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EDITORIALS AND ANNOUNCEMENTS

Editorial: From the APS Editor in Chief

Pierre Meystre

Phys. Rev. B 95, 050001 (2017) - Published 1 February, 2017

HIGHLIGHTED ARTICLES

Hyperuniformity of quasicrystals

Erdal C. Oğuz, Joshua E. S. Socolar, Paul J. Steinhardt, and Salvatore Torquato

Phys. Rev. B 95, 054119 (2017) - Published 23 February, 2017

The authors present a method for characterizing the hyperuniformity (the suppression of density fluctuations at long wavelengths) for quasicrystals (and other structures whose diffraction pattern includes a dense set of Bragg peaks) based on determining the behavior of the integrated spectral intensity Z(k) for small wavenumber k. Surprisingly, we find that quasicrystals with peaks at the same wavenumbers k can have different behavior for Z(k) and, hence, qualitatively different degrees of hyperuniformity. This effect has never been explored in the laboratory. The figure shows a one-dimensional example: two “sidewalks” with different widths (pitched at an incommensurate angle) built on a lawn with a square crystal pattern of spots. The construction rule is that, every time the sidewalk crosses a spot, the sidewalk slab is cut and a new one begins. This rule guarantees both sidewalks are quasicrystalline. But the upper one (a Fibonacci sidewalk) has a different degree of hyperuniformity than the lower one.

Characterizing many-body localization by out-of-time-ordered correlation

Rong-Qiang He and Zhong-Yi Lu

Phys. Rev. B 95, 054201 (2017) - Published 10 February, 2017

The out-of-time-ordered (OTO) correlation is unconventional. It is a key quantity for quantifying quantum chaoticity and has been recently used in the investigation of quantum holography. On the other hand, it is difficult to reveal and understand the special features of many-body localization (MBL) by conventional quantities and methods. Here, the authors demonstrate that OTO correlation can provide a pertinent and comprehensive description for MBL. It readily reveals the special logarithmic dynamics of MBL, distinguishes MBL sharply from Anderson localization as well as ergodic states, and allows accurate extraction of localization lengths for MBL. The divergence of the localization length at a finite interaction predicts an ergodic-MBL transition. Furthermore, the infinite-time “thermal” fluctuation of the OTO correlation is zero (finite) in the ergodic (MBL) phase and thus can be considered as an order parameter for the ergodic-MBL transition, through which the transition can be identified and characterized. Specifically, the critical point and related critical exponents can be calculated.

Partial breakdown of quantum thermalization in a Hubbard-like model

James R. Garrison, Ryan V. Mishmash, and Matthew P. A. Fisher

Phys. Rev. B 95, 054204 (2017) - Published 17 February, 2017

In recent years, physicists have made great strides toward better understanding isolated many-body quantum systems. Already, two distinct phases are well known: systems that are ergodic and thermalize completely, and, by contrast, systems that exhibit many-body localization (MBL) due to a strong disorder potential, which prevents thermalization. It is tempting to wonder whether a phase of matter could exist between the extremes of full thermalization and MBL in a generic, i.e., nonintegrable, isolated many-body quantum system. Here, the authors provide evidence that such a nonergodic phase can be realized in a translationally invariant itinerant electron model, with both charge and spin degrees of freedom. Exact diagonalization calculations on finite system sizes reveal that there exists a “spin band” of nonthermal eigenstates. These states have entanglement entropy that scales as an overall “volume law,” but after a partial measurement of the spin on each site the scaling is modified to an “area law,” thus suggesting the states are not ergodic. These properties and others suggest that this model realizes a new nonthermal phase of matter, known as a quantum disentangled liquid (QDL). The putative existence of this phase has striking implications for the foundations of quantum statistical mechanics.

Ultrafast generation of skyrmionic defects with vortex beams: Printing laser profiles on magnets

Hiroyuki Fujita and Masahiro Sato

Phys. Rev. B 95, 054421 (2017) - Published 16 February, 2017

Laser beams carrying orbital angular momentum (OAM), first proposed by Allen et al. in 1992, is one of hottest research subjects in modern optics. Such a beam, called an optical vortex, is used to realize superresolution microscopes, chiral optical ablation, optical tweezers, and so on. More recently, electron beams with nonzero OAM are also proposed and experimentally realized. In spite of the growing attention towards such “vortex beams”, their applications for condensed matter physics are almost untapped so far, especially for controlling microscopic electronic and magnetic degrees of freedom in solids. Here, the authors show theoretically that vortex beams can be useful for controlling magnetic properties of solids. In particular, they focus on chiral ferromagnets and antiferromagnets where topologically stable magnetic defects (skyrmions) appear. On the basis of numerical simulations using the stochastic Landau-Lifshitz-Gilbert equation, they show that via the laser-beam-induced spatially nonuniform temperature changes, the characteristic donut-shaped spatial profile of vortex beams can be faithfully transferred to magnets as a family of magnetic defects (nπ vortices), which include skyrmions and skyrmioniums.

