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  • Organic Chemistry  (813)
  • Quantum information  (535)
  • Matter waves and collective properties of cold atoms and molecules  (491)
  • Seismology
  • 2015-2019  (1,319)
  • 1950-1954  (452)
  • 1925-1929  (360)
  • 2016  (1,319)
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  • 2015-2019  (1,319)
  • 1950-1954  (452)
  • 1925-1929  (360)
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  • 1
    Publication Date: 2016-07-13
    Description: Earth's free oscillations excited by a mega-thrust earthquake were observed by a continent-scale array of groundwater monitoring sites for the first time. After the occurrence of the 2011 Tohoku M w 9.0 earthquake, water level records at 43 out of 216 wells in the China mainland revealed long-period free oscillation signals. In the time domain, these free oscillations exhibit globe circling Rayleigh surface waves. In some single wells, even the globe-circling Rayleigh wave R7 was visible, which travels three times around the Earth after the first arrival and appears about 10 hr after the earthquake occurrence in the present case. The spectral analysis shows that the principal oscillatory fluctuations seen in the water level records correspond to the spheroidal modes 0 S l ( l  = 2–31 for frequencies between 0.3 and 5.0 mHz) of the Earth's free oscillation. Especially at quiet sites, the spheroidal modes at very low frequencies (〈1.5 mHz) can be identified with high signal-to-noise ratios. Using signal enhancement methods (product spectrum over 43 wells), even the gravest modes of these oscillations can be detected. The results suggest that groundwater level arrays can be considered as a low-cost complementary tool to study the Earth's free oscillations excited by great earthquakes. Additionally, the site-specific aquifer response may provide further insight into local hydrogeological conditions.
    Keywords: Seismology
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    Topics: Geosciences
    Published by Oxford University Press on behalf of The Deutsche Geophysikalische Gesellschaft (DGG) and the Royal Astronomical Society (RAS).
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  • 2
    Publication Date: 2016-07-13
    Description: We performed numerical simulations of the 2011 deep-seated Akatani landslide in central Japan to understand the dynamic evolution of friction of the landslide. By comparing the forces obtained from numerical simulation to those resolved from seismic waveform inversion, the coefficient of the friction during sliding was investigated in the range of 0.1–0.4. The simulation assuming standard Coulomb friction shows that the forces obtained by the seismic waveform inversion are well explained using a constant friction of μ = 0.3. A small difference between the residuals of Coulomb simulation and a velocity-dependent simulation suggests that the coefficient of friction over the volume is well constrained as 0.3 most of time during sliding. It suggests the sudden loss of shearing resistance at the onset of sliding, that is, sudden drop of the initial coefficient of friction in our model, which accelerates the deep-seated landslide. Our numerical simulation calibrated by seismic data provides the evolution of dynamic friction with a reasonable resolution in time, which is difficult to obtain from a conventional runout simulation, or seismic waveform inversion alone.
    Keywords: Seismology
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  • 3
    Publication Date: 2016-07-13
    Description: We introduce a technique to compute exact anelastic sensitivity kernels in the time domain using parsimonious disk storage. The method is based on a reordering of the time loop of time-domain forward/adjoint wave propagation solvers combined with the use of a memory buffer. It avoids instabilities that occur when time-reversing dissipative wave propagation simulations. The total number of required time steps is unchanged compared to usual acoustic or elastic approaches. The cost is reduced by a factor of 4/3 compared to the case in which anelasticity is partially accounted for by accommodating the effects of physical dispersion. We validate our technique by performing a test in which we compare the K α sensitivity kernel to the exact kernel obtained by saving the entire forward calculation. This benchmark confirms that our approach is also exact. We illustrate the importance of including full attenuation in the calculation of sensitivity kernels by showing significant differences with physical-dispersion-only kernels.
    Keywords: Seismology
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  • 4
    Publication Date: 2016-07-13
    Description: Real Earth media are not perfectly elastic. Instead, they attenuate propagating mechanical waves. This anelastic phenomenon in wave propagation can be modeled by a viscoelastic mechanical model consisting of several standard linear solids. Using this viscoelastic model, we approximate a constant Q over a frequency band of interest. We use a four-element viscoelastic model with a trade-off between accuracy and computational costs to incorporate Q into 2-D time-domain first-order velocity–stress wave equations. To improve the computational efficiency, we limit the Q in the model to a list of discrete values between 2 and 1000. The related stress and strain relaxation times that characterize the viscoelastic model are pre-calculated and stored in a database for use by the finite-difference calculation. A viscoelastic finite-difference scheme that is second order in time and fourth order in space is developed based on the MacCormack algorithm. The new method is validated by comparing the numerical result with analytical solutions that are calculated using the generalized reflection/transmission coefficient method. The synthetic seismograms exhibit greater than 95 per cent consistency in a two-layer viscoelastic model. The dispersion generated from the simulation is consistent with the Kolsky–Futterman dispersion relationship.
    Keywords: Seismology
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  • 5
    Publication Date: 2016-07-13
    Description: After 83 yr, the great normal-faulting earthquake of 1933 March 2, which took place off the Japan Trench and produced a devastating tsunami on the Sanriku coast and damaging waves in Hawaii, remains the largest recorded normal-faulting earthquake. This study uses advanced methods to investigate this event using far-field seismological and tsunami data and complements a sister study by Uchida et al. which used exclusively arrival times at Japanese stations. Our relocation of the main shock (39.22°N, 144.45°E, with a poorly constrained depth of less than 40 km) places it in the outer trench slope, below a seafloor depth of ~6500 m, in a region of horst-and-graben structure, with fault scarps approximately parallel to the axis of the Japan Trench. Relocated aftershocks show a band of genuine shallow aftershocks parallel to the Japan Trench under the outer trench slope and a region of post-mainshock events landward of the trench axis that occur over roughly the same latitude range and are thought to be the result of stress transfer to the interplate thrust boundary following the normal-faulting rupture. Based on a combination of P -wave first motions and inversion of surface wave spectral amplitudes, we propose a normal-faulting focal mechanism ( = 200°, = 61° and = 271°) and a seismic moment M 0 = (7 ± 1) x 10 28 dyn cm ( M w = 8.5). A wide variety of data, including the distribution of isoseismals, the large magnitudes (up to 8.9) proposed by early investigators before the standardization of magnitude scales, estimates of energy-to-moment ratios and the tentative identification of a T wave at Pasadena (and possibly Riverside), clearly indicate that this seismic source was exceptionally rich in high-frequency wave energy, suggesting a large apparent stress and a sharp rise time, and consistent with the behaviour of many smaller shallow normal-faulting earthquakes. Hydrodynamic simulations based on a range of possible sources consistent with the above findings, including a compound rupture on two opposite-facing normal-faulting segments, are in satisfactory agreement with tsunami observations in Hawaii, where run-up reached 3 m, causing significant damage. This study emphasizes the need to include off-trench normal-faulting earthquake sources in global assessments of tsunami hazards emanating from the subduction of old and cold plates, whose total length of trenches exceed 20 000 km, even though only a handful of great such events are known with confidence in the instrumental record.
    Keywords: Seismology
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  • 6
    Publication Date: 2016-07-14
    Description: Author(s): Zhu Cao, Qi Zhao, and Xiongfeng Ma Quantum key distribution provides information-theoretically-secure communication. In practice, device imperfections may jeopardise the system security. Device-independent quantum key distribution solves this problem by providing secure keys even when the quantum devices are untrusted and uncharacter… [Phys. Rev. A 94, 012319] Published Wed Jul 13, 2016
    Keywords: Quantum information
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  • 7
    Publication Date: 2016-07-15
    Description: To refine the 3-D seismic velocity model in the greater Parkfield, California region, a new data set including regular earthquakes, shots, quarry blasts and low-frequency earthquakes (LFEs) was assembled. Hundreds of traces of each LFE family at two temporary arrays were stacked with time–frequency domain phase weighted stacking method to improve signal-to-noise ratio. We extend our model resolution to lower crustal depth with LFE data. Our result images not only previously identified features but also low velocity zones (LVZs) in the area around the LFEs and the lower crust beneath the southern Rinconada Fault. The former LVZ is consistent with high fluid pressure that can account for several aspects of LFE behaviour. The latter LVZ is consistent with a high conductivity zone in magnetotelluric studies. A new Vs model was developed with S picks that were obtained with a new autopicker. At shallow depth, the low Vs areas underlie the strongest shaking areas in the 2004 Parkfield earthquake. We relocate LFE families and analyse the location uncertainties with the NonLinLoc and tomoDD codes. The two methods yield similar results.
