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  • Organic Chemistry  (813)
  • Matter waves and collective properties of cold atoms and molecules  (491)
  • Seismology
  • 2015-2019  (784)
  • 1950-1954  (452)
  • 1925-1929  (360)
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  • 2015-2019  (784)
  • 1950-1954  (452)
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  • 101
    Publication Date: 2016-04-05
    Description: Author(s): Manuel H. Muñoz-Arias, Javier Madroñero, and Carlos A. Parra-Murillo A unit filling Bose-Hubbard Hamiltonian embedded in a strong Stark field is studied in the off-resonant regime inhibiting single- and many-particle first-order tunneling resonances. We investigate the occurrence of coherent dipole wavelike propagation along an optical lattice by means of an effectiv… [Phys. Rev. A 93, 043603] Published Mon Apr 04, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 102
    Publication Date: 2016-04-07
    Description: Application of the ambient noise surface wave tomography method (ANT) for determination of the upper-mantle structure requires data on long-periodic noise ( T 〉 40 s). The ANT technique implies that noise sources are distributed almost uniformly over the surface. This is practically true for short-periodic noise, however, it is not so in the case of long periods. In this paper we show that the main contribution to noise at long periods is caused by signals from earthquakes. In some cases, they may strongly distort noise cross-correlation. This leads to an incorrect determination of surface wave velocity dispersion curves. To minimize such a distortion we propose two means: (1) to use records of noise for the periods when there is no clustering of earthquakes, such as aftershocks of strong events; (2) to stack cross-correlation functions for a period of at least three years in order to achieve sufficient uniformity of earthquake locations. Validity of this approach is demonstrated by ANT results for Europe. Tomographic reconstruction of Rayleigh wave group velocities for 10–100 s measured along interstation paths was carried out in a central part of Western Europe where resolving power of the data was the highest. Locally averaged dispersion curves were inverted to vertical S -wave velocity sections in this area. The results correspond closely to known features of the structure of the region, namely: strong difference of the crust and upper-mantle structure at the opposite sides from the Tornquist–Teisseyre Line down to ~ 250 km, penetration of high-velocity material of East European Platform lithosphere under Carpathians, as well as penetration of low-velocity asthenospheric layer from the Carpathian region towards the northeast.
    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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  • 103
    Publication Date: 2016-04-07
    Description: Sensitivity analysis with synthetic models is widely used in seismic tomography as a means for assessing the spatial resolution of solutions produced by, in most cases, linear or iterative nonlinear inversion schemes. The most common type of synthetic reconstruction test is the so-called checkerboard resolution test in which the synthetic model comprises an alternating pattern of higher and lower wave speed (or some other seismic property such as attenuation) in 2-D or 3-D. Although originally introduced for application to large inverse problems for which formal resolution and covariance could not be computed, these tests have achieved popularity, even when resolution and covariance can be computed, by virtue of being simple to implement and providing rapid and intuitive insight into the reliability of the recovered model. However, checkerboard tests have a number of potential drawbacks, including (1) only providing indirect evidence of quantitative measures of reliability such as resolution and uncertainty, (2) giving a potentially misleading impression of the range of scale-lengths that can be resolved, and (3) not giving a true picture of the structural distortion or smearing that can be caused by the data coverage. The widespread use of synthetic reconstruction tests in seismic tomography is likely to continue for some time yet, so it is important to implement best practice where possible. The goal of this paper is to develop the underlying theory and carry out a series of numerical experiments in order to establish best practice and identify some common pitfalls. Based on our findings, we recommend (1) the use of a discrete spike test involving a sparse distribution of spikes, rather than the use of the conventional tightly spaced checkerboard; (2) using data coverage (e.g. ray-path geometry) inherited from the model constrained by the observations (i.e. the same forward operator or matrix), rather than the data coverage obtained by solving the forward problem through the synthetic model; (3) carrying out multiple tests using structures of different scale length; (4) taking special care with regard to what can be inferred when using synthetic structures that closely mimic what has been recovered in the observation-based model; (5) investigating the range of structural wavelengths that can be recovered using realistic levels of imposed data noise; and (6) where feasible, assessing the influence of model parametrization error, which arises from making a choice as to how structure is to be represented.
    Keywords: Seismology
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  • 104
    Publication Date: 2016-04-07
    Description: We develop an approach for simulating acousto-elastic wave phenomena, including scattering from fluid–solid boundaries, where the solid is allowed to be anisotropic, with the discontinuous Galerkin method. We use a coupled first-order elastic strain-velocity, acoustic velocity–pressure formulation, and append penalty terms based on interior boundary continuity conditions to the numerical (central) flux so that the consistency condition holds for the discretized discontinuous Galerkin weak formulation. We incorporate the fluid–solid boundaries through these penalty terms and obtain a stable algorithm. Our approach avoids the diagonalization into polarized wave constituents such as in the approach based on solving elementwise Riemann problems.
    Keywords: Seismology
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  • 105
    Publication Date: 2016-04-07
    Description: It is well known that large earthquakes generally trigger aftershock sequences. However, the duration of those sequences is unclear due to the gradual power-law decay with time. The triggering time is assumed to be infinite in the epidemic type aftershock sequence (ETAS) model, a widely used statistical model to describe clustering phenomena in observed earthquake catalogues. This assumption leads to the constraint that the power-law exponent p of the Omori-Utsu decay has to be larger than one to avoid supercritical conditions with accelerating seismic activity on long timescales. In contrast, seismicity models based on rate- and state-dependent friction observed in laboratory experiments predict p ≤ 1 and a finite triggering time scaling inversely to the tectonic stressing rate. To investigate this conflict, we analyse an ETAS model with finite triggering times, which allow smaller values of p . We use synthetic earthquake sequences to show that the assumption of infinite triggering times can lead to a significant bias in the maximum likelihood estimates of the ETAS parameters. Furthermore, it is shown that the triggering time can be reasonably estimated using real earthquake catalogue data, although the uncertainties are large. The analysis of real earthquake catalogues indicates mainly finite triggering times in the order of 100 days to 10 years with a weak negative correlation to the background rate, in agreement with expectations of the rate- and state-friction model. The triggering time is not the same as the apparent duration, which is the time period in which aftershocks dominate the seismicity. The apparent duration is shown to be strongly dependent on the mainshock magnitude and the level of background activity. It can be much shorter than the triggering time. Finally, we perform forward simulations to estimate the effective forecasting period, which is the time period following a mainshock, in which ETAS simulations can improve rate estimates after the occurrence of a mainshock. We find that this effective forecasting period is only in the order of 100 days for moderate mainshocks and in the order of a few years for large events, even if the underlying triggering process lasts much longer.
    Keywords: Seismology
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  • 106
    Publication Date: 2016-04-12
    Description: Author(s): Min-kang Zhou, Qin Luo, Le-le Chen, Xiao-chun Duan, and Zhong-kun Hu The effect of wavefront aberrations is one of the most important systematic errors in atom interferometers and limits the accuracy of precision atom gravimeters. A detailed theoretical analysis of this effect is presented, and a theoretical method for observing this effect is proposed and demonstrat… [Phys. Rev. A 93, 043610] Published Mon Apr 11, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 107
    Publication Date: 2016-04-12
    Description: Author(s): T. J. Elliott and T. H. Johnson A method of probing densities of ultracold bosons confined in a one-dimensional lattice is proposed by employing measurements on the dephasing of qubits formed from impurity atoms, which may be further applied to detecting phase transitions in the Bose-Hubbard model. [Phys. Rev. A 93, 043612] Published Mon Apr 11, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 108
    Publication Date: 2016-04-12
    Description: Author(s): A. Dauphin, M. Müller, and M. A. Martin-Delgado We propose a realistic scheme to quantum simulate the so-far experimentally unobserved topological Mott insulator phase—an interaction-driven topological insulator—using cold atoms in an optical Lieb lattice. To this end, we study a system of spinless fermions in a Lieb lattice, exhibiting repulsive… [Phys. Rev. A 93, 043611] Published Mon Apr 11, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 109
    Publication Date: 2016-01-01
    Description: Author(s): Sayan Choudhury and Erich J. Mueller We explore the effect of transverse confinement on the stability of a Bose-Einstein condensate loaded in a shaken one-dimensional or two-dimensional square lattice. We calculate the decay rate from two-particle collisions. We predict that if the transverse confinement exceeds a critical value, then,… [Phys. Rev. A 92, 063639] Published Thu Dec 31, 2015
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 110
    Publication Date: 2016-01-01
    Description: We present a new upper-mantle tomographic model derived solely from hum seismic data. Phase correlograms between station pairs are computed to extract phase-coherent signals. Correlograms are then stacked using the time–frequency phase-weighted stack method to build-up empirical Green's functions. Group velocities and uncertainties are measured in the wide period band of 30–250 s, following a resampling approach. Less data are required to extract reliable group velocities at short periods than at long periods, and 2 yr of data are necessary to measure reliable group velocities for the entire period band. Group velocities are first regionalized and then inverted versus depth using a simulated annealing method in which the number and shape of splines that describes the S -wave velocity model are variable. The new S -wave velocity tomographic model is well correlated with models derived from earthquakes in most areas, although in India, the Dharwar craton is shallower than in other published models.