ARTICLES

Structure, structural phase transitions, mechanical properties, defects

Phase diagram of boron carbide with variable carbon composition

Sanxi Yao, Qin Gao, and Michael Widom

Phys. Rev. B 95, 054101 (2017) - Published 3 February, 2017

High-pressure melting behavior of tin up to 105 GPa

R. Briggs, D. Daisenberger, O. T. Lord, A. Salamat, E. Bailey, M. J. Walter, and P. F. McMillan

Phys. Rev. B 95, 054102 (2017) - Published 3 February, 2017

Geometrically frustrated GdInO3: An exotic system to study negative thermal expansion and spin-lattice coupling

Barnita Paul, Swastika Chatterjee, Anushree Roy, A. Midya, P. Mandal, Vinita Grover, and A. K. Tyagi

Phys. Rev. B 95, 054103 (2017) - Published 6 February, 2017

Polaronic interactions between oxygen vacancies in rutile TiO2

Liang Zhao, Blanka Magyari-Köpe, and Yoshio Nishi

Phys. Rev. B 95, 054104 (2017) - Published 6 February, 2017

New high-pressure phases of MoSe2 and MoTe2

Oto Kohulák and Roman Martoňák

Phys. Rev. B 95, 054105 (2017) - Published 7 February, 2017

Temperature-dependent band structure of SrTiO3 interfaces

Amany Raslan, Patrick Lafleur, and W. A. Atkinson

Phys. Rev. B 95, 054106 (2017) - Published 7 February, 2017

Influence of the ferroelectric quantum critical point on SrTiO3 interfaces

W. A. Atkinson, P. Lafleur, and A. Raslan

Phys. Rev. B 95, 054107 (2017) - Published 7 February, 2017

Role of weakest links and system-size scaling in multiscale modeling of stochastic plasticity

Péter Dusán Ispánovity, Dániel Tüzes, Péter Szabó, Michael Zaiser, and István Groma

Phys. Rev. B 95, 054108 (2017) - Published 9 February, 2017

Quasilossless acoustic transmission in an arbitrary pathway of a network

Hongqing Dai, Tingting Liu, Baizhan Xia, and Dejie Yu

Phys. Rev. B 95, 054109 (2017) - Published 10 February, 2017

Unveiling descriptors for predicting the bulk modulus of amorphous carbon

Keisuke Takahashi and Yuzuru Tanaka

Phys. Rev. B 95, 054110 (2017) - Published 14 February, 2017

Accuracy of first-principles interatomic interactions and predictions of ferroelectric phase transitions in perovskite oxides: Energy functional and effective Hamiltonian

Arpita Paul, Jianwei Sun, John P. Perdew, and Umesh V. Waghmare

Phys. Rev. B 95, 054111 (2017) - Published 15 February, 2017

Atomistic calculations of dislocation core energy in aluminium

X. W. Zhou, R. B. Sills, D. K. Ward, and R. A. Karnesky

Phys. Rev. B 95, 054112 (2017) - Published 16 February, 2017

High-temperature and high-pressure phase transitions in uranium

J. Bouchet and F. Bottin

Phys. Rev. B 95, 054113 (2017) - Published 17 February, 2017

Local structure of the crystalline and amorphous states of Ga2Te3 phase-change alloy without resonant bonding: A combined x-ray absorption and ab initio study

A. V. Kolobov, P. Fons, M. Krbal, K. Mitrofanov, J. Tominaga, and T. Uruga

Phys. Rev. B 95, 054114 (2017) - Published 17 February, 2017

Anomalous lattice compression and magnetic ordering in CuO at high pressures: A structural study and first-principles calculations

D. P. Kozlenko, K. Drużbicki, S. E. Kichanov, E. V. Lukin, H.-P. Liermann, K. V. Glazyrin, and B. N. Savenko

Phys. Rev. B 95, 054115 (2017) - Published 17 February, 2017

Influence of local strain heterogeneity on high piezoelectricity in 0.5Ba(Zr0.2Ti0.8)O30.5(Ba0.7Ca0.3)TiO3 ceramics