    Keywords: Seismology
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  • 8
    Publication Date: 2016-07-15
    Description: Author(s): Quntao Zhuang, Zheshen Zhang, Justin Dove, Franco N. C. Wong, and Jeffrey H. Shapiro The channel loss incurred in long-distance transmission places a significant burden on quantum key distribution (QKD) systems: they must defeat a passive eavesdropper who detects all the light lost in the quantum channel and does so without disturbing the light that reaches the intended destination.… [Phys. Rev. A 94, 012322] Published Thu Jul 14, 2016
    Keywords: Quantum information
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  • 9
    Publication Date: 2016-07-15
    Description: Author(s): Dongfeng Gao and Mingsheng Zhan Various theories of quantum gravity predict the existence of a minimum length scale, which implies the Planck-scale modifications of the Heisenberg uncertainty principle to a so-called generalized uncertainty principle (GUP). Previous studies of the GUP focused on its implications for high-energy ph… [Phys. Rev. A 94, 013607] Published Thu Jul 14, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 10
    Publication Date: 2016-07-15
    Description: Author(s): Jeffrey Marshall, Victor Martin-Mayor, and Itay Hen How can we tell whether a quantum processor is able to demonstrate a quantum speedup in optimization algorithms? An efficient procedure for generating hard spin-glass problems that could be used to benchmark quantum annealers is proposed. [Phys. Rev. A 94, 012320] Published Thu Jul 14, 2016
    Keywords: Quantum information
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  • 11
    Publication Date: 2016-07-15
    Description: Author(s): G. Engelhardt, G. Schaller, and T. Brandes We investigate the coherent dynamics of a noninteracting Bose-Einstein condensate in a system consisting of two bosonic reservoirs coupled via a spatially localized mode. We describe this system by a two-terminal Fano-Anderson model and investigate analytically the time evolution of observables such… [Phys. Rev. A 94, 013608] Published Thu Jul 14, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 12
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    American Physical Society (APS)
    Publication Date: 2016-07-16
    Description: Author(s): Xueyuan Hu We define the non–coherence-generating channel as the completely positive trace-preserving map which does not generate quantum coherence from an incoherent state. The incoherent operations are the strict subset of the non–coherence-generating channels. Although the relative entropy of coherence is m… [Phys. Rev. A 94, 012326] Published Fri Jul 15, 2016
    Keywords: Quantum information
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  • 13
    Publication Date: 2016-07-19
    Description: Author(s): Brendan C. Mulkerin, Xia-Ji Liu, and Hui Hu Interacting Fermi systems in the strongly correlated regime play a fundamental role in many areas of physics and are of particular interest to the condensed matter community. Though weakly interacting fermions are understood, strongly correlated fermions are difficult to describe theoretically as th… [Phys. Rev. A 94, 013610] Published Mon Jul 18, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 14
    Publication Date: 2016-07-20
    Description: The Cadzow rank-reduction method can be effectively utilized in simultaneously denoising and reconstructing 5-D seismic data that depend on four spatial dimensions. The classic version of Cadzow rank-reduction method arranges the 4-D spatial data into a level-four block Hankel/Toeplitz matrix and then applies truncated singular value decomposition (TSVD) for rank reduction. When the observed data are extremely noisy, which is often the feature of real seismic data, traditional TSVD cannot be adequate for attenuating the noise and reconstructing the signals. The reconstructed data tend to contain a significant amount of residual noise using the traditional TSVD method, which can be explained by the fact that the reconstructed data space is a mixture of both signal subspace and noise subspace. In order to better decompose the block Hankel matrix into signal and noise components, we introduced a damping operator into the traditional TSVD formula, which we call the damped rank-reduction method. The damped rank-reduction method can obtain a perfect reconstruction performance even when the observed data have extremely low signal-to-noise ratio. The feasibility of the improved 5-D seismic data reconstruction method was validated via both 5-D synthetic and field data examples. We presented comprehensive analysis of the data examples and obtained valuable experience and guidelines in better utilizing the proposed method in practice. Since the proposed method is convenient to implement and can achieve immediate improvement, we suggest its wide application in the industry.
    Keywords: Seismology
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  • 15
    Publication Date: 2016-07-20
    Description: Author(s): Ali Asadian, Paul Erker, Marcus Huber, and Claude Klöckl We introduce a Hermitian generalization of Pauli matrices to higher dimensions which is based on Heisenberg-Weyl operators. The complete set of Heisenberg-Weyl observables allows us to identify a real-valued Bloch vector for an arbitrary density operator in discrete phase space, with a smooth transi… [Phys. Rev. A 94, 010301(R)] Published Tue Jul 19, 2016
    Keywords: Quantum information
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  • 16
    Publication Date: 2016-07-21
    Description: An exact analytical solution is presented for the effective dynamic transverse shear modulus in a heterogeneous fluid-filled porous solid containing cylindrical inclusions. The complex and frequency-dependent properties of the dynamic shear modulus are caused by the physical mechanism of mesoscopic-scale wave-induced fluid flow whose scale is smaller than wavelength but larger than the size of pores. Our model consists of three phases: a long cylindrical inclusion, a cylindrical shell of poroelastic matrix material with different mechanical and/or hydraulic properties than the inclusion and an outer region of effective homogeneous medium of laterally infinite extent. The behavior of both the inclusion and the matrix is described by Biot's consolidation equations, whereas the surrounding effective medium which is used to describe the effective transverse shear properties of the inner poroelastic composite is assumed to be a viscoelastic solid whose complex transverse shear modulus needs to be determined. The determined effective transverse shear modulus is used to quantify the S -wave attenuation and velocity dispersion in heterogeneous fluid-filled poroelastic rocks. The calculation shows the relaxation frequency and relative position of various fluid saturation dispersion curves predicted by this study exhibit very good agreement with those of a previous 2-D finite-element simulation. For the double-porosity model (inclusions having a different solid frame than the matrix but the same pore fluid as the matrix) the effective shear modulus also exhibits a size-dependent characteristic that the relaxation frequency moves to lower frequencies by two orders of magnitude if the radius of the cylindrical poroelastic composite increases by one order of magnitude. For the patchy-saturation model (inclusions having the same solid frame as the matrix but with a different pore fluid from the matrix), the heterogeneity in pore fluid cannot cause any attenuation in the transverse shear modulus at all. A comparison with the case of spherical inclusions illustrates that the transverse shear modulus for the cylindrical inclusion exhibits more S -wave attenuation than spherical inclusions.
    Keywords: Seismology
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  • 17
    Publication Date: 2016-07-21
    Description: Author(s): Yu-Jie Tan, Cheng-Gang Shao, and Zhong-Kun Hu The finite-speed-of-light (FSL) effect is a systematic error in atom gravimeters arising from the time delay due to the propagation of the light. It includes the frequency-chirp-independent part and the frequency-chirp-dependent part, which were not considered completely. The FSL effect in atom grav… [Phys. Rev. A 94, 013612] Published Wed Jul 20, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 18
    Publication Date: 2016-07-22
    Description: Author(s): T. J. Elliott and I. B. Mekhov Interactions between many-body atomic systems in optical lattices and light in cavities induce long-range and correlated atomic dynamics beyond the standard Bose-Hubbard model, due to the global nature of the light modes. We characterize these processes, and show that uniting such phenomena with dyn… [Phys. Rev. A 94, 013614] Published Thu Jul 21, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 19
    Publication Date: 2016-07-23
    Description: Author(s): Axel U. J. Lode and Christoph Bruder We apply the multiconfigurational time-dependent Hartree method for indistinguishable particles (MCTDH-X) to systems of bosons or fermions in lattices described by Hubbard-type Hamiltonians with long-range or short-range interparticle interactions. The wave function is expanded in a variationally op… [Phys. Rev. A 94, 013616] Published Fri Jul 22, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 20
    Publication Date: 2016-07-23
    Description: Author(s): A.-W. de Leeuw, E. C. I. van der Wurff, R. A. Duine, D. van Oosten, and H. T. C. Stoof We construct a theory for Bose-Einstein condensation of light in nanofabricated semiconductor microcavities. We model the semiconductor by one conduction and one valence band which consist of electrons and holes that interact via a Coulomb interaction. Moreover, we incorporate screening effects by u… [Phys. Rev. A 94, 013615] Published Fri Jul 22, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 21
    Publication Date: 2016-07-24
    Description: Secondary microseism sources are pressure fluctuations close to the ocean surface. They generate acoustic P waves that propagate in water down to the ocean bottom where they are partly reflected and partly transmitted into the crust to continue their propagation through the Earth. We present the theory for computing the displacement power spectral density of secondary microseism P waves recorded by receivers in the far field. In the frequency domain, the P -wave displacement can be modeled as the product of (1) the pressure source, (2) the source site effect that accounts for the constructive interference of multiply reflected P waves in the ocean, (3) the propagation from the ocean bottom to the stations and (4) the receiver site effect. Secondary microseism P waves have weak amplitudes, but they can be investigated by beamforming analysis. We validate our approach by analysing the seismic signals generated by typhoon Ioke (2006) and recorded by the Southern California Seismic Network. Backprojecting the beam onto the ocean surface enables to follow the source motion. The observed beam centroid is in the vicinity of the pressure source derived from the ocean wave model WAVEWATCH III R . The pressure source is then used for modeling the beam and a good agreement is obtained between measured and modeled beam amplitude variation over time. This modeling approach can be used to invert P -wave noise data and retrieve the source intensity and lateral extent.