    Keywords: Seismology
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  • 111
    Publication Date: 2016-01-01
    Description: Accurate prediction of ground motion intensity and its variability is an important element in seismic hazard assessment. Simulation-based ground motion prediction has become popular in light of earthquake rupture and wave-propagation modelling methods and the rapid growth in computing power. Earthquake rupture modelling needs to be physics-based and also computationally efficient. It also requires the ability to quantify the variability of finite source models for future scenario events. A generalized pseudo-dynamic source model (e.g. earthquake source statistics model) for M w 6.5–7.0 has been constructed by analysing a number of dynamic rupture models based on 1-point and 2-point statistics of kinematic source parameters. Synthetic broad-band ground motions derived from the pseudo-dynamic source model are validated against empirical ground motion prediction equations (GMPEs). The pseudo-dynamic source model produces ground motion intensities mostly compatible with the empirical GMPEs in the broad frequency range. The perturbation analysis of 1-point and 2-point statistics helps to elucidate the effect of source statistics on ground motions in a systematic way. The constructed pseudo-dynamic source model may be used to generate a feasible range of rupture scenarios for future events and to simulate expected ground motions for seismic hazard assessment.
    Keywords: Seismology
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  • 112
    Publication Date: 2016-01-01
    Description: We evaluate the bias in parameter estimates of the ETAS model. We show that when a simulated catalogue is magnitude-truncated there is considerable bias, whereas when it is not truncated there is no discernible bias. We also discuss two further implied assumptions in the ETAS and other self-exciting models. First, that the triggering boundary magnitude is equivalent to the catalogue completeness magnitude. Secondly, the assumption in the Gutenberg–Richter relationship that numbers of events increase exponentially as magnitude decreases. These two assumptions are confounded with the magnitude truncation effect. We discuss the effect of these problems on analyses of real earthquake catalogues.
    Keywords: Seismology
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  • 113
    Publication Date: 2016-01-02
    Description: The frequency dependence of the quality factor Q has long been predicted by mathematical modelling and laboratory measurements; however, in situ evidence from seismic surveys is still lacking. We have conducted the cross-hole seismic surveys to investigate the near-surface seismic attenuation in the Daqing oilfield in northeastern China. The seismic waves were fired in a source hole of 40 m from the bottom to the surface at an interval of 1 m and were recorded in a receiver hole of 40 m by two geophones with one at the surface and the other one at the bottom. The direct waves were extracted to avoid the noise disturbance and the reflection interference, and the attenuations without the effects of the source signature and the receiver coupling were estimated by a method we proposed. The nonlinear attenuations were observed and fitted using the power-law-based Q . The reliability of Q estimate was verified by the high similarity between the real and the simulated attenuations. Therefore, the experiment we have conducted can be treated as a reliable evidence for the frequency dependence of near-surface  Q .
    Keywords: Seismology
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  • 114
    Publication Date: 2016-01-06
    Description: Author(s): Zhu Chen and Zhaoxin Liang In recent experiments, spin-orbit-coupled (SOC) bosonic gases in an optical lattice have been successfully prepared into any Bloch band [Hamner et al. , Phys. Rev. Lett. 114 , 070401 (2015)] , which promises a viable contender in the competitive field of simulating gauge-related phenomena. However, th… [Phys. Rev. A 93, 013601] Published Tue Jan 05, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 115
    Publication Date: 2016-01-08
    Description: The southeastern European cities of Sofia and Thessaloniki are explored as example site-specific scenarios by geographically zoning their individual localized seismic sources based on the highest probabilities of magnitude exceedance. This is with the aim of determining the major components contributing to each city's seismic hazard. Discrete contributions from the selected input earthquake catalogue are investigated to determine those areas that dominate each city's prevailing seismic hazard with respect to magnitude and source-to-site distance. This work is based on an earthquake catalogue developed and described in a previously published paper by the author and components of a magnitude probability density function. Binned magnitude and distance classes are defined using a joint magnitude–distance distribution. The prevailing seismicity to each city—as defined by a child data set extracted from the parent earthquake catalogue for each city considered—is divided into distinct constrained data bins of small discrete magnitude and source-to-site distance intervals. These are then used to describe seismic hazard in terms of uni-variate modal values; that is, M * and D * which are the modal magnitude and modal source-to-site distance in each city's local historical seismicity. This work highlights that Sofia's dominating seismic hazard—that is, the modal magnitudes possessing the highest probabilities of occurrence—is located in zones confined to two regions at 60–80 km and 170–180 km from this city, for magnitude intervals of 5.75–6.00 M w and 6.00–6.25 M w respectively. Similarly, Thessaloniki appears prone to highest levels of hazard over a wider epicentral distance interval, from 80 to 200 km in the moment magnitude range 6.00–6.25 M w .
    Keywords: Seismology
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  • 116
    Publication Date: 2016-01-08
    Description: Author(s): Guillaume Lang, Frank Hekking, and Anna Minguzzi We describe the dimensional crossover in a noninteracting Fermi gas in an anisotropic trap, obtained by populating various transverse modes of the trap. We study the dynamical structure factor and drag force. Starting from a dimension d , the ( d + 1 ) -dimensional case is obtained to a good approximation… [Phys. Rev. A 93, 013603] Published Thu Jan 07, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 117
    Publication Date: 2016-01-08
    Description: Author(s): Mateusz Łącki, Hannes Pichler, Antoine Sterdyniak, Andreas Lyras, Vassilis E. Lembessis, Omar Al-Dossary, Jan Carl Budich, and Peter Zoller We propose and study various realizations of a Hofstadter-Hubbard model on a cylinder geometry with fermionic cold atoms in optical lattices. The cylindrical optical lattice is created by copropagating Laguerre-Gauss beams, i.e., light beams carrying orbital angular momentum. By strong focusing of t… [Phys. Rev. A 93, 013604] Published Thu Jan 07, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 118
    Publication Date: 2016-01-09
    Description: Author(s): Christoph Weiss, Simon L. Cornish, Simon A. Gardiner, and Heinz-Peter Breuer We show that the spreading of the center-of-mass density of ultracold attractively interacting bosons can become superballistic in the presence of decoherence, via one-, two-, and/or three-body losses. In the limit of weak decoherence, we analytically solve the numerical model introduced in [ Phys.… [Phys. Rev. A 93, 013605] Published Fri Jan 08, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 119
    Publication Date: 2016-01-13
    Description: Author(s): P. Gillot, B. Cheng, S. Merlet, and F. Pereira Dos Santos Owing to the use of a symmetrization π pulse at the middle of their laser sequences, Mach-Zehnder-type atom interferometers are insensitive to clocks shifts and Doppler shifts, if constant, but to changes in these quantities, which makes them accurate and sensitive inertial-force sensors. However, v... [Phys. Rev. A 93, 013609] Published Tue Jan 12, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 120
    Publication Date: 2016-01-13
    Description: Author(s): A. Rakonjac, A. L. Marchant, T. P. Billam, J. L. Helm, M. M. H. Yu, S. A. Gardiner, and S. L. Cornish We report observations of the formation and subsequent decay of a vortex lattice in a Bose-Einstein condensate confined in a hybrid optical-magnetic trap. Vortices are induced by rotating the anharmonic magnetic potential that provides confinement in the horizontal plane. We present simple numerical... [Phys. Rev. A 93, 013607] Published Mon Jan 11, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 121
    Publication Date: 2016-01-14
    Description: Author(s): Julien Dujardin, Thomas Engl, and Peter Schlagheck We study the transport of an interacting Bose–Einstein condensate through a 1D correlated disorder potential. We use for this purpose the truncated Wigner method, which is, as we show, corresponding to the diagonal approximation of a semiclassical van Vleck–Gutzwiller representation of this many-bod… [Phys. Rev. A 93, 013612] Published Wed Jan 13, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 122
    Publication Date: 2016-03-08
    Description: Author(s): J. Polo, J. Mompart, and V. Ahufinger We investigate the dynamics of angular momentum states for a single ultracold atom trapped in two-dimensional systems of sided coupled ring potentials. The symmetries of the system show that tunneling amplitudes between different ring states with variation of the winding number are complex. In parti… [Phys. Rev. A 93, 033613] Published Mon Mar 07, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 123
    Publication Date: 2016-03-08
    Description: Author(s): Zheng Zhu, Zheng-Yu Weng, and Tin-Lun Ho We show that pronounced modulations in spin and charge densities can be induced by the insertion of a single hole in an otherwise half-filled two-leg Hubbard ladder. Accompanied with these modulations is a loosely bound structure of the doped charge with a spin-1/2, in contrast to the tightly bound … [Phys. Rev. A 93, 033614] Published Mon Mar 07, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 124
    Publication Date: 2016-03-09
    Description: We collect two months of ambient noise data recorded by 35 broad-band seismic stations in a 9 x 11 km area (1–3 km station interval) near Karamay, China, and do cross-correlation of noise data between all station pairs. Array beamforming analysis of the ambient noise data shows that ambient noise sources are unevenly distributed and the most energetic ambient noise mainly comes from azimuths of 40°–70°. As a consequence of the strong directional noise sources, surface wave components of the cross-correlations at 1–5 Hz show clearly azimuthal dependence, and direct dispersion measurements from cross-correlations are strongly biased by the dominant noise energy. This bias renders that the dispersion measurements from cross-correlations do not accurately reflect the interstation velocities of surface waves propagating directly from one station to the other, that is, the cross-correlation functions do not retrieve empirical Green's functions accurately. To correct the bias caused by unevenly distributed noise sources, we adopt an iterative inversion procedure. The iterative inversion procedure, based on plane-wave modeling, includes three steps: (1) surface wave tomography, (2) estimation of ambient noise energy and biases and (3) phase velocities correction. First, we use synthesized data to test the efficiency and stability of the iterative procedure for both homogeneous and heterogeneous media. The testing results show that: (1) the amplitudes of phase velocity bias caused by directional noise sources are significant, reaching ~2 and ~10 per cent for homogeneous and heterogeneous media, respectively; (2) phase velocity bias can be corrected by the iterative inversion procedure and the convergence of inversion depends on the starting phase velocity map and the complexity of the media. By applying the iterative approach to the real data in Karamay, we further show that phase velocity maps converge after 10 iterations and the phase velocity maps obtained using corrected interstation dispersion measurements are more consistent with results from geology surveys than those based on uncorrected data. As ambient noise in high-frequency band (〉1 Hz) is mostly related to human activities or climate events, both of which have strong directivity, the iterative approach demonstrated here helps improve the accuracy and resolution of ANT in imaging shallow earth structures.