Le Zhang, Xiaobing Ren, and Michael A. Carpenter

Phys. Rev. B 95, 054116 (2017) - Published 21 February, 2017

Anomalous Hall effects beyond Berry magnetic fields in a Weyl metal phase

Iksu Jang, Jae-Ho Han, and Ki-Seok Kim

Phys. Rev. B 95, 054117 (2017) - Published 21 February, 2017

High-pressure phases of group-II difluorides: Polymorphism and superionicity

Joseph R. Nelson, Richard J. Needs, and Chris J. Pickard

Phys. Rev. B 95, 054118 (2017) - Published 21 February, 2017

Hyperuniformity of quasicrystals

Erdal C. Oğuz, Joshua E. S. Socolar, Paul J. Steinhardt, and Salvatore Torquato

Phys. Rev. B 95, 054119 (2017) - Published 23 February, 2017

The authors present a method for characterizing the hyperuniformity (the suppression of density fluctuations at long wavelengths) for quasicrystals (and other structures whose diffraction pattern includes a dense set of Bragg peaks) based on determining the behavior of the integrated spectral intensity Z(k) for small wavenumber k. Surprisingly, we find that quasicrystals with peaks at the same wavenumbers k can have different behavior for Z(k) and, hence, qualitatively different degrees of hyperuniformity. This effect has never been explored in the laboratory. The figure shows a one-dimensional example: two “sidewalks” with different widths (pitched at an incommensurate angle) built on a lawn with a square crystal pattern of spots. The construction rule is that, every time the sidewalk crosses a spot, the sidewalk slab is cut and a new one begins. This rule guarantees both sidewalks are quasicrystalline. But the upper one (a Fibonacci sidewalk) has a different degree of hyperuniformity than the lower one.

Hydrogen-related excitons and their excited-state transitions in ZnO

R. Heinhold, A. Neiman, J. V. Kennedy, A. Markwitz, R. J. Reeves, and M. W. Allen

Phys. Rev. B 95, 054120 (2017) - Published 23 February, 2017

Intrinsic versus extrinsic effects of the grain boundary on the properties of ferroelectric nanoceramics

Yu Su, Hui Kang, Yang Wang, Jackie Li, and George J. Weng

Phys. Rev. B 95, 054121 (2017) - Published 24 February, 2017

Inhomogeneous, disordered, and partially ordered systems

Characterizing many-body localization by out-of-time-ordered correlation

Rong-Qiang He and Zhong-Yi Lu

Phys. Rev. B 95, 054201 (2017) - Published 10 February, 2017

The out-of-time-ordered (OTO) correlation is unconventional. It is a key quantity for quantifying quantum chaoticity and has been recently used in the investigation of quantum holography. On the other hand, it is difficult to reveal and understand the special features of many-body localization (MBL) by conventional quantities and methods. Here, the authors demonstrate that OTO correlation can provide a pertinent and comprehensive description for MBL. It readily reveals the special logarithmic dynamics of MBL, distinguishes MBL sharply from Anderson localization as well as ergodic states, and allows accurate extraction of localization lengths for MBL. The divergence of the localization length at a finite interaction predicts an ergodic-MBL transition. Furthermore, the infinite-time “thermal” fluctuation of the OTO correlation is zero (finite) in the ergodic (MBL) phase and thus can be considered as an order parameter for the ergodic-MBL transition, through which the transition can be identified and characterized. Specifically, the critical point and related critical exponents can be calculated.

Interfacial free energy and medium range order: Proof of an inverse of Frank's hypothesis