    Keywords: Seismology
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  • 22
    Publication Date: 2016-07-24
    Description: In the context of the verification of the Comprehensive Nuclear-Test Ban Treaty in the marine environment, we present a new discriminant based on the empirical observation that hydroacoustic phases recorded at T -phase stations from explosive sources in the water column feature a systematic inverse dispersion, with lower frequencies traveling slower, which is absent from signals emanating from earthquake sources. This difference is present even in the case of the so-called ‘hotspot earthquakes’ occurring inside volcanic edifices featuring steep slopes leading to efficient seismic–acoustic conversions, which can lead to misidentification of such events as explosions when using more classical duration-amplitude discriminants. We propose an algorithm for the compensation of the effect of dispersion over the hydroacoustic path based on a correction to the spectral phase of the ground velocity recorded by the T -phase station, computed individually from the dispersion observed on each record. We show that the application of a standard amplitude-duration algorithm to the resulting compensated time-series satisfactorily identifies records from hotspot earthquakes as generated by dislocation sources, and present a full algorithm, lending itself to automation, for the discrimination of explosive and earthquake sources of hydroacoustic signals at T -phase stations. The only sources not readily identifiable consist of a handful of complex explosions which occurred in the 1970s, believed to involve the testing of advanced weaponry, and which should be independently identifiable through routine vetting by analysts. While we presently cannot provide a theoretical justification to the observation that only explosive sources generate dispersed T phases, we hint that this probably reflects a simpler, and more coherent distribution of acoustic energy among the various modes constituting the wave train, than in the case of dislocation sources embedded in the solid Earth.
    Keywords: Seismology
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  • 23
    Publication Date: 2016-07-25
    Description: This work presents an innovative strategy to enhance the resolution of surface wave tomography obtained from ambient noise cross-correlation ( C 1 ) by bridging asynchronous seismic networks through the correlation of coda of correlations ( C 3 ). Rayleigh wave group dispersion curves show consistent results between synchronous and asynchronous stations. Rayleigh wave group traveltimes are inverted to construct velocity–period maps with unprecedented resolution for a region covering Mexico and the southern United States. The resulting period maps are then used to regionalize dispersion curves in order to obtain local 1-D shear velocity models ( V S ) of the crust and uppermost mantle in every cell of a grid of 0.4°. The 1-D structures are obtained by iteratively adding layers until reaching a given misfit, and a global tomography model is considered as an input for depths below 150 km. Finally, a high-resolution 3-D V S model is obtained from these inversions. The major structures observed in the 3-D model are in agreement with the tectonic-geodynamic features and with previous regional and local studies. It also offers new insights to understand the present and past tectonic evolution of the region.
    Keywords: Seismology
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  • 24
    Publication Date: 2016-07-26
    Description: Author(s): Ebubechukwu O. Ilo-Okeke and Tim Byrnes We further examine a theory of phase contrast imaging (PCI) of cold atomic gases, first introduced by us in Phys. Rev. Lett. 112 , 233602 (2014) . We model the PCI measurement by directly calculating the entangled state between the light and the atoms due to the ac Stark shift, which induces a conditi… [Phys. Rev. A 94, 013617] Published Mon Jul 25, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 25
    Publication Date: 2016-07-29
    Description: Determination of a response of the sea water column to teleseismic plane wave is important to suppress adverse effects of water reverberations in calculating receiver functions (RFs) using ocean-bottom seismometer (OBS) records. We present a novel non-linear waveform analysis method using the simulated annealing algorithm to determine such a water-layer response recorded by an OBS array. We then demonstrate its usefulness for the RF estimation through its application to synthetic and observed data. Synthetic experiments suggest that the water-layer response constrained in this way has a potential to improve RFs of OBS records drastically even in the high-frequency range (to 4 Hz). By applying it to data observed by the OBS array around the Kii Peninsula, southwestern Japan, we identified a low-velocity zone at the top of the subducting Philippine Sea plate. This zone may represent the incoming fluid-rich sediment layer that has been reported by active-source seismic survey.
    Keywords: Seismology
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  • 26
    Publication Date: 2016-07-29
    Description: Author(s): A.-M. Visuri, J. J. Kinnunen, J. E. Baarsma, and P. Törmä We study the transport, decoherence, and the dissipation of the kinetic energy of a mobile impurity interacting with a bath of free fermions in a one-dimensional lattice. Numerical simulations are made with the time-evolving block decimation method, starting from a state where the impurity and bath … [Phys. Rev. A 94, 013619] Published Thu Jul 28, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 27
    Publication Date: 2016-07-30
    Description: Author(s): Dardo Goyeneche, Jakub Bielawski, and Karol Życzkowski Heterogeneous bipartite quantum pure states, composed of two subsystems with a different number of levels, cannot have both reductions maximally mixed. In this work, we demonstrate the existence of a wide range of highly entangled states of heterogeneous multipartite systems consisting of N 〉 2 par… [Phys. Rev. A 94, 012346] Published Fri Jul 29, 2016
    Keywords: Quantum information
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  • 28
    Publication Date: 2016-07-30
    Description: Author(s): Laura T. Knoll, Christian T. Schmiegelow, Osvaldo Jiménez Farías, Stephen P. Walborn, and Miguel A. Larotonda The occurrence of entanglement sudden death in the evolution of a bipartite system depends on both the initial state and the channel responsible for the evolution. An extreme case is that of entanglement-breaking channels, which are channels that, acting on only one of the subsystems, drives them to… [Phys. Rev. A 94, 012345] Published Fri Jul 29, 2016
    Keywords: Quantum information
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  • 29
    Publication Date: 2016-07-30
    Description: Author(s): Mostafa Khezri, Eric Mlinar, Justin Dressel, and Alexander N. Korotkov Using circuit QED, we consider the measurement of a superconducting transmon qubit via a coupled microwave resonator. For ideally dispersive coupling, ringing up the resonator produces coherent states with frequencies matched to transmon energy states. Realistic coupling is not ideally dispersive, h… [Phys. Rev. A 94, 012347] Published Fri Jul 29, 2016
    Keywords: Quantum information
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  • 30
    Publication Date: 2016-07-30
    Description: Author(s): Ben Kain and Hong Y. Ling We adapt the generalized Hartree-Fock-Bogoliubov (HFB) method to an interacting many-phonon system free of impurities. The many-phonon system is obtained from applying the Lee-Low-Pine (LLP) transformation to the Fröhlich model which describes a mobile impurity coupled to noninteracting phonons. We … [Phys. Rev. A 94, 013621] Published Fri Jul 29, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 31
    Publication Date: 2016-07-30
    Description: Author(s): Thorsten Groh, Stefan Brakhane, Wolfgang Alt, Dieter Meschede, Janos K. Asbóth, and Andrea Alberti Robustness of topologically protected edge states in quantum walk experiments is studied with ultracold atoms in optical lattices; it is found that environment-induced decoherence may lead to exponential decay of the edge states into bulk states. [Phys. Rev. A 94, 013620] Published Fri Jul 29, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 32
    Publication Date: 2016-08-02
    Description: Author(s): T. Chattaraj and R. V. Krems We study the effects of long-range hopping and long-range interparticle interactions on the quantum walk of hard-core bosons in ideal and disordered one-dimensional lattices. We find that the range of hopping has a much more significant effect on the particle correlation dynamics than the range of i… [Phys. Rev. A 94, 023601] Published Mon Aug 01, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 33
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    American Physical Society (APS)
    Publication Date: 2016-08-03
    Description: Author(s): Matjaž Payrits and Ryan Barnett We consider quantum phases of tightly confined spin-2 bosons in an external field under the presence of rotationally invariant interactions. Generalizing previous treatments, we show how this system can be mapped onto a quantum rotor model. Within the rotor framework, low-energy excitations about fr… [Phys. Rev. A 94, 023605] Published Tue Aug 02, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 34
    Publication Date: 2016-08-03
    Description: Author(s): I. Corro and A. M. Martin We develop a simple numerical method that allows us to calculate the BCS superfluid transition temperature T c precisely for any interaction potential. We apply it to a polarized, ultracold Fermi gas with long-range, anisotropic, dipolar interactions and include the effects of anisotropic exchange in… [Phys. Rev. A 94, 023603] Published Tue Aug 02, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 35
    Publication Date: 2016-08-05
    Description: We develop an automated strategy for discriminating deep microseismic events from shallow ones on the basis of the waveforms recorded on a limited number of surface receivers. Machine-learning techniques are employed to explore the relationship between event hypocentres and seismic features of the recorded signals in time, frequency and time–frequency domains. We applied the technique to 440 microearthquakes –1.7 〈  M w  〈 1.29, induced by an underground cavern collapse in the Napoleonville Salt Dome in Bayou Corne, Louisiana. Forty different seismic attributes of whole seismograms including degree of polarization and spectral attributes were measured. A selected set of features was then used to train the system to discriminate between deep and shallow events based on the knowledge gained from existing patterns. The cross-validation test showed that events with depth shallower than 250 m can be discriminated from events with hypocentral depth between 1000 and 2000 m with 88 per cent and 90.7 per cent accuracy using logistic regression and artificial neural network models, respectively. Similar results were obtained using single station seismograms. The results show that the spectral features have the highest correlation to source depth. Spectral centroids and 2-D cross-correlations in the time–frequency domain are two new seismic features used in this study that showed to be promising measures for seismic event classification. The used machine-learning techniques have application for efficient automatic classification of low energy signals recorded at one or more seismic stations.