    Keywords: Seismology
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  • 125
    Publication Date: 2016-03-09
    Description: We developed an improved method for the separation of intrinsic and scattering attenuation of seismic shear waves by envelope inversion called Qopen . The method optimizes the fit between Green's functions for the acoustic, isotropic radiative transfer theory and observed energy densities of earthquakes. The inversion allows the determination of scattering and intrinsic attenuation, site corrections and spectral source energies for the investigated frequency bands. Source displacement spectrum and the seismic moment of the analysed events can be estimated from the obtained spectral source energies. We report intrinsic and scattering attenuation coefficients of shear waves near three geothermal reservoirs in Germany for frequencies between 1 and 70 Hz. The geothermal reservoirs are located in Insheim, Landau (both Upper Rhine Graben) and Unterhaching (Molasse basin). We compare these three sedimentary sites to two sites located in crystalline rock with respect to scattering and intrinsic attenuation. The inverse quality factor for intrinsic attenuation is constant in sediments for frequencies smaller than $10\hspace{1.00006pt}\mathrm{Hz}$ and decreasing for higher frequencies. For crystalline rock, it is on a lower level and strictly monotonic decreasing with frequency. Intrinsic attenuation dominates scattering except for the Upper Rhine Graben, where scattering is dominant for frequencies below $10\hspace{1.00006pt}\mathrm{Hz}$ . Observed source displacement spectra show a high-frequency fall-off greater than or equal to 3.
    Keywords: Seismology
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  • 126
    Publication Date: 2016-03-23
    Description: Author(s): E. Doko, A. L. Subaşı, and M. Iskin We analyze the interplay of adiabatic rotation and Rashba spin-orbit coupling on the BCS-BEC evolution of a harmonically trapped Fermi gas in two dimensions under the assumption that vortices are not excited. First, by taking the trapping potential into account via both the semiclassical and exact q… [Phys. Rev. A 93, 033640] Published Tue Mar 22, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 127
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    Oxford University Press
    Publication Date: 2016-01-01
    Description: This paper presents a generalized wave equation which unifies viscoelastic and pure elastic cases into a single wave equation. In the generalized wave equation, the degree of viscoelasticity varies between zero and unity, and is defined by a controlling parameter. When this viscoelastic controlling parameter equals to 0, the viscous property vanishes and the generalized wave equation becomes a pure elastic wave equation. When this viscoelastic controlling parameter equals to 1, it is the Stokes equation made up of a stack of pure elastic and Newtonian viscous models. Given this generalized wave equation, an analytical solution is derived explicitly in terms of the attenuation and the velocity dispersion. It is proved that, for any given value of the viscoelastic controlling parameter, the attenuation component of this generalized wave equation perfectly satisfies the power laws of frequency. Since the power laws are the fundamental characteristics in physical observations, this generalized wave equation can well represent seismic wave propagation through subsurface media.
    Keywords: Seismology
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  • 128
    Publication Date: 2016-01-06
    Description: Author(s): Michele Filippone, Frank Hekking, and Anna Minguzzi We study energy and particle transport for one-dimensional strongly interacting bosons through a ballistic single channel connecting two atomic reservoirs. We show the emergence of particle- and energy-current separation, leading to the violation of the Wiedemann-Franz law. As a consequence, we pred… [Phys. Rev. A 93, 011602(R)] Published Tue Jan 05, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 129
    Publication Date: 2016-01-11
    Description: We investigate the relationship between subduction processes and related seismicity for the Lesser Antilles Arc using the Gutenberg–Richter law. This power law describes the earthquake-magnitude distribution, with the gradient of the cumulative magnitude distribution being commonly known as the b -value. The Lesser Antilles Arc was chosen because of its along-strike variability in sediment subduction and the transition from subduction to strike-slip movement towards its northern and southern ends. The data are derived from the seismicity catalogues from the Seismic Research Centre of The University of the West Indies and the Observatoires Volcanologiques et Sismologiques of the Institut de Physique du Globe de Paris and consist of subcrustal events primarily from the slab interface. The b -value is found using a Kolmogorov–Smirnov test for a maximum-likelihood straight line-fitting routine. We investigate spatial variations in b -values using a grid-search with circular cells as well as an along-arc projection. Tests with different algorithms and the two independent earthquake cataloges provide confidence in the robustness of our results. We observe a strong spatial variability of the b -value that cannot be explained by the uncertainties. Rather than obtaining a simple north–south b -value distribution suggestive of the dominant control on earthquake triggering being water released from the sedimentary cover on the incoming American Plates, or a b -value distribution that correlates with on the obliquity of subduction, we obtain a series of discrete, high b -value ‘bull's-eyes’ along strike. These bull's-eyes, which indicate stress release through a higher fraction of small earthquakes, coincide with the locations of known incoming oceanic fracture zones on the American Plates. We interpret the results in terms of water being delivered to the Lesser Antilles subduction zone in the vicinity of fracture zones providing lubrication and thus changing the character of the related seismicity. Our results suggest serpentinization around mid-ocean ridge transform faults, which go on to become fracture zones on the incoming plate, plays a significant role in the delivery of water into the mantle at subduction zones.
    Keywords: Seismology
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  • 130
    Publication Date: 2016-01-13
    Description: Author(s): Hiroyuki Tajima, Ryo Hanai, and Yoji Ohashi We theoretically investigate the uniform spin susceptibility χ in the superfluid phase of an ultracold Fermi gas in the region of the Bardeen-Cooper-Schrieffer–Bose-Einstein-condensate (BCS-BEC) crossover. In our previous paper [H. Tajima et al. , Phys. Rev. A 89 , 033617 (2014) ], including pairing f... [Phys. Rev. A 93, 013610] Published Tue Jan 12, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 131
    Publication Date: 2016-01-13
    Description: Author(s): Qing-Shou Tan, Hai-Yan Lu, and Su Yi The spin-squeezing dynamics of a quasi-one-dimensional dipolar Bose gas trapped in a double-well potential is studied by employing the method of the multiconfigurational time-dependent Hartree for bosons. We find that optimal squeezing generated by the dipolar interaction can be improved over the on... [Phys. Rev. A 93, 013606] Published Mon Jan 11, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 132
    Publication Date: 2016-03-25
    Description: Given a moment tensor m inferred from seismic data for an earthquake, we define ${\scr P}(V)$ to be the probability that the true moment tensor for the earthquake lies in the neighbourhood of m that has fractional volume V . The average value of ${\scr P}(V)$ is then a measure of our confidence in  m . The calculation of ${\scr P}(V)$ requires knowing both the probability $\skew4\hat{P}(\omega )$ and the fractional volume $\skew4\hat{V}(\omega )$ of the set of moment tensors within a given angular radius of  m . We explain how to construct $\skew4\hat{P}(\omega )$ from a misfit function derived from seismic data, and we show how to calculate $\skew4\hat{V}(\omega )$ , which depends on the set $\mathbb {M}$ of moment tensors under consideration. The two most important instances of $\mathbb {M}$ are where $\mathbb {M}$ is the set of all moment tensors of fixed norm, and where $\mathbb {M}$ is the set of all double couples of fixed norm.
    Keywords: Seismology
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  • 133
    Publication Date: 2016-03-25
    Description: The M s ~ 7.7 Sarez-Pamir earthquake of 1911 February 18 is the largest instrumentally recorded earthquake in the Pamir region. It triggered one of the largest landslides of the past century, building a giant natural dam and forming Lake Sarez. As for many strong earthquakes from that time, information about source parameters of the Sarez-Pamir earthquake is limited due to the sparse observations. Here, we present the analysis of analogue seismic records of the Sarez-Pamir earthquake. We have collected, scanned and digitized 26 seismic records from 13 stations worldwide to relocate the epicentre and determine the event's depth (~26 km) and magnitude ( m B 7.3 and M s 7.7). The unusually good quality of the digitized waveforms allowed their modelling, revealing an NE-striking sinistral strike-slip focal mechanism in accordance with regional tectonics. The shallow depth and magnitude ( M w 7.3) of the earthquake were confirmed. Additionally, we investigated the possible contribution of the landslide to the waveforms and present an alternative source model assuming the landslide and earthquake occurred in close sequence.