Geun Woo Lee, Yong Chan Cho, Byeongchan Lee, and Kenneth F. Kelton

Phys. Rev. B 95, 054202 (2017) - Published 13 February, 2017

Theory of harmonic dissipation in disordered solids

T. Damart, A. Tanguy, and D. Rodney

Phys. Rev. B 95, 054203 (2017) - Published 13 February, 2017

Partial breakdown of quantum thermalization in a Hubbard-like model

James R. Garrison, Ryan V. Mishmash, and Matthew P. A. Fisher

Phys. Rev. B 95, 054204 (2017) - Published 17 February, 2017

In recent years, physicists have made great strides toward better understanding isolated many-body quantum systems. Already, two distinct phases are well known: systems that are ergodic and thermalize completely, and, by contrast, systems that exhibit many-body localization (MBL) due to a strong disorder potential, which prevents thermalization. It is tempting to wonder whether a phase of matter could exist between the extremes of full thermalization and MBL in a generic, i.e., nonintegrable, isolated many-body quantum system. Here, the authors provide evidence that such a nonergodic phase can be realized in a translationally invariant itinerant electron model, with both charge and spin degrees of freedom. Exact diagonalization calculations on finite system sizes reveal that there exists a “spin band” of nonthermal eigenstates. These states have entanglement entropy that scales as an overall “volume law,” but after a partial measurement of the spin on each site the scaling is modified to an “area law,” thus suggesting the states are not ergodic. These properties and others suggest that this model realizes a new nonthermal phase of matter, known as a quantum disentangled liquid (QDL). The putative existence of this phase has striking implications for the foundations of quantum statistical mechanics.

As2Te3 glass under high hydrostatic pressure: Polyamorphism, relaxation, and metallization

V. V. Brazhkin, E. Bychkov, and O. B. Tsiok

Phys. Rev. B 95, 054205 (2017) - Published 22 February, 2017

Dynamics, dynamical systems, lattice effects

Pressure-induced low-lying phonon modes softening and enhanced thermal resistance in βMg2Al4Si5O18

Yiran Li, Zhilin Tian, Yixiu Luo, Jiemin Wang, Luchao Sun, Liya Zheng, and Jingyang Wang

Phys. Rev. B 95, 054301 (2017) - Published 1 February, 2017

Coherent and incoherent structural dynamics in laser-excited antimony

Lutz Waldecker, Thomas Vasileiadis, Roman Bertoni, Ralph Ernstorfer, Tobias Zier, Felipe H. Valencia, Martin E. Garcia, and Eeuwe S. Zijlstra

Phys. Rev. B 95, 054302 (2017) - Published 1 February, 2017

Absence of many-body localization in a single Landau level

Scott D. Geraedts and R. N. Bhatt

Phys. Rev. B 95, 054303 (2017) - Published 2 February, 2017

Glassy dynamics in CuMn thin-film multilayers

Qiang Zhai, David C. Harrison, Daniel Tennant, E. Dan Dahlberg, Gregory G. Kenning, and Raymond L. Orbach

Phys. Rev. B 95, 054304 (2017) - Published 6 February, 2017

Role of the temperature dynamics in formation of nanopatterns upon single femtosecond laser pulses on gold

Evgeny L. Gurevich, Yoann Levy, Svetlana V. Gurevich, and Nadezhda M. Bulgakova

Phys. Rev. B 95, 054305 (2017) - Published 8 February, 2017

Lattice dynamics and thermal transport in multiferroic CuCrO2

Dipanshu Bansal, Jennifer L. Niedziela, Andrew F. May, Ayman Said, Georg Ehlers, Douglas L. Abernathy, Ashfia Huq, Melanie Kirkham, Haidong Zhou, and Olivier Delaire

Phys. Rev. B 95, 054306 (2017) - Published 9 February, 2017

Topology of a dissipative spin: Dynamical Chern number, bath-induced nonadiabaticity, and a quantum dynamo effect

Loïc Henriet, Antonio Sclocchi, Peter P. Orth, and Karyn Le Hur

Phys. Rev. B 95, 054307 (2017) - Published 15 February, 2017

Correlations and diagonal entropy after quantum quenches in XXZ chains

Lorenzo Piroli, Eric Vernier, Pasquale Calabrese, and Marcos Rigol

Phys. Rev. B 95, 054308 (2017) - Published 23 February, 2017

Magnetism

Identification of a Griffiths singularity in a geometrically frustrated antiferromagnet

Jitender Kumar, Soumendra Nath Panja, Shanu Dengre, and Sunil Nair

Phys. Rev. B 95, 054401 (2017) - Published 1 February, 2017

Dynamical quantum phase transitions in presence of a spin bath

Á. Gómez-León and P. C. E. Stamp

Phys. Rev. B 95, 054402 (2017) - Published 1 February, 2017

Monte Carlo simulations of the disordered three-color quantum Ashkin-Teller chain

Ahmed K. Ibrahim and Thomas Vojta

Phys. Rev. B 95, 054403 (2017) - Published 1 February, 2017

Interplay of nonsymmorphic symmetry and spin-orbit coupling in hyperkagome spin liquids: Applications to Na4Ir3O8