    Keywords: Seismology
    Print ISSN: 0956-540X
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    Topics: Geosciences
    Published by Oxford University Press on behalf of The Deutsche Geophysikalische Gesellschaft (DGG) and the Royal Astronomical Society (RAS).
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  • 36
    Publication Date: 2016-08-05
    Description: We conduct a numerical experiment to investigate potential bias in measurements of S -wave splitting (apparent differences between the arrival times of SH and SV phases) for waves propagating close to the core–mantle boundary (CMB) in the D'' layer. The bias is defined as the discrepancy between shear wave splitting measured from finite frequency synthetic seismograms (‘apparent splitting’) and the splitting predicted by ray theory, which is a high-frequency approximation. For simple isotropic models, we find biases which are typically between 0.5 and 4 s, depending on the model, the Q structure and the dominant period of the synthetics. The bias increases for lower frequencies or lower Q values. The epicentral distance at which the bias starts depends on the frequency and the Q structure. We also compute synthetics for models based on mineral physics (using the elastic constants under lower-mantle pressure and temperature conditions, taking into account the phase transition from Mg-perovskite to Mg-post-perovskite) and geodynamics (the thermal boundary layer) and find that the depth of the positive velocity jump associated with the phase transition and the depth range over which the velocity decreases (due to temperature increases) in the thermal boundary layer significantly influence the wavefield in the lowermost mantle. For example, in cold regions beneath subduction zones, wavefields for SH and SV differ greatly due to the steep velocity decrease close to the CMB. For complex models, apparent splitting can also arise from the possibility that low amplitude direct phases might be overlooked, and larger amplitude later phases might instead incorrectly be picked as the direct arrival. Biases of the type investigated in this study combine with other sources of uncertainty for splitting in D'' (e.g. the correction for upper-mantle anisotropy and the difference between SH and SV ray paths) to make a precise evaluation of the anisotropy in D'' difficult.
    Keywords: Seismology
    Print ISSN: 0956-540X
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    Published by Oxford University Press on behalf of The Deutsche Geophysikalische Gesellschaft (DGG) and the Royal Astronomical Society (RAS).
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  • 37
    Publication Date: 2016-08-05
    Description: Author(s): F. Deuretzbacher, D. Becker, and L. Santos One-dimensional spinor gases with strong δ interaction fermionize and form a spin chain. The spatial degrees of freedom of this atom chain can be described by a mapping to spinless noninteracting fermions and the spin degrees of freedom are described by a spin-chain model with nearest-neighbor inter… [Phys. Rev. A 94, 023606] Published Thu Aug 04, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 38
    Publication Date: 2016-07-12
    Description: Author(s): Tian Chen and Xiangdong Zhang We reveal the quantum and classical behaviors of the two-dimensional (2D) alternative quantum walk (AQW) in the presence of decoherence. For different kinds of decoherence, the analytic expressions for the moments of position distribution of the AQW are obtained. Taking the broken line noise and coi… [Phys. Rev. A 94, 012316] Published Mon Jul 11, 2016
    Keywords: Quantum information
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  • 39
    Publication Date: 2016-07-12
    Description: Author(s): Robert P. Cameron, Jörg B. Götte, Stephen M. Barnett, and J. P. Cotter We propose an optical grating for matter waves that separates molecules depending on whether their interaction with the light is conservative or dissipative. Potential applications include fundamental tests of quantum mechanics, measurement of molecular properties, and the ability to selectively pre… [Phys. Rev. A 94, 013604] Published Mon Jul 11, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 40
    Publication Date: 2016-07-12
    Description: Author(s): Kean Loon Lee, Nils B. Jørgensen, I-Kang Liu, Lars Wacker, Jan J. Arlt, and Nick P. Proukakis The miscibility of two interacting quantum systems is an important testing ground for the understanding of complex quantum systems. Two-component Bose-Einstein condensates enable the investigation of this scenario in a particularly well controlled setting. In a homogeneous system, the transition bet… [Phys. Rev. A 94, 013602] Published Mon Jul 11, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 41
    Publication Date: 2016-07-16
    Description: A velocity ( Vs ) and structure model is derived for the Los Angeles Basin, California based on ambient-noise surface wave and receiver-function analysis, using data from a low-cost, short-duration, dense broad-band survey (LASSIE) deployed across the basin. The shear wave velocities show lateral variations at the Compton-Los Alamitos and the Whittier Faults. The basement beneath the Puente Hills–San Gabriel Valley shows an unusually high velocity (~4.0 km s –1 ) and indicates the presence of schist. The structure of the model shows that the basin is a maximum of 8 km deep along the profile and that the Moho rises to a depth of 17 km under the basin. The basin has a stretch factor of 2.6 in the centre grading to 1.3 at the edges and is in approximate isostatic equilibrium.
    Keywords: Seismology
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    Topics: Geosciences
    Published by Oxford University Press on behalf of The Deutsche Geophysikalische Gesellschaft (DGG) and the Royal Astronomical Society (RAS).
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  • 42
    Publication Date: 2016-07-19
    Description: Author(s): Yimin Wang, Jiang Zhang, Chunfeng Wu, J. Q. You, and G. Romero We present an experimentally feasible scheme to implement holonomic quantum computation in the ultrastrong-coupling regime of light-matter interaction. The large anharmonicity and the Z 2 symmetry of the quantum Rabi model allow us to build an effective three-level Λ -structured artificial atom for qu… [Phys. Rev. A 94, 012328] Published Mon Jul 18, 2016
    Keywords: Quantum information
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  • 43
    Publication Date: 2016-07-19
    Description: Author(s): M. K. Olsen and E. G. Cavalcanti The fully symmetric Gaussian tripartite entangled pure states will not exhibit two-mode Einstein-Podolsky-Rosen (EPR) steering. This means that any two participants cannot share quantum secrets using the security of one-sided device independent quantum key distribution (1SDI-QKD) without involving t… [Phys. Rev. A 94, 012331] Published Mon Jul 18, 2016
    Keywords: Quantum information
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  • 44
    Publication Date: 2016-07-19
    Description: Author(s): Kimin Park, Petr Marek, and Radim Filip Nonlinear operations are essential for quantum information processing. We propose a way of implementing a class of nonlinear operations by sequential application of conditional gates based on Jaynes-Cummings (JC) interaction and projective measurements. The scheme has many advantages over the previo… [Phys. Rev. A 94, 012332] Published Mon Jul 18, 2016
    Keywords: Quantum information
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  • 45
    Publication Date: 2016-07-19
    Description: Author(s): Alexander R. H. Smith, Marco Piani, and Robert B. Mann Quantum communication without a shared reference frame or the construction of a relational quantum theory requires the notion of a quantum reference frame. We analyze aspects of quantum reference frames associated with noncompact groups, specifically, the group of spatial translations and Galilean b… [Phys. Rev. A 94, 012333] Published Mon Jul 18, 2016
    Keywords: Quantum information
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  • 46
    Publication Date: 2016-07-20
    Description: Author(s): J. Arcila-Forero, R. Franco, and J. Silva-Valencia Anyons are particles with fractional statistics that exhibit a nontrivial change in the wave function under an exchange of particles. Anyons can be considered to be a general category of particles that interpolate between fermions and bosons. We determined the position of the critical points of the … [Phys. Rev. A 94, 013611] Published Tue Jul 19, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 47
    Publication Date: 2016-07-23
    Description: Author(s): R. Augusiak, J. Kołodyński, A. Streltsov, M. N. Bera, A. Acín, and M. Lewenstein Quantum systems allow one to sense physical parameters beyond the reach of classical statistics—with resolutions greater than 1 / N , where N is the number of constituent particles independently probing a parameter. In the canonical phase-sensing scenario the Heisenberg limit 1 / N 2 may be reached, which… [Phys. Rev. A 94, 012339] Published Fri Jul 22, 2016
    Keywords: Quantum information
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  • 48
    Publication Date: 2016-07-26
    Description: Author(s): Leonardo Ermann, Eduardo Vergini, and Dima L. Shepelyansky We study numerically the evolution of Bose-Einstein condensate in the Sinai-oscillator trap described by the Gross-Pitaevskii equation in two dimensions. In the absence of interactions, this trap mimics the properties of Sinai billiards where the classical dynamics is chaotic and the quantum evoluti… [Phys. Rev. A 94, 013618] Published Mon Jul 25, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 49
    Publication Date: 2016-07-27
    Description: Author(s): Qi Zhao, Xiao Yuan, and Xiongfeng Ma Witnessing entanglement is crucial in quantum information processing. With properly preparing ancillary states, it has been shown previously that genuine entanglement can be witnessed without trusting measurement devices. In this work we generalize the scenario and show that generic multipartite ent… [Phys. Rev. A 94, 012343] Published Tue Jul 26, 2016
    Keywords: Quantum information
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  • 50
    Publication Date: 2016-07-28
    Description: Author(s): Keith R. Motes, Ryan L. Mann, Jonathan P. Olson, Nicholas M. Studer, E. Annelise Bergeron, Alexei Gilchrist, Jonathan P. Dowling, Dominic W. Berry, and Peter P. Rohde Fock states are a fundamental resource for many quantum technologies such as quantum metrology. While much progress has been made in single-photon source technologies, preparing Fock states with a large photon number remains challenging. We present and analyze a bootstrapped approach for nondetermin… [Phys. Rev. A 94, 012344] Published Wed Jul 27, 2016
    Keywords: Quantum information
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  • 51
    Publication Date: 2016-08-01
    Description: We present a catalogue of full seismic moment tensors for 63 events from Uturuncu volcano in Bolivia. The events were recorded during 2011–2012 in the PLUTONS seismic array of 24 broad-band stations. Most events had magnitudes between 0.5 and 2.0 and did not generate discernible surface waves; the largest event was M w 2.8. For each event we computed the misfit between observed and synthetic waveforms, and we used first-motion polarity measurements to reduce the number of possible solutions. Each moment tensor solution was obtained using a grid search over the 6-D space of moment tensors. For each event, we show the misfit function in eigenvalue space, represented by a lune. We identify three subsets of the catalogue: (1) six isotropic events, (2) five tensional crack events, and (3) a swarm of 14 events southeast of the volcanic centre that appear to be double couples. The occurrence of positively isotropic events is consistent with other published results from volcanic and geothermal regions. Several of these previous results, as well as our results, cannot be interpreted within the context of either an oblique opening crack or a crack-plus-double-couple model. Proper characterization of uncertainties for full moment tensors is critical for distinguishing among physical models of source processes.