    Keywords: Seismology
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  • 134
    Publication Date: 2016-03-25
    Description: Author(s): Boyang Liu, Hui Zhai, and Shizhong Zhang In this work we present a coherent picture for the evolution of Higgs mode in neutral s -wave fermion superfluids. As the strength of attractive interaction between fermions increases from the BCS to the Bose-Einstein condensate (BEC) regime we find that the Higgs mode in the fermionic superfluids is… [Phys. Rev. A 93, 033641] Published Wed Mar 23, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 135
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    American Physical Society (APS)
    Publication Date: 2016-03-25
    Description: Author(s): P. B. Blakie We obtain the phase diagram for a harmonically trapped dilute dipolar condensate with a short-ranged conservative three-body interaction. We show that this system supports two distinct fluid states: a usual condensate state and a self-cohering droplet state. We develop a simple model to quantify the… [Phys. Rev. A 93, 033644] Published Wed Mar 23, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 136
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    American Physical Society (APS)
    Publication Date: 2016-03-25
    Description: Author(s): Barry Bradlyn and Andrey Gromov Interacting Bose-Fermi mixtures possess a fermionic (super)symmetry when bosons and fermions in the mixture have equal masses, and when the interaction strengths are appropriately tuned. This symmetry is spontaneously broken in the ground state of the mixture, leading to a novel Goldstone mode with … [Phys. Rev. A 93, 033642] Published Wed Mar 23, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 137
    Publication Date: 2016-04-01
    Description: Author(s): Christoph H. Redder and Götz S. Uhrig We investigate how the multiple bands of fermions on a crystal lattice evolve if a magnetic field is added which does not increase the number of bands. The kagome lattice is studied as generic example for a lattice with loops of three bonds. Finite Chern numbers occur as a nontrivial topological pro… [Phys. Rev. A 93, 033654] Published Thu Mar 31, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 138
    Publication Date: 2016-04-02
    Description: Author(s): Ren Zhang, Deping Zhang, Yanting Cheng, Wei Chen, Peng Zhang, and Hui Zhai Alkaline-earth-metal atoms have a long-lived electronic excited state, and when atoms in this excited state are localized in the Fermi sea of ground-state atoms by an external potential, they serve as magnetic impurities, due to the spin-exchange interaction between the excited- and the ground-state… [Phys. Rev. A 93, 043601] Published Fri Apr 01, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 139
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    American Physical Society (APS)
    Publication Date: 2016-04-08
    Description: Author(s): Shao-Jian Jiang, Jeff Maki, and Fei Zhou Quantum simulations based on near-resonance Bose gases are limited by their short lifetimes due to severe atom losses. In addition to this, the recently predicted thermodynamical instability adds another constraint on accessing the resonant Bose gases. In this paper, we offer a potential solution by… [Phys. Rev. A 93, 043605] Published Wed Apr 06, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 140
    Publication Date: 2016-06-27
    Description: To obtain the synthetic seismogram using the Cagniard-de Hoop method, one needs to calculate the integral over slowness. When the source is shallow and the slowness is near the zero of the Rayleigh function, the integrand behaves like a sharp pulse. In this study, we attempt to study this pulse with an asymptotic approach, and conclude that the Rayleigh wave in the time domain originates from this pulse in the slowness domain. We therefore offer an explanation of the excitation of the Rayleigh wave in a mathematical point of view. In addition, we propose a method to improve the efficiency of the numerical quadrature in the calculation of the synthetic seismogram.
    Keywords: Seismology
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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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  • 141
    Publication Date: 2016-06-27
    Description: Many studies have sought to seismically image plumes rising from the deep mantle in order to settle the debate about their presence and role in mantle dynamics, yet the predicted seismic signature of realistic plumes remains poorly understood. By combining numerical simulations of flow, mineral-physics constraints on the relationships between thermal anomalies and wave speeds, and spectral-element method based computations of seismograms, we estimate the delay times of teleseismic S and P waves caused by thermal plumes. Wave front healing is incomplete for seismic periods ranging from 10 s (relevant in traveltime tomography) to 40 s (relevant in waveform tomography). We estimate P -wave delays to be immeasurably small (〈0.3 s). S -wave delays are larger than 0.4 s even for S waves crossing the conduits of the thinnest thermal plumes in our geodynamic models. At longer periods (〉20 s), measurements of instantaneous phase misfit may be more useful in resolving narrow plume conduits. To detect S -wave delays of 0.4–0.8 s and the diagnostic frequency dependence imparted by plumes, it is key to minimize the influence of the heterogeneous crust and upper mantle. We argue that seismic imaging of plumes will advance significantly if data from wide-aperture ocean-bottom networks were available since, compared to continents, the oceanic crust and upper mantle are relatively simple.
    Keywords: Seismology
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  • 142
    Publication Date: 2016-06-27
    Description: Field experiments are used to unequivocally demonstrate seismic superresolution imaging of subwavelength objects in the near-field region of the source. The field test is for a conventional hammer source striking a metal plate near subwavelength scatterers and the seismic data are recorded by vertical-component geophones in the far-field locations of the sources. Time-reversal mirrors (TRMs) are then used to refocus the scattered energy with subwavelength resolution to the position of the original source. A spatial resolution of /10, where is the dominant wavelength associated with the data, is seen in the field tests that exceeds the Abbe resolution limit of /2.
    Keywords: Seismology
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  • 143
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    American Physical Society (APS)
    Publication Date: 2016-06-28
    Description: Author(s): F. Wächtler and L. Santos Collapse in dipolar Bose-Einstein condensates may be arrested by quantum fluctuations. Due to the anisotropy of the dipole-dipole interactions, the dipole-driven collapse induced by soft excitations is compensated by the repulsive Lee-Huang-Yang contribution resulting from quantum fluctuations of ha… [Phys. Rev. A 93, 061603(R)] Published Fri Jun 24, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 144
    Publication Date: 2016-06-28
    Description: Author(s): Lianyi He, Xia-Ji Liu, Xu-Guang Huang, and Hui Hu Recent advances in rapidly quenched ultracold atomic Fermi gases near a Feshbach resonance have brought about a number of interesting problems in the context of observing the long-sought Stoner ferromagnetic phase transition. The possibility of experimentally obtaining a “quasirepulsive” regime in t… [Phys. Rev. A 93, 063629] Published Fri Jun 24, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 145
    Publication Date: 2016-06-28
    Description: Author(s): Y. V. Stadnik and V. V. Flambaum We outline laser interferometer measurements to search for variation of the electromagnetic fine-structure constant α and particle masses (including a nonzero photon mass). We propose a strontium optical lattice clock—silicon single-crystal cavity interferometer as a small-scale platform for these m… [Phys. Rev. A 93, 063630] Published Fri Jun 24, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 146
    Publication Date: 2016-06-29
    Description: Author(s): J. M. Gomez Llorente and J. Plata We focus on a technique recently implemented for controlling the magnitude of synthetic spin-orbit coupling (SOC) in ultracold atoms in the Raman-coupling scenario. This technique uses a periodic modulation of the Raman-coupling amplitude to tune the SOC. Specifically, it has been shown that the eff… [Phys. Rev. A 93, 063633] Published Tue Jun 28, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 147
    Publication Date: 2016-06-29
    Description: Author(s): Juan Pablo Ramírez Valdes and Thomas Wellens We study the expansion of an initially strongly confined wave packet in a one-dimensional weak random potential with short correlation length. At long times, the expansion of the wave packet comes to a halt due to destructive interferences leading to Anderson localization. We develop an analytical d… [Phys. Rev. A 93, 063634] Published Tue Jun 28, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 148
    Publication Date: 2016-06-29
    Description: Author(s): Santiago F. Caballero-Benitez, Gabriel Mazzucchi, and Igor B. Mekhov We show that coupling ultracold atoms in optical lattices to quantized modes of an optical cavity leads to quantum phases of matter, which at the same time possess properties of systems with both short- and long-range interactions. This opens perspectives for novel quantum simulators of finite-range… [Phys. Rev. A 93, 063632] Published Tue Jun 28, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 149
    Publication Date: 2016-06-29
    Description: Author(s): Soeren Lammers, Igor Boettcher, and Christof Wetterich We investigate how confining a transverse spatial dimension influences the few- and many-body properties of nonrelativistic bosons with pointlike interactions. Our main focus is on the dimensional crossover from three to two dimensions, which is of relevance for ultracold-atom experiments. Using fun… [Phys. Rev. A 93, 063631] Published Mon Jun 27, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 150
    Publication Date: 2016-07-03
    Description: We propose an adaptive root-determining strategy that is very useful when dealing with trapped modes or Stoneley modes whose energies become very insignificant on the free surface in the presence of low-velocity layers or fluid layers in the model. Loss of modes in these cases or inaccuracy in the calculation of these modes may then be easily avoided. Built upon the generalized reflection/transmission coefficients, the concept of ‘family of secular functions’ that we herein call ‘adaptive mode observers’ is thus naturally introduced to implement this strategy, the underlying idea of which has been distinctly noted for the first time and may be generalized to other applications such as free oscillations or applied to other methods in use when these cases are encountered. Additionally, we have made further improvements upon the generalized reflection/transmission coefficient method; mode observers associated with only the free surface and low-velocity layers (and the fluid/solid interface if the model contains fluid layers) are adequate to guarantee no loss and high precision at the same time of any physically existent modes without excessive calculations. Finally, the conventional definition of the fundamental mode is reconsidered, which is entailed in the cases under study. Some computational aspects are remarked on. With the additional help afforded by our superior root-searching scheme and the possibility of speeding calculation using a less number of layers aided by the concept of ‘turning point’, our algorithm is remarkably efficient as well as stable and accurate and can be used as a powerful tool for widely related applications.