Biao Huang, Yong Baek Kim, and Yuan-Ming Lu

Phys. Rev. B 95, 054404 (2017) - Published 1 February, 2017

Anomalous spin dynamics in the coupled spin tetramer system CuSeO3

S. Lee, W.-J. Lee, J. van Tol, P. L. Kuhns, A. P. Reyes, H. Berger, and K.-Y. Choi

Phys. Rev. B 95, 054405 (2017) - Published 2 February, 2017

Local structure and magnetism of Co3+ in wurtzite Co:ZnO

Bastian Henne, Verena Ney, Julia Lumetzberger, Katharina Ollefs, Fabrice Wilhelm, Andrei Rogalev, and Andreas Ney

Phys. Rev. B 95, 054406 (2017) - Published 3 February, 2017

Experimental evidence for field-induced emergent clock anisotropies in the XY pyrochlore Er2Ti2O7

J. Gaudet, A. M. Hallas, J. Thibault, N. P. Butch, H. A. Dabkowska, and B. D. Gaulin

Phys. Rev. B 95, 054407 (2017) - Published 6 February, 2017

Crystal electric field excitations in the quasicrystal approximant TbCd6 studied by inelastic neutron scattering

Pinaki Das, P.-F. Lory, R. Flint, T. Kong, T. Hiroto, S. L. Bud'ko, P. C. Canfield, M. de Boissieu, A. Kreyssig, and A. I. Goldman

Phys. Rev. B 95, 054408 (2017) - Published 7 February, 2017

Spin pseudogap in the S=12 chain material Sr2CuO3 with impurities

G. Simutis, S. Gvasaliya, N. S. Beesetty, T. Yoshida, J. Robert, S. Petit, A. I. Kolesnikov, M. B. Stone, F. Bourdarot, H. C. Walker, D. T. Adroja, O. Sobolev, C. Hess, T. Masuda, A. Revcolevschi, B. Büchner, and A. Zheludev

Phys. Rev. B 95, 054409 (2017) - Published 7 February, 2017

Quantum spin liquid in a breathing kagome lattice

Robert Schaffer, Yejin Huh, Kyusung Hwang, and Yong Baek Kim

Phys. Rev. B 95, 054410 (2017) - Published 8 February, 2017

Thermally induced magnon accumulation in two-sublattice magnets

Ulrike Ritzmann, Denise Hinzke, and Ulrich Nowak

Phys. Rev. B 95, 054411 (2017) - Published 8 February, 2017

DFT investigation of the effect of spin-orbit coupling on the NMR shifts in paramagnetic solids

Roberta Pigliapochi, Andrew J. Pell, Ieuan D. Seymour, Clare P. Grey, Davide Ceresoli, and Martin Kaupp

Phys. Rev. B 95, 054412 (2017) - Published 8 February, 2017

Non-Fermi surface nesting driven commensurate magnetic ordering in Fe-doped Sr2RuO4

M. Zhu, K. V. Shanavas, Y. Wang, T. Zou, W. F. Sun, W. Tian, V. O. Garlea, A. Podlesnyak, M. Matsuda, M. B. Stone, D. Keavney, Z. Q. Mao, D. J. Singh, and X. Ke

Phys. Rev. B 95, 054413 (2017) - Published 10 February, 2017

G-type magnetic order in ferropnictide CuxFe1yAs induced by hole doping on As sites

T. Zou, C. C. Lee, W. Tian, H. B. Cao, M. Zhu, B. Qian, C. R. dela Cruz, W. Ku, Z. Q. Mao, and X. Ke

Phys. Rev. B 95, 054414 (2017) - Published 10 February, 2017

Evolution of structure, magnetism, and electronic transport in the doped pyrochlore iridate Y2Ir2xRuxO7

Harish Kumar, R. S. Dhaka, and A. K. Pramanik

Phys. Rev. B 95, 054415 (2017) - Published 13 February, 2017

Relaxation mechanism in NiFe thin films driven by spin angular momentum absorption throughout the antiferromagnetic phase transition in native surface oxides

L. Frangou, G. Forestier, S. Auffret, S. Gambarelli, and V. Baltz

Phys. Rev. B 95, 054416 (2017) - Published 14 February, 2017

NMR investigation of spin fluctuations in the itinerant-electron magnetic compound Sr1xCaxCo2P2

Masaki Imai, Chishiro Michioka, Hiroaki Ueda, and Kazuyoshi Yoshimura

Phys. Rev. B 95, 054417 (2017) - Published 15 February, 2017

Functional renormalization group analysis of Dzyaloshinsky-Moriya and Heisenberg spin interactions on the kagome lattice