    Keywords: Seismology
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  • 52
    Publication Date: 2016-08-02
    Description: Author(s): M. Štefaňák and S. Skoupý Perfect state transfer between two marked vertices of a graph by means of a discrete-time quantum walk is analyzed. We consider the quantum walk search algorithm with two marked vertices, sender and receiver. It is shown by explicit calculation that, for the coined quantum walks on a star graph and … [Phys. Rev. A 94, 022301] Published Mon Aug 01, 2016
    Keywords: Quantum information
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  • 53
    Publication Date: 2016-08-02
    Description: Author(s): Xiaoquan Yu, Thomas P. Billam, Jun Nian, Matthew T. Reeves, and Ashton S. Bradley Clustering of like-sign vortices in a planar bounded domain is known to occur at negative temperature, a phenomenon that Onsager demonstrated to be a consequence of bounded phase space. In a confined superfluid, quantized vortices can support such an ordered phase, provided they evolve as an almost … [Phys. Rev. A 94, 023602] Published Mon Aug 01, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 54
    Publication Date: 2016-08-02
    Description: The 2-D acoustic wave equation is commonly solved numerically by finite-difference (FD) methods in which the accuracy of solution is significantly affected by the FD stencils. The commonly used cross stencil can reach either only second-order accuracy for space domain dispersion-relation-based FD method or (2 M )th-order accuracy along eight specific propagation directions for time–space domain dispersion-relation-based FD method, if the conventional (2 M )th-order spatial FD and second-order temporal FD are used to discretize the equation. One other newly developed rhombus stencil can reach arbitrary even-order accuracy. However, this stencil adds significantly to computational cost when the operator length is large. To achieve a balance between the solution accuracy and efficiency, we develop a new FD stencil to solve the 2-D acoustic wave equation. This stencil is a combination of the cross stencil and rhombus stencil. A cross stencil with an operator length parameter M is used to approximate the spatial partial derivatives while a rhombus stencil with an operator length parameter N together with the conventional second-order temporal FD is employed in approximating the temporal partial derivatives. Using this stencil, a new FD scheme is developed; we demonstrate that this scheme can reach (2 M )th-order accuracy in space and (2 N )th-order accuracy in time when spatial FD coefficients and temporal FD coefficients are derived from respective dispersion relation using Taylor-series expansion (TE) method. To further increase the accuracy, we derive the FD coefficients by employing the time–space domain dispersion relation of this FD scheme using TE. We also use least-squares (LS) optimization method to reduce dispersion at high wavenumbers. Dispersion analysis, stability analysis and modelling examples demonstrate that our new scheme has greater accuracy and better stability than conventional FD schemes, and thus can adopt large time steps. To reduce the extra computational cost resulting from adopting the new stencil, we apply the variable spatial operator length schemes. Adopting our new FD scheme, characterized by new stencil, LS-based optimization, variable operator lengths and larger time step, modelling efficiency is significantly improved.
    Keywords: Seismology
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  • 55
    Publication Date: 2016-08-03
    Description: Author(s): John P. Corson and John L. Bohn We investigate the wave-packet dynamics of a pair of particles that undergoes a rapid change of scattering length. The short-range interactions are modeled in the zero-range limit, where the quench is accomplished by switching the boundary condition of the wave function at vanishing particle separat… [Phys. Rev. A 94, 023604] Published Tue Aug 02, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 56
    Publication Date: 2016-08-04
    Description: Author(s): David Chen, Carolyn Meldgin, Philip Russ, Brian DeMarco, and Erich Mueller We use a momentum-space hole-burning technique implemented via stimulated Raman transitions to measure the momentum relaxation time for a gas of bosonic atoms trapped in an optical lattice. By changing the lattice potential depth, we observe a smooth crossover between relaxation times larger and sma… [Phys. Rev. A 94, 021601(R)] Published Wed Aug 03, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 57
    Publication Date: 2016-08-04
    Description: Author(s): Yizhou Huang, Zhang-qi Yin, and W. L. Yang We extend the non-Hermitian one-dimensional quantum walk model [ Phys. Rev. Lett. 102 , 065703 (2009) ] by taking the dephasing effect into account. We prove that the feature of topological transition does not change even when dephasing between the sites within units is present. The potential experimen… [Phys. Rev. A 94, 022302] Published Wed Aug 03, 2016
    Keywords: Quantum information
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  • 58
    Publication Date: 2016-08-04
    Description: Author(s): A. D'Arrigo, G. Falci, and E. Paladino We investigate the possibility of achieving high-fidelity universal two-qubit gates by supplementing optimal tuning of individual qubits with dynamical decoupling (DD) of local 1 / f noise. We consider simultaneous local pulse sequences applied during the gate operation and compare the efficiencies of… [Phys. Rev. A 94, 022303] Published Wed Aug 03, 2016
    Keywords: Quantum information
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  • 59
    Publication Date: 2016-08-05
    Description: Author(s): Thomas G. Wong and Pascal Philipp Continuous-time quantum walks are natural tools for spatial search, where one searches for a marked vertex in a graph. Sometimes the structure of the graph causes the walker to get trapped, such that the probability of finding the marked vertex is limited. We give an example with two linked cliques,… [Phys. Rev. A 94, 022304] Published Thu Aug 04, 2016
    Keywords: Quantum information
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  • 60
    Publication Date: 2016-08-06
    Description: Author(s): Marlon Nuske, L. Mathey, and Eite Tiesinga We determine the exact dynamics of an initial Bardeen-Cooper-Schrieffer (BCS) state of ultracold atoms in a deep hexagonal optical lattice. The dynamical evolution is triggered by a quench of the lattice potential such that the interaction strength U f is much larger than the hopping amplitude J f . Th… [Phys. Rev. A 94, 023607] Published Fri Aug 05, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 61
    Publication Date: 2016-08-06
    Description: Author(s): Edgar A. Aguilar, Ravishankar Ramanathan, Johannes Kofler, and Marcin Pawłowski Quantum key distribution (QKD) is a provably secure way for two distant parties to establish a common secret key, which then can be used in a classical cryptographic scheme. Using quantum entanglement, one can reduce the necessary assumptions that the parties have to make about their devices, giving… [Phys. Rev. A 94, 022305] Published Fri Aug 05, 2016
    Keywords: Quantum information
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  • 62
    Publication Date: 2016-07-07
    Description: Author(s): Ana Belén Sainz, Leandro Aolita, Nicolas Brunner, Rodrigo Gallego, and Paul Skrzypczyk Quantum steering is observed when performing appropriate local measurements on an entangled state. Here we discuss the possibility of simulating classically this effect, using classical communication instead of entanglement. We show that infinite communication is necessary for exactly simulating ste… [Phys. Rev. A 94, 012308] Published Wed Jul 06, 2016
    Keywords: Quantum information
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  • 63
    Publication Date: 2016-07-07
    Description: Author(s): Imran M. Mirza and John C. Schotland We study entanglement generation and control in bidirectional-waveguide QED driven by a two-photon Gaussian wave packet. In particular, we focus on how increasing the number of qubits affects the overall average pairwise entanglement in the system. We also investigate how the presence of a second ph… [Phys. Rev. A 94, 012309] Published Wed Jul 06, 2016
    Keywords: Quantum information
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  • 64
    Publication Date: 2016-07-07
    Description: Author(s): Morteza Rafiee, Alireza Nourmandipour, and Stefano Mancini We study the correction of errors intervening in two qubits dissipating into their own environments. This is done by resorting to local feedback actions with the aim of preserving as much as possible the initial amount of entanglement. Optimal control is found first by gaining insights from the subs… [Phys. Rev. A 94, 012310] Published Wed Jul 06, 2016
    Keywords: Quantum information
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  • 65
    Publication Date: 2016-07-08
    Description: Near-surface geophysical imaging is often performed by generating surface waves, and estimating the subsurface properties through inversion, that is, iteratively matching experimentally observed dispersion curves with predicted curves from a layered half-space model of the subsurface. Key to the effectiveness of inversion is the efficiency and accuracy of computing the dispersion curves and their derivatives. This paper presents improved methodologies for both dispersion curve and derivative computation. First, it is shown that the dispersion curves can be computed more efficiently by combining an unconventional complex-length finite element method (CFEM) to model the finite depth layers, with perfectly matched discrete layers (PMDL) to model the unbounded half-space. Second, based on analytical derivatives for theoretical dispersion curves, an approximate derivative is derived for the so-called effective dispersion curve for realistic geophysical surface response data. The new derivative computation has a smoothing effect on the computation of derivatives, in comparison with traditional finite difference (FD) approach, and results in faster convergence. In addition, while the computational cost of FD differentiation is proportional to the number of model parameters, the new differentiation formula has a computational cost that is almost independent of the number of model parameters. At the end, as confirmed by synthetic and real-life imaging examples, the combination of CFEM + PMDL for dispersion calculation and the new differentiation formula results in more accurate estimates of the subsurface characteristics than the traditional methods, at a small fraction of computational effort.