    Keywords: Seismology
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  • 151
    Publication Date: 2016-07-03
    Description: Numerical solvers of wave equations have been widely used to simulate global seismic waves including PP waves for modelling 410/660 km discontinuity and Rayleigh waves for imaging crustal structure. In order to avoid extra computation cost due to ocean water effects, these numerical solvers usually adopt water column approximation, whose accuracy depends on frequency and needs to be investigated quantitatively. In this paper, we describe a unified representation of accurate and approximate forms of the equivalent water column boundary condition as well as the free boundary condition. Then we derive an analytical form of the PP -wave reflection coefficient with the unified boundary condition, and quantify the effects of water column approximation on amplitude and phase shift of the PP waves. We also study the effects of water column approximation on phase velocity dispersion of the fundamental mode Rayleigh wave with a propagation matrix method. We find that with the water column approximation: (1) The error of PP amplitude and phase shift is less than 5 per cent and 9° at periods greater than 25 s for most oceanic regions. But at periods of 15 s or less, PP is inaccurate up to 10 per cent in amplitude and a few seconds in time shift for deep oceans. (2) The error in Rayleigh wave phase velocity is less than 1 per cent at periods greater than 30 s in most oceanic regions, but the error is up to 2 per cent for deep oceans at periods of 20 s or less. This study confirms that the water column approximation is only accurate at long periods and it needs to be improved at shorter periods.
    Keywords: Seismology
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  • 152
    Publication Date: 2016-07-03
    Description: Seismic wave resonance in sedimentary basins is a well-recognized seismic hazard; however, concentrated areas of earthquake damage have been observed near basin edges, where wave propagation is particularly complex and difficult to understand with sparse observations. The Tokyo metropolitan area is densely populated, subject to strong shaking from a diversity of earthquake sources, and sits atop the deep Kanto sedimentary basin. It is also instrumented with two seismic arrays: the dense MEtropolitan Seismic Observation network (MeSO-net) within the basin, and the High sensitivity seismograph network (Hi-net) surrounding it. In this study, we explore the 3-D seismic wavefield within and throughout the Kanto basin, including near and across basin boundaries, using cross-correlations of all components of ambient seismic field between the stations of these two arrays. Dense observations allow us to observe clearly the propagation of three modes of both Rayleigh and Love waves. They also show how the wavefield behaves in the vicinity of sharp basin edges with reflected/converted waves and excitation of higher modes.
    Keywords: Seismology
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  • 153
    Publication Date: 2016-07-03
    Description: We present an analytical approach to compute the curvature effect by the new analytical solutions of coseismic deformation derived for the homogeneous sphere model. We consider two spheres with different radii: one is the same as earth and the other with a larger radius can approximate a half-space model. Then, we calculate the coseismic displacements for the two spheres and define the relative percentage of the displacements as the curvature effect. The near-field curvature effect is defined relative to the maximum coseismic displacement. The results show that the maximum curvature effect is about 4 per cent for source depths of less than 100 km, and about 30 per cent for source depths of less than 600 km. For the far-field curvature effect, we define it relative to the observing point. The curvature effect is extremely large and sometimes exceeds 100 per cent. Moreover, this new approach can be used to estimate any planet's curvature effect quantitatively. For a smaller sphere, such as the Moon, the curvature effect is much larger than that of the Earth, with an inverse ratio to the earth's radius.
    Keywords: Seismology
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  • 154
    Publication Date: 2016-07-06
    Description: In Antarctica, locally grounded ice, such as ice rises bordering floating ice shelves, plays a major role in the ice mass balance as it stabilizes the ice sheet flow from the hinterland. When in direct contact with the ocean, the ice rise buttressing effect may be altered in response of changing ocean forcing. To investigate this vulnerable zone, four sites near the boundary of an ice shelf with an ice rise promontory in Dronning Maud Land, East-Antarctica were monitored for a month in early 2014 with new instruments that include both seismic and GPS sensors. Our study indicated that this transition zone experiences periodic seismic activity resulting from surface crevassing during oceanic tide-induced flexure of the ice shelf. The most significant finding is the observation of apparent fortnightly tide-modulated low-frequency, long-duration seismic events at the seaward front of the ice rise promontory. A basal origin of these events is postulated with the ocean water surge at each new spring tide triggering basal crevassing or basal slip on a local bedrock asperity. Detection and monitoring of such seismicity may help identifying ice rise zones vulnerable to intensified ocean forcing.
    Keywords: Seismology
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  • 155
    Publication Date: 2016-07-06
    Description: Author(s): Yuzhu Jiang, D. V. Kurlov, Xi-Wen Guan, F. Schreck, and G. V. Shlyapnikov We study a one-dimensional (1D) two-component atomic Fermi gas with an infinite intercomponent contact repulsion. It is found that adding an attractive nearly resonant odd-wave interaction breaking the rotational symmetry one can make the ground state ferromagnetic. A promising system for the observ… [Phys. Rev. A 94, 011601(R)] Published Tue Jul 05, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 156
    Publication Date: 2016-08-13
    Description: Author(s): Natalia V. Orlova, Pekko Kuopanportti, and Milorad V. Milošević We show numerically that a harmonically trapped and coherently Rabi-coupled three-component Bose-Einstein condensate can host unconventional vortex lattices in its rotating ground state. The discovered lattices incorporate square and zig-zag patterns, vortex dimers and chains, and doubly quantized v… [Phys. Rev. A 94, 023617] Published Fri Aug 12, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 157
    Publication Date: 2016-08-12
    Description: Author(s): Takashi Nakafuji, Takeshi Ito, Yuya Nagamori, and Ikuo Ichinose In this paper, we study phase diagrams of dipolar hard-core boson gases on a honeycomb lattice. The system is described by the Haldane-Bose-Hubbard model with complex hopping amplitudes and nearest-neighbor repulsion. By using the slave-particle representation of the hard-core bosons and also the pa… [Phys. Rev. A 94, 023613] Published Thu Aug 11, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 158
    Publication Date: 2016-08-12
    Description: Author(s): J. K. Freericks, Shuyang Han, Karlis Mikelsons, and H. R. Krishnamurthy We develop a generalized gradient expansion of the inhomogeneous dynamical mean-field theory method for determining properties of ultracold atoms in a trap. This approach goes beyond the well-known local density approximation and at higher temperatures, in the normal phase, it shows why the local de… [Phys. Rev. A 94, 023614] Published Thu Aug 11, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 159
    Publication Date: 2016-08-12
    Description: Author(s): Lorenzo Cardarelli, Sebastian Greschner, and Luis Santos We show that a multicolor modulation of the depth of an optical lattice allows for a flexible independent control of correlated hopping, occupation-dependent gauge fields, effective on-site interactions without Feshbach resonances, and nearest-neighbor interactions. As a result, the lattice-depth mo… [Phys. Rev. A 94, 023615] Published Thu Aug 11, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 160
    Publication Date: 2016-08-20
    Description: Author(s): Xi Chen, Yue Ban, and Gerhard C. Hegerfeldt Nonlinear two-level Landau-Zener type equations for systems with relevance for Bose-Einstein condensates and nonlinear optics are considered and the minimal time T min to drive an initial state to a given target state is investigated. Surprisingly, the nonlinearity may be canceled by a time-optimal u… [Phys. Rev. A 94, 023624] Published Fri Aug 19, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 161
    Publication Date: 2016-08-20
    Description: Author(s): Andrzej Syrwid, Mirosław Brewczyk, Mariusz Gajda, and Krzysztof Sacha Eigenstates of Bose particles with repulsive contact interactions in one-dimensional space with periodic boundary conditions can be found with the help of the Bethe ansatz. The type II excitation spectrum identified by E. H. Lieb, reproduces the dispersion relation of dark solitons in the mean-field… [Phys. Rev. A 94, 023623] Published Thu Aug 18, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 162
    Publication Date: 2016-08-25
    Description: SKS arrivals from ocean bottom seismometer (OBS) data from an offshore southern California deployment are analysed for shear wave splitting. The project involved 34 OBSs deployed for 12 months in a region extending up to 500 km west of the coastline into the oceanic Pacific plate. The measurement process consisted of removing the effects of anisotropy using a range of values for splitting fast directions and delay times to minimize energy along the transverse seismometer axis. Computed splitting parameters are unexpectedly similar to onland parameters, exhibiting WSW–ENE fast polarization directions and delays between 0.8 and 1.8 s, even for oceanic plate sites. This is the first SKS splitting study to extend across the entire boundary between the North America and Pacific plates, into the oceanic part of the Pacific plate. The splitting results show that the fast direction of anisotropy on the Pacific plate does not align with absolute plate motion (APM), and they extend the trend of anisotropy in southern California an additional 500 km west, well onto the oceanic Pacific plate. We model the finite strain and anisotropy within the asthenosphere associated with density–buoyancy driven mantle flow and the effects of APM. In the absence of plate motion effects, such buoyancy driven mantle flow would be NE-directed beneath the Pacific plate observations. The best-fit patterns of mantle flow are inferred from the tomography-based models that show primary influences from foundering higher-density zones associated with the history of subduction beneath North America. The new offshore SKS measurements, when combined with measurements onshore within the plate boundary zone, indicate that dramatic lateral variations in density-driven upper-mantle flow are required from offshore California into the plate boundary zone in California and western Basin and Range.