Max Hering and Johannes Reuther

Phys. Rev. B 95, 054418 (2017) - Published 15 February, 2017

Impurities near an antiferromagnetic-singlet quantum critical point

T. Mendes-Santos, N. C. Costa, G. Batrouni, N. Curro, R. R. dos Santos, T. Paiva, and R. T. Scalettar

Phys. Rev. B 95, 054419 (2017) - Published 15 February, 2017

Temperature-induced phase transition from cycloidal to collinear antiferromagnetism in multiferroic Bi0.9Sm0.1FeO3 driven by fd induced magnetic anisotropy

R. D. Johnson, P. A. McClarty, D. D. Khalyavin, P. Manuel, P. Svedlindh, and C. S. Knee

Phys. Rev. B 95, 054420 (2017) - Published 15 February, 2017

Ultrafast generation of skyrmionic defects with vortex beams: Printing laser profiles on magnets

Hiroyuki Fujita and Masahiro Sato

Phys. Rev. B 95, 054421 (2017) - Published 16 February, 2017

Laser beams carrying orbital angular momentum (OAM), first proposed by Allen et al. in 1992, is one of hottest research subjects in modern optics. Such a beam, called an optical vortex, is used to realize superresolution microscopes, chiral optical ablation, optical tweezers, and so on. More recently, electron beams with nonzero OAM are also proposed and experimentally realized. In spite of the growing attention towards such “vortex beams”, their applications for condensed matter physics are almost untapped so far, especially for controlling microscopic electronic and magnetic degrees of freedom in solids. Here, the authors show theoretically that vortex beams can be useful for controlling magnetic properties of solids. In particular, they focus on chiral ferromagnets and antiferromagnets where topologically stable magnetic defects (skyrmions) appear. On the basis of numerical simulations using the stochastic Landau-Lifshitz-Gilbert equation, they show that via the laser-beam-induced spatially nonuniform temperature changes, the characteristic donut-shaped spatial profile of vortex beams can be faithfully transferred to magnets as a family of magnetic defects (nπ vortices), which include skyrmions and skyrmioniums.

Spin transfer and spin-orbit torques in in-plane magnetized (Ga,Mn)As tracks

L. Thevenard, B. Boutigny, N. Güsken, L. Becerra, C. Ulysse, S. Shihab, A. Lemaître, J.-V. Kim, V. Jeudy, and C. Gourdon

Phys. Rev. B 95, 054422 (2017) - Published 16 February, 2017

Spintronic detection of interfacial magnetic switching in a paramagnetic thin film of tris(8-hydroxyquinoline)iron(III)

Dali Sun, Christopher M. Kareis, Kipp J. van Schooten, Wei Jiang, Gene Siegel, Marzieh Kavand, Royce A. Davidson, William W. Shum, Chuang Zhang, Haoliang Liu, Ashutosh Tiwari, Christoph Boehme, Feng Liu, Peter W. Stephens, Joel S. Miller, and Z. Valy Vardeny

Phys. Rev. B 95, 054423 (2017) - Published 17 February, 2017

Domain walls in finite-width nanowires with interfacial Dzyaloshinskii-Moriya interaction

M. D. DeJong and K. L. Livesey

Phys. Rev. B 95, 054424 (2017) - Published 17 February, 2017

Influence of lattice structure on multipole interactions in Γ3 non-Kramers doublet systems

Katsunori Kubo and Takashi Hotta

Phys. Rev. B 95, 054425 (2017) - Published 21 February, 2017

Longitudinal spin fluctuation contribution to thermal lattice expansion of paramagnetic Fe

Zhihua Dong, Wei Li, Dengfu Chen, Stephan Schönecker, Mujun Long, and Levente Vitos

Phys. Rev. B 95, 054426 (2017) - Published 21 February, 2017

Far-IR magnetospectroscopy of magnons and electromagnons in TbFeO3 single crystals at low temperatures

T. N. Stanislavchuk, Yazhong Wang, S.-W. Cheong, and A. A. Sirenko

Phys. Rev. B 95, 054427 (2017) - Published 21 February, 2017

Effect of interfacial intermixing on the Dzyaloshinskii-Moriya interaction in Pt/Co/Pt

Adam W. J. Wells, Philippa M. Shepley, Christopher H. Marrows, and Thomas A. Moore

Phys. Rev. B 95, 054428 (2017) - Published 21 February, 2017

Self-consistent mapping: Effect of local environment on formation of magnetic moment in αFeSi2