    Keywords: Seismology
    Print ISSN: 0956-540X
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    Topics: Geosciences
    Published by Oxford University Press on behalf of The Deutsche Geophysikalische Gesellschaft (DGG) and the Royal Astronomical Society (RAS).
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  • 66
    Publication Date: 2016-07-08
    Description: Powerful subduction zone earthquakes rupture thousands of square kilometres along continental margins but at certain locations earthquake rupture terminates. To date, detailed knowledge of the parameters that govern seismic rupture and aftershocks is still incomplete. On 2015 September 16, the M w 8.3 Illapel earthquake ruptured a 200 km long stretch of the Central Chilean subduction zone, triggering a tsunami and causing significant damage. Here, we analyse the temporal and spatial pattern of the coseismic rupture and aftershocks in relation to the tectonic setting in the earthquake area. Aftershocks cluster around the area of maximum coseismic slip, in particular in lateral and downdip direction. During the first 24 hr after the main shock, aftershocks migrated in both lateral directions with velocities of approximately 2.5 and 5 km hr –1 . At the southern rupture boundary, aftershocks cluster around individual subducted seamounts that are related to the downthrusting Juan Fernández Ridge. In the northern part of the rupture area, aftershocks separate into an upper cluster (above 25 km depth) and a lower cluster (below 35 km depth). This dual seismic–aseismic transition in downdip direction is also observed in the interseismic period suggesting that it may represent a persistent feature for the Central Chilean subduction zone.
    Keywords: Seismology
    Print ISSN: 0956-540X
    Electronic ISSN: 1365-246X
    Topics: Geosciences
    Published by Oxford University Press on behalf of The Deutsche Geophysikalische Gesellschaft (DGG) and the Royal Astronomical Society (RAS).
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  • 67
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    American Association for the Advancement of Science (AAAS)
    In: Science
    Publication Date: 2016-07-08
    Description: Traditionally, when scientists discuss earthquakes, we talk about geology and seismology, infrastructure and engineering, as well as management strategies for minimizing human and material losses. Nevertheless, the study of an earthquake's effect on the social and cultural elements of a community can help us understand how different societies have evolved and adapted over time and how cities have built up their relative capacity to withstand future large seismic events. In fact, as Andrew Robinson describes in his new book, Earth-Shattering Events, the effects of an earthquake can reverberate throughout a society's identity. In some cases, they have played a catalyzing role in the evolution of urban and architectural style and have irrevocably altered the communities in question. Author: Sebastiano D'Amico
    Keywords: Seismology
    Print ISSN: 0036-8075
    Electronic ISSN: 1095-9203
    Topics: Biology , Chemistry and Pharmacology , Geosciences , Computer Science , Medicine , Natural Sciences in General , Physics
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  • 68
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    American Association for the Advancement of Science (AAAS)
    In: Science
    Publication Date: 2016-07-08
    Description: Author: Phil Szuromi
    Keywords: Organic Chemistry
    Print ISSN: 0036-8075
    Electronic ISSN: 1095-9203
    Topics: Biology , Chemistry and Pharmacology , Geosciences , Computer Science , Medicine , Natural Sciences in General , Physics
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  • 69
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    American Association for the Advancement of Science (AAAS)
    In: Science
    Publication Date: 2016-07-08
    Description: Author: Jake Yeston
    Keywords: Organic Chemistry
    Print ISSN: 0036-8075
    Electronic ISSN: 1095-9203
    Topics: Biology , Chemistry and Pharmacology , Geosciences , Computer Science , Medicine , Natural Sciences in General , Physics
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  • 70
    Publication Date: 2016-06-21
    Description: Author(s): Matteo Ippoliti, Matteo Rizzi, Vittorio Giovannetti, and Leonardo Mazza In this work we address the problem of realizing a reliable quantum memory based on zero-energy Majorana modes in the presence of experimental constraints on the operations aimed at recovering the information. In particular, we characterize the best recovery operation acting only on the zero-energy … [Phys. Rev. A 93, 062325] Published Mon Jun 20, 2016
    Keywords: Quantum information
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  • 71
    Publication Date: 2016-06-21
    Description: Author(s): Jing-Min Hou and Wei Chen We propose a scheme to realize a Z 2 topological insulator in a square optical lattice. Different from the conventional topological insulator protected by the time-reversal symmetry, here the optical lattice possesses a hidden symmetry, which is responsible for the present Z 2 topological order. With … [Phys. Rev. A 93, 063626] Published Mon Jun 20, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 72
    Publication Date: 2016-06-21
    Description: Author(s): G. Bellomo, A. Plastino, and A. R. Plastino Quantum correlations in a physical system are usually studied with respect to a unique and fixed decomposition of the system into subsystems, without fully exploiting the rich structure of the state space. Here, we show several examples in which the consideration of different ways to decompose a phy… [Phys. Rev. A 93, 062322] Published Mon Jun 20, 2016
    Keywords: Quantum information
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  • 73
    Publication Date: 2016-06-21
    Description: Author(s): Chong Song, Shi-Lei Su, Jin-Lei Wu, Dong-Yang Wang, Xin Ji, and Shou Zhang We propose a scheme for generating a type of novel tree-type three-dimensional entangled state. In the scheme, an atom and two Bose–Einstein condensates (BECs) are individually trapped in three spatially separated optical cavities which are connected by two optical fibers. Because the system evolves… [Phys. Rev. A 93, 062321] Published Mon Jun 20, 2016
    Keywords: Quantum information
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  • 74
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    American Physical Society (APS)
    Publication Date: 2016-06-21
    Description: Author(s): Omar Gamel We represent a two-qubit density matrix in the basis of Pauli matrix tensor products, with the coefficients constituting a Bloch matrix, analogous to the single qubit Bloch vector. We find the quantum state positivity requirements on the Bloch matrix components, leading to three important inequaliti… [Phys. Rev. A 93, 062320] Published Mon Jun 20, 2016
    Keywords: Quantum information
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  • 75
    Publication Date: 2016-06-21
    Description: Author(s): D. B. Horoshko, S. De Bièvre, M. I. Kolobov, and G. Patera We present a general approach to calculating the entanglement of formation for superpositions of two-mode coherent states, placed equidistantly on a circle in phase space. We show that in the particular case of rotationally invariant circular states the Schmidt decomposition of two modes, and theref… [Phys. Rev. A 93, 062323] Published Mon Jun 20, 2016
    Keywords: Quantum information
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  • 76
    Publication Date: 2016-06-21
    Description: Author(s): F. Dorfner and F. Heidrich-Meisner We study properties of the single-site reduced density matrix in the Bose-Bose resonance model as a function of system parameters. This model describes a single-component Bose gas with a resonant coupling to a diatomic molecular state, here defined on a lattice. A main goal is to demonstrate that th… [Phys. Rev. A 93, 063624] Published Mon Jun 20, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 77
    Publication Date: 2016-06-21
    Description: Author(s): Daichi Morita, Toshihiro Kubo, Yasuhiro Tokura, and Makoto Yamashita We study the quantum walks of two interacting spin-1 bosons. We derive an exact solution for the time-dependent wave function, which describes the two-particle dynamics governed by the one-dimensional spin-1 Bose-Hubbard model. We show that propagation dynamics in real space and mixing dynamics in s… [Phys. Rev. A 93, 063625] Published Mon Jun 20, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 78
    Publication Date: 2016-06-22
    Description: Author(s): J.-R. Souquet and A. A. Clerk We present and analyze a reservoir-engineering approach to stabilizing Fock states in a superconducting microwave cavity which does not require any microwave-frequency control drives. Instead, our system makes use of a Josephson junction biased by a dc voltage which is coupled to both a principal st… [Phys. Rev. A 93, 060301(R)] Published Tue Jun 21, 2016
    Keywords: Quantum information
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  • 79
    Publication Date: 2016-06-22
    Description: Author(s): Emily Adlam and Adrian Kent The properties of quantum information in space-time can be investigated by studying operational tasks, such as “summoning,” in which an unknown quantum state is supplied at one point and a call is made at another for it to be returned at a third. Hayden and May [ arXiv:1210.0913 ] recently proved nece… [Phys. Rev. A 93, 062327] Published Tue Jun 21, 2016
    Keywords: Quantum information
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  • 80
    Publication Date: 2016-06-21
    Description: Author(s): Veronika Baumann and Časlav Brukner The recently developed framework for quantum theory with no global causal order allows for quantum processes in which operations in local laboratories are neither causally ordered nor in a probabilistic mixture of definite causal orders. The causal relation between the laboratories is described by t… [Phys. Rev. A 93, 062324] Published Mon Jun 20, 2016