    Keywords: Seismology
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  • 163
    Publication Date: 2016-08-26
    Description: Author(s): Thomas Bilitewski and Nigel R. Cooper We study the many-body phases of bosonic atoms with N internal states confined to a one-dimensional (1D) optical lattice under the influence of a synthetic magnetic field and strong repulsive interactions. The N internal states of the atoms are coupled via Raman transitions creating the synthetic ma… [Phys. Rev. A 94, 023630] Published Thu Aug 25, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 164
    Publication Date: 2016-08-27
    Description: Author(s): Samuel Mugel, Alessio Celi, Pietro Massignan, János K. Asbóth, Maciej Lewenstein, and Carlos Lobo We suggest a method for engineering a quantum walk, with cold atoms as walkers, which presents topologically nontrivial properties. We derive the phase diagram, and show that we are able to produce a boundary between topologically distinct phases using the finite beam width of the applied lasers. A … [Phys. Rev. A 94, 023631] Published Fri Aug 26, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 165
    Publication Date: 2016-08-31
    Description: Author(s): Li Zhang (张莉), Xizhou Qin (秦锡洲), Yongguan Ke (柯勇贯), and Chaohong Lee (李朝红) Entanglement entropy (EE), a fundamental concept in quantum information for characterizing entanglement, has been extensively employed to explore quantum phase transitions (QPTs). Although the conventional single-site mean-field (MF) approach successfully predicts the emergence of QPTs, it fails to … [Phys. Rev. A 94, 023634] Published Tue Aug 30, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 166
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    American Association for the Advancement of Science (AAAS)
    In: Science
    Publication Date: 2016-06-24
    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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  • 167
    Publication Date: 2016-06-30
    Description: The islands composing the Maltese archipelago (Central Mediterranean) are characterized by a four-layer sequence of limestones and clays. A common feature found in the western half of the archipelago is Upper Coralline Limestone (UCL) plateaus and hillcaps covering a soft Blue Clay (BC) layer which can be up to 75 m thick. The BC layer introduces a velocity inversion in the stratigraphy, implying that the V S 30 (traveltime average sear wave velocity ( V S ) in the upper 30 m) parameter is not always suitable for seismic microzonation purposes. Such a layer may produce amplification effects, however might not be included in the V S 30 calculations. In this investigation, V S profiles at seven sites characterized by such a lithological sequence are obtained by a joint inversion of the single-station Horizontal-to-Vertical Spectral Ratios (H/V or HVSR) and effective dispersion curves from array measurements analysed using the Extended Spatial Auto-Correlation technique. The lithological sequence gives rise to a ubiquitous H/V peak between 1 and 2 Hz. All the effective dispersion curves obtained exhibit a ‘normal’ dispersive trend at low frequencies, followed by an inverse dispersive trend at higher frequencies. This shape is tentatively explained in terms of the presence of higher mode Rayleigh waves, which are commonly present in such scenarios. Comparisons made with the results obtained at the only site in Malta where the BC is missing below the UCL suggest that the characteristics observed at the other seven sites are due to the presence of the soft layer. The final profiles reveal a variation in the V S of the clay layer with respect to the depth of burial and some regional variations in the UCL layer. This study presents a step towards a holistic seismic risk assessment that includes the implications on the site effects induced by the buried clay layer. Such assessments have not yet been done for Malta.
    Keywords: Seismology
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  • 168
    Publication Date: 2016-06-30
    Description: Author(s): I. V. Tokatly and E. Ya. Sherman We consider response function and spin evolution in spin-orbit coupled cold atomic gases in a synthetic gauge magnetic field influencing solely the orbital motion of atoms. We demonstrate that various regimes of spin-orbit coupling strength, magnetic field, and disorder can be treated within a singl… [Phys. Rev. A 93, 063635] Published Wed Jun 29, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 169
    Publication Date: 2016-07-01
    Description: Author(s): Tom Kristensen, Xavier Leyronas, and Ludovic Pricoupenko The virial expansion for cold two-component Fermi and Bose atomic gases is considered in the presence of a waveguide and in the vicinity of a Feshbach resonance. The interaction between atoms and the coupling with the Feshbach molecules is modeled using a quantitative separable two-channel model. Th… [Phys. Rev. A 93, 063636] Published Thu Jun 30, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 170
    Publication Date: 2016-07-01
    Description: Author(s): Tomotake Yamakoshi, Shinichi Watanabe, Shun Ohgoda, and Alexander P. Itin We study the dynamics of fermions loaded in an optical lattice with a superimposed parabolic trap potential. In the recent Hamburg experiments [J. Heinze et al. , Phys. Rev. Lett. 110 , 085302 (2013) ] on quantum simulation of photoconductivity, a modulation pulse on the optical lattice transferred pa… [Phys. Rev. A 93, 063637] Published Thu Jun 30, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 171
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    Unknown
    American Association for the Advancement of Science (AAAS)
    In: Science
    Publication Date: 2016-07-01
    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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  • 172
    Publication Date: 2016-07-03
    Description: Noise is a persistent feature in seismic data and so poses challenges in extracting increased accuracy in seismic images and physical interpretation of the subsurface. In this paper, we analyse passive seismic data from the Aquistore carbon capture and storage pilot project permanent seismic array to characterise, classify and model seismic noise. We perform noise analysis for a three-month subset of passive seismic data from the array and provide conclusive evidence that the noise field is not white, stationary, or Gaussian; characteristics commonly yet erroneously assumed in most conventional noise models. We introduce a novel noise modelling method that provides a significantly more accurate characterisation of real seismic noise compared to conventional methods, which is quantified using the Mann–Whitney–White statistical test. This method is based on a statistical covariance modelling approach created through the modelling of individual noise signals. The identification of individual noise signals, broadly classified as stationary, pseudo-stationary and non-stationary, provides a basis on which to build an appropriate spatial and temporal noise field model. Furthermore, we have developed a workflow to incorporate realistic noise models within synthetic seismic data sets providing an opportunity to test and analyse detection and imaging algorithms under realistic noise conditions.
    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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  • 173
    Publication Date: 2016-07-03
    Description: Plate-scale deformation is expected to impart seismic anisotropic fabrics on the lithosphere. Determination of the fast shear wave orientation ( ) and the delay time between the fast and slow split shear waves ( t ) via SKS splitting can help place spatial and temporal constraints on lithospheric deformation. The Canadian Appalachians experienced multiple episodes of deformation during the Phanerozoic: accretionary collisions during the Palaeozoic prior to the collision between Laurentia and Gondwana, and rifting related to the Mesozoic opening of the North Atlantic. However, the extent to which extensional events have overprinted older orogenic trends is uncertain. We address this issue through measurements of seismic anisotropy beneath the Canadian Appalachians, computing shear wave splitting parameters ( , t ) for new and existing seismic stations in Nova Scotia and New Brunswick. Average t values of 1.2 s, relatively short length scale (≥100 km) splitting parameter variations, and a lack of correlation with absolute plate motion direction and mantle flow models, demonstrate that fossil lithospheric anisotropic fabrics dominate our results. Most fast directions parallel Appalachian orogenic trends observed at the surface, while t values point towards coherent deformation of the crust and mantle lithosphere. Mesozoic rifting had minimal impact on our study area, except locally within the Bay of Fundy and in southern Nova Scotia, where fast directions are subparallel to the opening direction of Mesozoic rifting; associated t values of 〉1 s require an anisotropic layer that spans both the crust and mantle, meaning the formation of the Bay of Fundy was not merely a thin-skinned tectonic event.