V. S. Zhandun, N. G. Zamkova, S. G. Ovchinnikov, and I. S. Sandalov

Phys. Rev. B 95, 054429 (2017) - Published 22 February, 2017

Structure and magnetism in Sr1xAxTcO3 perovskites: Importance of the A-site cation

Emily Reynolds, Maxim Avdeev, Gordon J. Thorogood, Frederic Poineau, Kenneth R. Czerwinski, Justin A. Kimpton, Michelle Yu, Paula Kayser, and Brendan J. Kennedy

Phys. Rev. B 95, 054430 (2017) - Published 27 February, 2017

Magnetic structure of DyN: A Dy161 Mössbauer study

Jacob P. Evans, Glen A. Stewart, J. M. Cadogan, Wayne D. Hutchison, Emma E. Mitchell, and James E. Downes

Phys. Rev. B 95, 054431 (2017) - Published 27 February, 2017

Unusual magnetic structure of the high-pressure synthesized perovskites ACrO3 (A=Sc, In, Tl)

Lei Ding, Pascal Manuel, Dmitry D. Khalyavin, Fabio Orlandi, Yu Kumagai, Fumiyasu Oba, Wei Yi, and Alexei A. Belik

Phys. Rev. B 95, 054432 (2017) - Published 27 February, 2017

Approximating the XY model on a random graph with a q-state clock model

Cosimo Lupo and Federico Ricci-Tersenghi

Phys. Rev. B 95, 054433 (2017) - Published 27 February, 2017

Intrinsic nonadiabatic topological torque in magnetic skyrmions and vortices

Collins Ashu Akosa, Papa Birame Ndiaye, and Aurélien Manchon

Phys. Rev. B 95, 054434 (2017) - Published 28 February, 2017

Realization of a spin-12 spatially anisotropic square lattice in a quasi-two-dimensional quantum antiferromagnet Cu(en)(H2O)2SO4

L. Lederová, A. Orendáčová, J. Chovan, J. Strečka, T. Verkholyak, R. Tarasenko, D. Legut, R. Sýkora, E. Čižmár, V. Tkáč, M. Orendáč, and A. Feher

Phys. Rev. B 95, 054436 (2017) - Published 28 February, 2017

Superfluidity and superconductivity

Phase diagram and neutron spin resonance of superconducting NaFe1xCuxAs

Guotai Tan, Yu Song, Rui Zhang, Lifang Lin, Zhuang Xu, Long Tian, Songxue Chi, M. K. Graves-Brook, Shiliang Li, and Pengcheng Dai

Phys. Rev. B 95, 054501 (2017) - Published 3 February, 2017

Role of dissipation in realistic Majorana nanowires

Chun-Xiao Liu, Jay D. Sau, and S. Das Sarma

Phys. Rev. B 95, 054502 (2017) - Published 6 February, 2017

Transport in ferromagnet/superconductor spin valves

Evan Moen and Oriol T. Valls

Phys. Rev. B 95, 054503 (2017) - Published 8 February, 2017

Coherent transport properties of a three-terminal hybrid superconducting interferometer

F. Vischi, M. Carrega, E. Strambini, S. D'Ambrosio, F. S. Bergeret, Yu. V. Nazarov, and F. Giazotto

Phys. Rev. B 95, 054504 (2017) - Published 13 February, 2017

Superfluidity in Bose-Hubbard circuits

Geva Arwas and Doron Cohen

Phys. Rev. B 95, 054505 (2017) - Published 13 February, 2017

Anisotropic superconducting gaps in YNi2B2C: A first-principles investigation

Mitsuaki Kawamura, Ryosuke Akashi, and Shinji Tsuneyuki

Phys. Rev. B 95, 054506 (2017) - Published 14 February, 2017

Superconductivity in two-dimensional disordered Dirac semimetals

Jing Wang, Peng-Lu Zhao, Jing-Rong Wang, and Guo-Zhu Liu

Phys. Rev. B 95, 054507 (2017) - Published 15 February, 2017

Cu nuclear magnetic resonance study of charge and spin stripe order in La1.875Ba0.125CuO4

D. Pelc, H.-J. Grafe, G. D. Gu, and M. Požek

Phys. Rev. B 95, 054508 (2017) - Published 15 February, 2017

Spin Hall effect and spin swapping in diffusive superconductors

Camilla Espedal, Peter Lange, Severin Sadjina, A. G. Mal'shukov, and Arne Brataas