    Keywords: Quantum information
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  • 81
    Publication Date: 2016-06-22
    Description: Least-squares inversion of seismic arrivals can provide remarkably detailed models of the Earth's subsurface. However, cycle skipping associated with these oscillatory arrivals is the main cause for local minima in the least-squares objective function. Therefore, it is often difficult for descent methods to converge to the solution without an accurate initial large-scale velocity estimate. The low frequencies in the arrivals, needed to update the large-scale components in the velocity model, are usually unreliable or absent. To overcome this difficulty, we propose a multi-objective inversion scheme that uses the conventional least-squares functional along with an auxiliary data-domain objective. As the auxiliary objective effectively replaces the seismic arrivals by bumps, we call it the bump functional. The bump functional minimization can be made far less sensitive to cycle skipping and can deal with multiple arrivals in the data. However, it can only be used as an auxiliary objective since it usually does not provide a unique model after minimization even when the regularized-least-squares functional has a unique global minimum and hence a unique solution. The role of the bump functional during the multi-objective inversion is to guide the optimization towards the global minimum by pulling the trapped solution out of the local minima associated with the least-squares functional whenever necessary. The computational complexity of the bump functional is equivalent to that of the least-squares functional. In this paper, we describe various characteristics of the bump functional using simple and illustrative numerical examples. We also demonstrate the effectiveness of the proposed multi-objective inversion scheme by considering more realistic examples. These include synthetic and field data from a cross-well experiment, surface-seismic synthetic data with reflections and synthetic data with refracted arrivals at long offsets.
    Keywords: Seismology
    Print ISSN: 0956-540X
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    Topics: Geosciences
    Published by Oxford University Press on behalf of The Deutsche Geophysikalische Gesellschaft (DGG) and the Royal Astronomical Society (RAS).
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  • 82
    Publication Date: 2016-06-22
    Description: Author(s): Giacomo De Palma, Andrea Mari, Seth Lloyd, and Vittorio Giovannetti The passive states of a quantum system minimize the average energy among all the states with a given spectrum. We prove that passive states are the optimal inputs of single-jump lossy quantum channels. These channels arise from a weak interaction of the quantum system of interest with a large Markov… [Phys. Rev. A 93, 062328] Published Tue Jun 21, 2016
    Keywords: Quantum information
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  • 83
    Publication Date: 2016-06-22
    Description: Author(s): Rafael N. Alexander and Nicolas C. Menicucci We show that measurement-based quantum computation on scalable continuous-variable (CV) cluster states admits more quantum-circuit flexibility and compactness than similar protocols for standard square-lattice CV cluster states. This advantage is a direct result of the macronode structure of these s… [Phys. Rev. A 93, 062326] Published Tue Jun 21, 2016
    Keywords: Quantum information
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  • 84
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    American Physical Society (APS)
    Publication Date: 2016-06-22
    Description: Author(s): Yajiang Hao Using an anyon-fermion mapping method, we investigate the ground-state properties of hard-core anyons confined in a one-dimensional harmonic trap. The concise analytical formula of the reduced one-body density matrix is obtained. Based on this formula, we evaluated the momentum distribution, the nat… [Phys. Rev. A 93, 063627] Published Tue Jun 21, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 85
    Publication Date: 2016-06-24
    Description: Author(s): Chao Zhang, Yun-Feng Huang, Bi-Heng Liu, Chuan-Feng Li, and Guang-Can Guo Cluster state plays a crucial role in one-way quantum computation. Here, we propose and experimentally demonstrate a scheme to prepare an ultrahigh-fidelity four-photon linear cluster state via a spontaneous parametric down-conversion process. The state fidelity is measured to be 0.9517 ± 0.0027 . Our … [Phys. Rev. A 93, 062329] Published Wed Jun 22, 2016
    Keywords: Quantum information
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  • 86
    Publication Date: 2016-06-24
    Description: Author(s): G. D'Amico, F. Borselli, L. Cacciapuoti, M. Prevedelli, G. Rosi, F. Sorrentino, and G. M. Tino We report on the characterization of a dual cloud atom interferometer for gravity gradient measurements using third-order Bragg diffraction as atom optical elements. We study the dependence of the contrast and the gradiometer phase angle against the relevant experimental parameters and characterize … [Phys. Rev. A 93, 063628] Published Wed Jun 22, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 87
    Publication Date: 2016-06-25
    Description: Author(s): Sven M. Hein, Camille Aron, and Hakan E. Türeci Pure dephasing processes limit the fidelities achievable in driven-dissipative schemes for stabilization of entangled states of qubits. We propose a scheme which, combined with already existing entangling methods, purifies the desired entangled state by driving out of equilibrium auxiliary dissipati… [Phys. Rev. A 93, 062331] Published Thu Jun 23, 2016
    Keywords: Quantum information
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  • 88
    Publication Date: 2016-06-25
    Description: Author(s): Daniel J. Brod Matchgates are a restricted set of two-qubit gates known to be classically simulable under particular conditions. Specifically, if a circuit consists only of nearest-neighbor matchgates, an efficient classical simulation is possible if either (i) the input is a computational-basis state and the simu… [Phys. Rev. A 93, 062332] Published Thu Jun 23, 2016
    Keywords: Quantum information
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  • 89
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    American Physical Society (APS)
    Publication Date: 2016-06-25
    Description: Author(s): Tomoyuki Morimae We show that the class quantum-Arthur-Merlin (QAM) does not change even if the verifier's ability is restricted to only single-qubit measurements. To show the result, we use the idea of measurement-based quantum computing: the verifier, who can do only single-qubit measurements, can test the graph s… [Phys. Rev. A 93, 062333] Published Thu Jun 23, 2016
    Keywords: Quantum information
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  • 90
    Publication Date: 2016-05-04
    Description: Author(s): Hui Hu, An-Bang Wang, Su Yi, and Xia-Ji Liu We theoretically investigate the behavior of a moving impurity immersed in a sea of fermionic atoms that are confined in a quasiperiodic (bichromatic) optical lattice within a standard variational approach. We consider both repulsive and attractive contact interactions for such a simple many-body lo… [Phys. Rev. A 93, 053601] Published Mon May 02, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 91
    Publication Date: 2016-05-04
    Description: Author(s): Lijun Mao, Yanxia Liu, and Yunbo Zhang We give an analytical description of the dynamics of the three-qubit Dicke model using the adiabatic approximation in the parameter regime where the qubit transition frequencies are far off-resonance with the field frequency and the interaction strengths reach the ultrastrong-coupling regimes. Quali… [Phys. Rev. A 93, 052305] Published Tue May 03, 2016
    Keywords: Quantum information
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  • 92
    Publication Date: 2016-05-05
    Description: Owing to the increasing availability of computational resources, in recent years the probabilistic solution of non-linear, geophysical inverse problems by means of sampling methods has become increasingly feasible. Nevertheless, we still face situations in which a Monte Carlo approach is not practical. This is particularly true in cases where the evaluation of the forward problem is computationally intensive or where inversions have to be carried out repeatedly or in a timely manner, as in natural hazards monitoring tasks such as earthquake early warning. Here, we present an alternative to Monte Carlo sampling, in which inferences are entirely based on a set of prior samples—that is, samples that have been obtained independent of a particular observed datum. This has the advantage that the computationally expensive sampling stage becomes separated from the inversion stage, and the set of prior samples—once obtained—can be reused for repeated evaluations of the inverse mapping without additional computational effort. This property is useful if the problem is such that repeated inversions of independent data have to be carried out. We formulate the inverse problem in a Bayesian framework and present a practical way to make posterior inferences based on a set of prior samples. We compare the prior sampling based approach to a Markov Chain Monte Carlo approach that samples from the posterior probability distribution. We show results for both a toy example, and a realistic seismological source parameter estimation problem. We find that the posterior uncertainty estimates obtained based on prior sampling can be considered conservative estimates of the uncertainties obtained by directly sampling from the posterior distribution.