    Keywords: Seismology
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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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  • 174
    Publication Date: 2016-07-03
    Description: A new method for discrete sampling of signals is presented with specific applications to the reconstruction of recorded interfering wavefields from two or more sources excited simultaneously at discrete positions along lines. By utilizing a periodic sequence of source signatures along one of the source lines, the corresponding wavefield becomes separately visible in a part of the spectral domain where it can be isolated, processed and subtracted from the interfering wavefields. As a result, interfering wavefields from multiple sources recorded at a single location can be fully separated from each other. The concept is referred to as signal apparition which we suggest refers to ‘the act of becoming visible’. It may find applications in a wide range of disciplines relying on wave experimentation, such as acoustic, seismic and electromagnetic imaging of the Earth's interior for instance to significantly enhance resolution of subsurface images.
    Keywords: Seismology
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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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  • 175
    Publication Date: 2016-08-09
    Description: Author(s): Lewis A. Williamson and P. B. Blakie We examine the dynamics of a quasi-two-dimensional spin-1 condensate in which the quadratic Zeeman energy q is suddenly quenched to a value where the system has a ferromagnetic ground state. There are two distinct types of ferromagnetic phases, i.e., a range of q values where the magnetization prefe… [Phys. Rev. A 94, 023608] Published Mon Aug 08, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 176
    Publication Date: 2016-08-10
    Description: In the context of seismic monitoring, recent studies made successful use of seismic coda waves to locate medium changes on the horizontal plane. Locating the depth of the changes, however, remains a challenge. In this paper, we use 3-D wavefield simulations to address two problems: first, we evaluate the contribution of surface- and body-wave sensitivity to a change at depth. We introduce a thin layer with a perturbed velocity at different depths and measure the apparent relative velocity changes due to this layer at different times in the coda and for different degrees of heterogeneity of the model. We show that the depth sensitivity can be modelled as a linear combination of body- and surface-wave sensitivity. The lapse-time-dependent sensitivity ratio of body waves and surface waves can be used to build 3-D sensitivity kernels for imaging purposes. Second, we compare the lapse-time behaviour in the presence of a perturbation in horizontal and vertical slabs to address, for instance, the origin of the velocity changes detected after large earthquakes.
    Keywords: Seismology
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  • 177
    Publication Date: 2016-08-10
    Description: Traveltime tomography is the main method by which the Earth's seismic velocity is determined on all scales, from the near-surface (〈100 m) to the core. Usually traveltime tomography uses ray theory, an infinite-frequency approximation of wave propagation. A theory developed in global seismology to account for the finite-frequency nature of seismic data, known as finite-frequency traveltime tomography (FFTT), can theoretically provide a more accurate estimation of velocity. But the FFTT theory is generally not applicable to near-surface data because there is no reference velocity model known in advance that is capable of yielding synthetic waveforms that are close enough to the recorded seismograms to yield a reliable delay time. Also, there is usually no reference model for which the unknown velocity model represents a small (linear) perturbation from the reference model. This paper presents a frequency dependent form of non-linear traveltime tomography specifically designed for near-surface seismic data in which a starting model, iterative approach with recalculated travel paths at each iteration, and the calculation of a frequency-dependent total traveltime, as opposed to a delay time, are used. Frequency-dependent traveltime tomography (FDTT) involves two modifications to conventional traveltime tomography: (1) the calculation of frequency-dependent traveltimes using wavelength-dependent velocity smoothing (WDVS) and (2) the corresponding sensitivity kernels that arise from using WDVS. Results show that the former modification is essential to achieve significant benefits from FDTT, whereas the latter is optional in that similar results can be achieved using infinite-frequency kernels. The long seismic wavelengths relative to the total path lengths and the size of subsurface heterogeneities of typical near-surface data means the improvements over ray theory tomography are significant. The benefits of FDTT are demonstrated using conventional minimum-structure regularization techniques to address the issue of model non-uniqueness. For synthetic data, the estimated FDTT models are shown to be more accurate than the corresponding infinite-frequency-derived models. Both 2-D and 3-D applications of FDTT to real data from a near-surface study yield estimated models that contain more structure than the corresponding infinite-frequency-derived models. Applications of FDTT without regularization demonstrate the potential of the WDVS-derived sensitivity kernels to provide a natural smoothing of the velocity model and thereby allow the data alone to determine the final model structure.
    Keywords: Seismology
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  • 178
    Publication Date: 2016-08-11
    Description: Author(s): Tony E. Lee, Yogesh N. Joglekar, and Philip Richerme We study the transverse-field Ising model with interactions that are modulated in time. In a rotating frame, the system is described by a time-independent Hamiltonian with many-body interactions, similar to the cluster Hamiltonians of measurement-based quantum computing. In one dimension, there is a… [Phys. Rev. A 94, 023610] Published Tue Aug 09, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 179
    Publication Date: 2016-08-11
    Description: Author(s): Bihui Zhu, John Cooper, Jun Ye, and Ana Maria Rey Light shifts in a cold atomic medium are studied using a microscopic coherent dipole model, a random walk model, and a semiclassical model that directly accounts for motional effects. However, even with the motion of the atoms considered, the current models still fall short of explaining the large density-dependent light shifts measured with 88 Sr atoms. [Phys. Rev. A 94, 023612] Published Tue Aug 09, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 180
    Publication Date: 2016-08-11
    Description: Author(s): Dimitris Trypogeorgos and Christopher J. Foot We consider the stability of systems subjected to periodic parametric driving in the context of ions confined by oscillating electric fields. The behavior of these systems can be understood in terms of a pseudopotential approximation and resonances arising from parametric excitation. We investigate … [Phys. Rev. A 94, 023609] Published Tue Aug 09, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 181
    Publication Date: 2016-08-11
    Description: Author(s): R. O. Umucalılar and M. Iskin We consider a Fermi gas that is loaded onto a square optical lattice and subjected to a perpendicular artificial magnetic field, and determine its superfluid transition boundary by adopting a BCS-like mean-field approach in momentum space. The multiband structure of the single-particle Hofstadter sp… [Phys. Rev. A 94, 023611] Published Tue Aug 09, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 182
    Publication Date: 2016-08-16
    Description: Author(s): Jiahao Huang (黄嘉豪), Pu Gong (龚璞), Xizhou Qin (秦锡洲), Honghua Zhong (钟宏华), and Chaohong Lee (李朝红) We explore the asymmetric sequential Landau-Zener (LZ) dynamics in an ensemble of interacting Bose-condensed two-level atoms coupled with a cavity field. Assuming the couplings between all atoms and the cavity field are identical, the interplay between atom-atom interaction and detuning may lead to … [Phys. Rev. A 94, 023618] Published Mon Aug 15, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 183
    Publication Date: 2016-08-16
    Description: Author(s): Daniel J. Owens, Ting Xie, and Jeremy M. Hutson We show that radio-frequency (rf) radiation may be used to create Feshbach resonances in ultracold gases of alkali-metal atoms at desired magnetic fields that are convenient for atomic cooling and degeneracy. For the case of K 39 + Cs 133 , where there are no rf-free resonances in regions where Cs may be… [Phys. Rev. A 94, 023619] Published Mon Aug 15, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 184
    Publication Date: 2016-08-17
    Description: We analysed a catalogue of Italian earthquakes, covering 55 yr of data from 1960 to 2014 with magnitudes homogeneously converted to M w , to compute the time-dependent relative frequencies with which strong seismic shocks (4.0 ≤ M w 〈 5.0), widely felt by the population, have been followed by main shocks ( M w ≥ 5.0) that threatened the health and the properties of the persons living in the epicentral area. Assuming the stationarity of the seismic release properties, such frequencies are estimates of the probabilities of potentially destructive shocks after the occurrence of future strong shocks. We compared them with the time-independent relative frequencies of random occurrence in terms of the frequency gain that is the ratio between the time-dependent and time-independent relative frequencies. The time-dependent relative frequencies vary from less than 1 per cent to about 20 per cent, depending on the magnitudes of the shocks and the time windows considered (ranging from minutes to years). They remain almost constant for a few hours after the strong shock and then decrease with time logarithmically. Strong earthquakes (with M w ≥ 6.0) mainly occurred within two or three months of the strong shock. The frequency gains vary from about 10 000 for very short time intervals to less than 10 for a time interval of 2 yr. Only about 1/3 of main shocks were preceded by at least a strong shock in the previous day and about 1/2 in the previous month.