Phys. Rev. B 95, 054509 (2017) - Published 17 February, 2017

Anisotropic electron-phonon coupling in the spinel oxide superconductor LiTi2O4

Ge He, Yanli Jia, Xingyuan Hou, Zhongxu Wei, Haidong Xie, Zhenzhong Yang, Jinan Shi, Jie Yuan, Lei Shan, Beiyi Zhu, Hong Li, Lin Gu, Kai Liu, Tao Xiang, and Kui Jin

Phys. Rev. B 95, 054510 (2017) - Published 21 February, 2017

Strain-induced intervortex interaction and vortex lattices in tetragonal superconductors

Shi-Zeng Lin and Vladimir G. Kogan

Phys. Rev. B 95, 054511 (2017) - Published 22 February, 2017

Muon spin rotation and infrared spectroscopy study of magnetism and superconductivity in Ba1xKxFe2As2

B. P. P. Mallett, C. N. Wang, P. Marsik, E. Sheveleva, M. Yazdi-Rizi, J. L. Tallon, P. Adelmann, Th. Wolf, and C. Bernhard

Phys. Rev. B 95, 054512 (2017) - Published 22 February, 2017

Dynamic transition from Mott-like to metal-like state of the vortex lattice in a superconducting film with a periodic array of holes

Indranil Roy, Prashant Chauhan, Harkirat Singh, Sanjeev Kumar, John Jesudasan, Pradnya Parab, Rajdeep Sensarma, Sangita Bose, and Pratap Raychaudhuri

Phys. Rev. B 95, 054513 (2017) - Published 22 February, 2017

Hanbury Brown and Twiss noise correlations in a topological superconductor beam splitter

T. Jonckheere, J. Rech, A. Zazunov, R. Egger, and T. Martin

Phys. Rev. B 95, 054514 (2017) - Published 22 February, 2017

Enhanced superconductivity, Kondo behavior, and negative-curvature resistivity of oxygen-irradiated thin films of aluminium

E. H. C. P. Sinnecker, M. M. Sant'Anna, and M. ElMassalami

Phys. Rev. B 95, 054515 (2017) - Published 23 February, 2017

Two superconducting transitions in single-crystal La2xBaxCuO4

X. Y. Tee, T. Ito, T. Ushiyama, Y. Tomioka, I. Martin, and C. Panagopoulos

Phys. Rev. B 95, 054516 (2017) - Published 27 February, 2017

Absence of superfluidity in a quasi-one-dimensional parahydrogen fluid adsorbed inside carbon nanotubes

Adrian Del Maestro and Massimo Boninsegni

Phys. Rev. B 95, 054517 (2017) - Published 27 February, 2017

Subgap structures and pseudogap in cuprate superconductors: Role of density waves

S. Verret, M. Charlebois, D. Sénéchal, and A.-M. S. Tremblay

Phys. Rev. B 95, 054518 (2017) - Published 28 February, 2017

ERRATA

Publisher's Note: Phase-resolved detection of the spin Hall angle by optical ferromagnetic resonance in perpendicularly magnetized thin films [Phys. Rev. B 95, 064401 (2017)]

Amir Capua, Tianyu Wang, See-Hun Yang, Charles Rettner, Timothy Phung, and Stuart S. P. Parkin

Phys. Rev. B 95, 059901 (2017) - Published 10 February, 2017

Publisher's Note: Logic gates with bright dissipative polariton solitons in Bragg cavity systems [Phys. Rev. B 92, 174528 (2015)]

E. Cancellieri, J. K. Chana, M. Sich, D. N. Krizhanovskii, M. S. Skolnick, and D. M. Whittaker

Phys. Rev. B 95, 059902 (2017) - Published 10 February, 2017

Erratum: Temperature dependence of electronic eigenenergies in the adiabatic harmonic approximation [Phys. Rev. B 90, 214304 (2014)]

S. Poncé, G. Antonius, Y. Gillet, P. Boulanger, J. Laflamme Janssen, A. Marini, M. Côté, and X. Gonze

Phys. Rev. B 95, 059903 (2017) - Published 21 February, 2017

Erratum: High-throughput combinatorial study of the effect of M site alloying on the solid solution behavior of M2AlC MAX phases [Phys. Rev. B 94, 104106 (2016)]

Anjana Talapatra, T. Duong, W. Son, H. Gao, M. Radovic, and R. Arróyave

Phys. Rev. B 95, 059904 (2017) - Published 23 February, 2017

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