high harmonic of cavity frequency could efficiently prevent irregular soliton bunching and result in the development of a stationary group of pulses with locked phases.
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  • 95
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    Publication Date: 2013-02-09
    Description: The amplifying and filtering performance of a highly Yb/Er-codoped phosphate glass add-drop filter is numerically analyzed. The use of the microscopic statistical formalism to describe energy-transfer inter-atomic mechanisms allows determining realistic optimum parameters and working conditions. In order to optimize the device performance and achieve a significant signal power gain in both through and drop ports, in addition to a careful previous design, moderate input pump powers $({>}{rm 5}0~{rm mW})$ and comparatively high erbium concentrations $({>}5times 10^{26}~{rm m}^{-3})$ are required. The optimal parameters present a strong dependence on the input pump power. This dependence confirms the necessity of considering the energy-transfer inter-atomic mechanisms for any optimization design process.
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  • 96
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-02-05
    Description: In this letter, a next-generation time-division multiplexed passive optical network (TDM-PON) based on multilevel differential modulation formats is proposed. Multilevel modulation enables the efficient scaling of bit rates without resorting to very high-speed electronics and photonics, while differential detection simplifies the detection process. The 40 Gb/s downstream signal is implemented with Star 16 quadrature amplitude modulation, while two upstream channels are evaluated, a simple, asymmetrical 10 Gb/s on-off keying signal and a 30-Gb/s differential eight phase-shift keying signal. Experimental results show very good receiver sensitivities, indicating the proposed modulation format's suitability for future very high-speed TDM-PONs.
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    Electronic ISSN: 1941-0174
    Topics: Electrical Engineering, Measurement and Control Technology
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  • 97
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-02-05
    Description: A novel approach to symbol spaced adaptive multiple-input–multiple-output (MIMO) equalization is proposed. Different functionalities are defined for static versus adaptive equalizers, to minimize noise enhancement. Static equalizers are used for anti-aliasing filtering and bulk CD compensation, and a newly proposed modified-LMS-based adaptive MIMO equalizer is used to compensate for fiber random impairments such as residual CD and PMD. In addition, the proposed technique enables the use of low-cost reduced bandwidth components in both transmit and receive sides, and supports aggressive in-line optical filtering in the existing WDM network. Moreover, the proposed technique perfectly suits coherent metro applications, allowing significant power savings in application specific integrated circuit implementation.
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    Electronic ISSN: 1941-0174
    Topics: Electrical Engineering, Measurement and Control Technology
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  • 98
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-02-05
    Description: We demonstrated a waveguide crossing for submicron silicon waveguides with average insertion loss of ${rm 0.18}{pm}{rm 0.03}~{rm dB}$ and crosstalk of ${-}{rm 41}{pm}{rm 2}~{rm dB}$ , uniform across an 8-inch wafer. The device was fabricated in a CMOS-compatible process using 248 nm lithography, with only one patterning step.
    Print ISSN: 1041-1135
    Electronic ISSN: 1941-0174
    Topics: Electrical Engineering, Measurement and Control Technology
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  • 99
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-02-05
    Description: A metal/air/metal (MAM) plasmonic grating waveguide (PGW) consisting of two parallel silver slabs with periodic corrugations on their inner boundaries is developed to slow down the group velocity of surface plasmon polaritons (SPPs) excited at near-infrared frequencies. For a Gaussian pulse excitation with the full width at half maxim (FWHM) of 222 fs and the center wavelength of 1.58 $mu{rm m}$ , the group velocity of 0.034c and the group velocity dispersion (GVD) of 0.8 ps/mm/nm can be achieved in finite-difference time-domain (FDTD) simulations with pulse excitation. Furthermore, a chirped PGW with varying groove depth is also demonstrated as a way to trap light by adopting continuous excitation.
    Print ISSN: 1041-1135
    Electronic ISSN: 1941-0174
    Topics: Electrical Engineering, Measurement and Control Technology
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  • 100
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    Institute of Electrical and Electronics Engineers (IEEE)
    Publication Date: 2013-02-05
    Description: A frequency-quadrupling dual-loop optoelectronic oscillator (OEO) is proposed and demonstrated by two cascaded polarization modulators. The introduction of frequency quadrupling to the proposed OEO requires no optical filtering, which not only increases the maximal achievable frequency by four times, but also enables powerful optical signal processing functions. An experiment is carried out. A high-quality millimeter-wave signal at 39.75 GHz is generated using low-frequency devices. Photonic microwave upconversion at two wavelength channels is also demonstrated on the basis of the proposed frequency-quadrupling OEO.
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    Electronic ISSN: 1941-0174
    Topics: Electrical Engineering, Measurement and Control Technology
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