    Keywords: Seismology
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  • 185
    Publication Date: 2016-08-18
    Description: Author(s): Joshua L. Hemmerich, Robert Bennett, Thomas Reisinger, Stefan Nimmrichter, Johannes Fiedler, Horst Hahn, Herbert Gleiter, and Stefan Yoshi Buhmann Diffraction of matter waves is an important demonstration of the fact that objects in nature possess a mixture of particlelike and wavelike properties. Unlike in the case of light diffraction, matter waves are subject to a vacuum-mediated interaction with diffraction obstacles. Here we present a det… [Phys. Rev. A 94, 023621] Published Wed Aug 17, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 186
    Publication Date: 2016-08-12
    Description: Author(s): D. Baillie, R. M. Wilson, R. N. Bisset, and P. B. Blakie A general theory is developed to explain the recently observed, surprisingly stable quantum droplets formed in dipolar Bose-Einstein condensates; the theory further predicts a phase diagram for the stability with changes in the particle number and the interaction strengths. [Phys. Rev. A 94, 021602(R)] Published Thu Aug 11, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 187
    Publication Date: 2016-08-24
    Description: Author(s): Sooshin Kim, Sang Won Seo, Heung-Ryoul Noh, and Y. Shin We report our study of the optical pumping effect in absorption imaging of Na 23 atoms in the F = 1 hyperfine spin states. Solving a set of rate equations for the spin populations in the presence of a probe beam, we obtain an analytic expression for the optical signal of the F = 1 absorption imaging. Fur… [Phys. Rev. A 94, 023625] Published Mon Aug 22, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 188
    Publication Date: 2016-08-24
    Description: Author(s): Aijun Li, Stephen Eckel, Benjamin Eller, Kayla E. Warren, Charles W. Clark, and Mark Edwards We simulate transport in an atomtronic circuit of a Bose-Einstein condensate that flows from a source region into a drain through a gate channel. The time-dependent Gross-Pitaevskii equation (GPE) solution matches the data of a recent experiment. The atomtronic circuit is found to be similar to a va… [Phys. Rev. A 94, 023626] Published Mon Aug 22, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 189
    Publication Date: 2016-08-26
    Description: Author(s): M. C. Tsatsos, M. J. Edmonds, and N. G. Parker Motivated by recent experiments, we study theoretically the dynamics of vortices in the crossover from two dimensions to one in atomic condensates in elongated traps. We explore the transition from the dynamics of a vortex to that of a dark soliton as the one-dimensional limit is approached, mapping… [Phys. Rev. A 94, 023627] Published Wed Aug 24, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 190
    Publication Date: 2016-08-26
    Description: Author(s): Patrick Navez, Friedemann Queisser, and Ralf Schützhold The expansion of the partition function for large coordination number Z is a long-standing method and has formerly been used to describe the Ising model at finite temperatures. We extend this approach and study the interacting Bose gas at finite temperatures. An analytical expression for the free en… [Phys. Rev. A 94, 023629] Published Thu Aug 25, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
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  • 191
    Publication Date: 2016-08-27
    Description: We present the first high-resolution Rayleigh-wave phase-velocity azimuthal anisotropy tomography of the Japan subduction zone at periods of 20–150 s, which is determined using a large number of high-quality amplitude and phase data of teleseismic fundamental-mode Rayleigh waves. The obtained 2-D anisotropic phase-velocity models are then inverted for a 3-D shear-wave velocity azimuthal anisotropy tomography down to a depth of ~300 km beneath Japan. The subducting Pacific slab is imaged as a dipping high-velocity zone with trench-parallel fast-velocity directions (FVDs) which may indicate the anisotropy arising from the normal faults produced at the outer-rise area near the Japan trench axis, overprinting the slab fossil fabric, whereas the mantle wedge generally exhibits lower velocities with trench-normal FVDs which reflect subduction-driven corner flow and anisotropy. Depth variations of azimuthal anisotropy are revealed in the big mantle wedge beneath the Japan Sea, which may reflect past deformations in the Eurasian lithosphere related to backarc spreading during 21 to 15 Ma and complex current convection in the asthenosphere induced by active subductions of both the Pacific and Philippine Sea plates.
    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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  • 192
    Publication Date: 2016-08-29
    Description: Markov chain Monte Carlo sampling methods are widely used for non-linear Bayesian inversion where no analytical expression for the forward relation between data and model parameters is available. Contrary to the linear(ized) approaches, they naturally allow to evaluate the uncertainties on the model found. Nevertheless their use is problematic in high-dimensional model spaces especially when the computational cost of the forward problem is significant and/or the a posteriori distribution is multimodal. In this case, the chain can stay stuck in one of the modes and hence not provide an exhaustive sampling of the distribution of interest. We present here a still relatively unknown algorithm that allows interaction between several Markov chains at different temperatures. These interactions (based on importance resampling) ensure a robust sampling of any posterior distribution and thus provide a way to efficiently tackle complex fully non-linear inverse problems. The algorithm is easy to implement and is well adapted to run on parallel supercomputers. In this paper, the algorithm is first introduced and applied to a synthetic multimodal distribution in order to demonstrate its robustness and efficiency compared to a simulated annealing method. It is then applied in the framework of first arrival traveltime seismic tomography on real data recorded in the context of hydraulic fracturing. To carry out this study a wavelet-based adaptive model parametrization has been used. This allows to integrate the a priori information provided by sonic logs and to reduce optimally the dimension of the problem.
    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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  • 193
    Publication Date: 2016-08-30
    Description: Author(s): N. Dogra, F. Brennecke, S. D. Huber, and T. Donner We study a system with competing short- and global-range interactions in the framework of the Bose-Hubbard model. Using a mean-field approximation we obtain the phase diagram of the system and observe four different phases: a superfluid, a supersolid, a Mott insulator, and a charge-density wave, whe… [Phys. Rev. A 94, 023632] Published Mon Aug 29, 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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  • 194
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    American Physical Society (APS)
    Publication Date: 2016-08-30
    Description: Author(s): Krzysztof Sacha and Dominique Delande In analogy with the usual Anderson localization taking place in time-independent disordered quantum systems where the disorder acts in configuration space, systems exposed to temporally disordered potentials can display Anderson localization in the time domain. We demonstrate this phenomenon with on… [Phys. Rev. A 94, 023633] Published Mon Aug 29, 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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  • 195
    Publication Date: 2016-06-11
    Description: Author(s): Stefan S. Natu, Erich J. Mueller, and S. Das Sarma Using an efficient cluster approach, we study the physics of two-dimensional lattice bosons in a strong magnetic field in the regime where the tunneling is much weaker than the on-site interaction strength. We study both the dilute, hard-core bosons at filling factors much smaller than unity occupat… [Phys. Rev. A 93, 063610] Published Fri Jun 10, 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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  • 196
    Publication Date: 2016-06-11
    Description: Author(s): Kai Walter, Benjamin A. Stickler, and Klaus Hornberger The quantum state of motion of a large and rotating polar molecule can lose coherence through the collisions with gas atoms. We show how the associated quantum master equation for the center of mass can be expressed in terms of the orientationally averaged differential and total scattering cross sec… [Phys. Rev. A 93, 063612] Published Fri Jun 10, 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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  • 197
    Publication Date: 2016-06-13
    Description: Using data from more than 2000 seismic stations from multiple networks arrayed throughout China (CEArray, China Array, NECESS, PASSCAL, GSN) and surrounding regions (Korean Seismic Network, F-Net, KNET), we perform ambient noise Rayleigh wave tomography across the entire region and earthquake tomography across parts of South China and Northeast China. We produce isotropic Rayleigh wave group and phase speed maps with uncertainty estimates from 8 to 50 s period across the entire region of study, and extend them to 70 s period where earthquake tomography is performed. Maps of azimuthal anisotropy are estimated simultaneously to minimize anisotropic bias in the isotropic maps, but are not discussed here. The 3D model is produced using a Bayesian Monte Carlo formalism covering all of China, extending eastwards through the Korean Peninsula, into the marginal seas, to Japan. We define the final model as the mean and standard deviation of the posterior distribution at each location on a 0.5° x 0.5° grid from the surface to 150 km depth. Surface wave dispersion data do not strongly constrain internal interfaces, but shear wave speeds between the discontinuities in the crystalline crust and uppermost mantle are well determined. We design the resulting model as a reference model, which is intended to be useful to other researchers as a starting model, to predict seismic wave fields and observables and to predict other types of data (e.g. topography, gravity). The model and the data on which it is based are available for download. In addition, the model displays a great variety and considerable richness of geological and tectonic features in the crust and in the uppermost mantle deserving of further focus and continued interpretation.
    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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  • 198
    Publication Date: 2016-06-14
    Description: Author(s): Johannes Hofmann, Alejandro M. Lobos, and Victor Galitski We develop a quantitative analytic theory that accurately describes the odd-even effect observed experimentally in a one-dimensional, trapped Fermi gas with a small number of particles [G. Zürn et al. , Phys. Rev. Lett. 111 , 175302 (2013) ]. We find that the underlying physics is similar to the parit… [Phys. Rev. A 93, 061602(R)] Published Mon Jun 13, 2016
    Keywords: Matter waves and collective properties of cold atoms and molecules
    Print ISSN: 1050-2947
    Electronic ISSN: 1094-1622
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  • 199
    Publication Date: 2016-06-14
    Description: Author(s): Lei Jiang, Chunlei Qu, and Chuanwei Zhang The recent experimental realization of one-dimensional (1D) equal Rashba-Dresselhaus spin-orbit coupling (ERD-SOC) for cold atoms provides a disorder-free and highly controllable platform for the implementation and observation of Majorana fermions (MFs), analogous to the broadly studied solid-state … [Phys. Rev. A 93, 063614] Published Mon Jun 13, 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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  • 200
    Publication Date: 2016-06-14
    Description: Author(s): Shuyu Zhou, David Groswasser, Mark Keil, Yonathan Japha, and Ron Folman We study spatial coherence near a classical environment by loading a Bose-Einstein condensate into a magnetic lattice potential and observing diffraction. Even very close to a surface ( 5 μ m ), and even when the surface is at room temperature, spatial coherence persists for a relatively long time ( ≥ 500 … [Phys. Rev. A 93, 063615] Published Mon Jun 13, 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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