    Keywords: Seismology
    Print ISSN: 0956-540X
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    Topics: Geosciences
    Published by Oxford University Press on behalf of The Deutsche Geophysikalische Gesellschaft (DGG) and the Royal Astronomical Society (RAS).
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  • 93
    Publication Date: 2016-05-05
    Description: The Afar Depression and its adjacent areas are underlain by an upper mantle marked by some of the world's largest negative velocity anomalies, which are frequently attributed to the thermal influences of a lower-mantle plume. In spite of numerous studies, however, the existence of a plume beneath the area remains enigmatic, partially due to inadequate quantities of broad-band seismic data and the limited vertical resolution at the mantle transition zone (MTZ) depth of the techniques employed by previous investigations. In this study, we use an unprecedented quantity (over 14 500) of P -to- S receiver functions (RFs) recorded by 139 stations from 12 networks to image the 410 and 660 km discontinuities and map the spatial variation of the thickness of the MTZ. Non-linear stacking of the RFs under a 1-D velocity model shows robust P -to- S conversions from both discontinuities, and their apparent depths indicate the presence of an upper-mantle low-velocity zone beneath the entire study area. The Afar Depression and the northern Main Ethiopian Rift are characterized by an apparent 40–60 km depression of both MTZ discontinuities and a normal MTZ thickness. The simplest and most probable interpretation of these observations is that the apparent depressions are solely caused by velocity perturbations in the upper mantle and not by deeper processes causing temperature or hydration anomalies within the MTZ. Thickening of the MTZ on the order of 15 km beneath the southern Arabian Plate, southern Red Sea and western Gulf of Aden, which comprise the southward extension of the Afro-Arabian Dome, could reflect long-term hydration of the MTZ. A 20 km thinning of the MTZ beneath the western Ethiopian Plateau is observed and interpreted as evidence for a possible mantle plume stem originating from the lower mantle.
    Keywords: Seismology
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    Topics: Geosciences
    Published by Oxford University Press on behalf of The Deutsche Geophysikalische Gesellschaft (DGG) and the Royal Astronomical Society (RAS).
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  • 94
    Publication Date: 2016-05-05
    Description: We propose a procedure for uncertainty quantification in Probabilistic Tsunami Hazard Analysis (PTHA), with a special emphasis on the uncertainty related to statistical modelling of the earthquake source in Seismic PTHA (SPTHA), and on the separate treatment of subduction and crustal earthquakes (treated as background seismicity). An event tree approach and ensemble modelling are used in spite of more classical approaches, such as the hazard integral and the logic tree. This procedure consists of four steps: (1) exploration of aleatory uncertainty through an event tree, with alternative implementations for exploring epistemic uncertainty; (2) numerical computation of tsunami generation and propagation up to a given offshore isobath; (3) (optional) site-specific quantification of inundation; (4) simultaneous quantification of aleatory and epistemic uncertainty through ensemble modelling. The proposed procedure is general and independent of the kind of tsunami source considered; however, we implement step 1, the event tree, specifically for SPTHA, focusing on seismic source uncertainty. To exemplify the procedure, we develop a case study considering seismic sources in the Ionian Sea (central-eastern Mediterranean Sea), using the coasts of Southern Italy as a target zone. The results show that an efficient and complete quantification of all the uncertainties is feasible even when treating a large number of potential sources and a large set of alternative model formulations. We also find that (i) treating separately subduction and background (crustal) earthquakes allows for optimal use of available information and for avoiding significant biases; (ii) both subduction interface and crustal faults contribute to the SPTHA, with different proportions that depend on source-target position and tsunami intensity; (iii) the proposed framework allows sensitivity and deaggregation analyses, demonstrating the applicability of the method for operational assessments.
    Keywords: Seismology
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    Topics: Geosciences
    Published by Oxford University Press on behalf of The Deutsche Geophysikalische Gesellschaft (DGG) and the Royal Astronomical Society (RAS).
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  • 95
    Publication Date: 2016-05-05
    Description: The expanding fleet of broad-band ocean-bottom seismograph (OBS) stations is facilitating the study of the structure and seismicity of oceanic plates at regional scales. For continental studies, an important tool to characterize continental crust and mantle structure is the analysis of teleseismic P receiver functions. In the oceans, however, receiver functions potentially suffer from several limiting factors that are unique to ocean sites and plate structures. In this study, we model receiver functions for a variety of oceanic lithospheric structures to investigate the possibilities and limitations of receiver functions using OBS data. Several potentially contaminating effects are examined, including pressure reverberations from the water column for various ocean-floor depths and the effects of a layer of low-velocity marine sediments. These modelling results indicate that receiver functions from OBS data are difficult to interpret in the presence of marine sediments, but shallow-water sites in subduction zone forearcs may be suitable for constraining various crustal elements around the locked megathrust fault. We propose using a complementary approach based on transfer function modelling combined with a grid search approach that bypasses receiver functions altogether and estimates model properties directly from minimally processed waveforms. Using real data examples from the Cascadia Initiative, we show how receiver and transfer functions can be used to infer seismic properties of the oceanic plate in both shallow (Cascadia forearc) and deep (Juan de Fuca Ridge) ocean settings.
    Keywords: Seismology
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    Topics: Geosciences
    Published by Oxford University Press on behalf of The Deutsche Geophysikalische Gesellschaft (DGG) and the Royal Astronomical Society (RAS).
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  • 96
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    American Physical Society (APS)
    Publication Date: 2016-05-06
    Description: Author(s): T. Oshima and Y. Kawaguchi We theoretically show that the spin Hall effect arises in a Bose-Einstein condensate (BEC) of neutral atoms interacting via the magnetic dipole-dipole interactions (MDDIs). Since the MDDI couples the total spin angular momentum and the relative orbital angular momentum of two colliding atoms, it wor… [Phys. Rev. A 93, 053605] Published Thu May 05, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 97
    Publication Date: 2016-05-05
    Description: Author(s): Frederick Ira Moxley, III, Jonathan P. Dowling, Weizhong Dai, and Tim Byrnes We investigate prospects of using counter-rotating vortex superposition states in nonequilibrium exciton-polariton Bose-Einstein condensates for the purposes of Sagnac interferometry. We first investigate the stability of vortex-antivortex superposition states, and show that they survive at steady s… [Phys. Rev. A 93, 053603] Published Wed May 04, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 98
    Publication Date: 2016-05-05
    Description: Author(s): Olga Goulko and Matthew Wingate We present results from Monte Carlo calculations investigating the properties of the homogeneous, spin-balanced unitary Fermi gas in three dimensions. The temperature is varied across the superfluid transition allowing us to determine the temperature dependence of the chemical potential, the energy … [Phys. Rev. A 93, 053604] Published Wed May 04, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 99
    Publication Date: 2016-05-07
    Description: Author(s): Michael E. Beverland, Gorjan Alagic, Michael J. Martin, Andrew P. Koller, Ana M. Rey, and Alexey V. Gorshkov We show that n thermal fermionic alkaline-earth-metal atoms in a flat-bottom trap allow one to robustly implement a spin model displaying two symmetries: the S n symmetry that permutes atoms occupying different vibrational levels of the trap and the SU ( N ) symmetry associated with N nuclear spin state… [Phys. Rev. A 93, 051601(R)] Published Fri May 06, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
    Print ISSN: 1050-2947
    Electronic ISSN: 1094-1622
    Topics: Physics
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  • 100
    Publication Date: 2016-05-10
    Description: Author(s): Tamoghna Das, R. Prabhu, Aditi Sen(De), and Ujjwal Sen We investigate the entanglement patterns of photon-added and photon-subtracted four-mode squeezed vacuum states. Entanglements in different scenarios are analyzed by varying the number of photons added or subtracted in certain modes, which are referred to as the “player” modes, the others being “spe… [Phys. Rev. A 93, 052313] Published Mon May 09, 2016
    Keywords: Quantum information
    Print ISSN: 1050-2947
    Electronic ISSN: 1094-1622
    Topics: Physics
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