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HIGHLIGHTED ARTICLES

Tunnel transport and interlayer excitons in bilayer fractional quantum Hall systems

Yuhe Zhang, J. K. Jain, and J. P. Eisenstein

Phys. Rev. B 95, 195105 (2017) - Published 3 May, 2017

Tunneling of an electron from one composite fermion liquid into another in a bilayer system offers a unique spectroscopic probe into the short-distance high-energy physics of this highly nontrivial strongly correlated state. The authors identify the interlayer exciton responsible for the maximum current, and find excellent quantitative agreement with the experimentally measured energy as well as its dependence on an in-plane magnetic field. They also predict that the spin-polarization transitions of the fractional quantum Hall states as a function of the Zeeman energy will be marked by discontinuous jumps in the energy of this exciton.

Strongly enhanced temperature dependence of the chemical potential in FeSe

L. C. Rhodes, M. D. Watson, A. A. Haghighirad, M. Eschrig, and T. K. Kim

Phys. Rev. B 95, 195111 (2017) - Published 8 May, 2017

Due to its highly tunable unconventional superconductivity, FeSe is one of the most intriguing materials among the iron-based superconductors. In addition, it exhibits a tetragonal to orthorhombic “nematic” phase transition in the absence of static magnetic order. This article presents a set of tight-binding parameters, optimized directly with respect to experimental angle-resolved photoemission spectroscopy (ARPES) data obtained at 100 K. It thus provides a quantitatively accurate model of the electronic structure of the tetragonal phase of FeSe and, hence, a coherent foundation for the understanding of the unique physical properties of this system. The authors go on to predict a feature that has so far remained unnoticed in simpler DFT-based tight-binding-model analyses, namely, a significant temperature dependence of the chemical potential in FeSe. This is confirmed by performing ARPES on FeSe single crystals, whereby a 25-meV rigid chemical potential shift is detected across the entire Brillouin zone over the temperature range between 100 K and 300 K. The finding has important implications for any future theoretical models of nematicity and superconductivity in FeSe and related materials.

Three-dimensional nature of the band structure of ZrTe5 measured by high-momentum-resolution photoemission spectroscopy

H. Xiong, J. A. Sobota, S.-L. Yang, H. Soifer, A. Gauthier, M.-H. Lu, Y.-Y. Lv, S.-H. Yao, D. Lu, M. Hashimoto, P. S. Kirchmann, Y.-F. Chen, and Z.-X. Shen

Phys. Rev. B 95, 195119 (2017) - Published 10 May, 2017

In the past decade, topological materials have been continuously attracting the interest of the condensed-matter physics community because of their unique band structures and transport properties. Recently, ZrTe5 is becoming a promising platform to study topological phase transitions, as it could possibly be a 3D Dirac semimetal, a 3D weak topological insulator (TI), or a 3D strong TI, which are distinguished by whether there is a finite band gap and whether there is a topological surface state (TSS). This paper performs a systematic high-momentum-resolution photoemission study on ZrTe5 using 6 eV photon energy. The conduction and valence bands near Γ are measured with a gap between 18 and 29 meV. The gap size is smaller than former studies. This work also examines the spectral difference at different photon energies, which is attributed to final-state effects and the 3D nature of the band structure. By doing so, the authors confirm the gap is not due to some specific out-of-plane momentum, and conclude that there is no TSS. The final-state interpretation also reconciles the discrepancies of previous studies regarding the existence of the TSS. Hence, the results are consistent with ZrTe5 being a 3D weak topological insulator.

Floquet topological phases with symmetry in all dimensions

Rahul Roy and Fenner Harper

Phys. Rev. B 95, 195128 (2017) - Published 12 May, 2017

Periodically driven Floquet systems can host dynamical phases, including a range of exotic topological phases that have no static analogs. This work presents a homotopy approach to the study of driven systems, which treats unitary evolutions as paths in the space of unitary operators. By considering loop evolutions in this space, the authors obtain a topological classification, free of uncertainties and ambiguities about the long-time robustness of of behavior in specific physical models. Two classes of Floquet symmetry-protected topological phase are identified, characterized by unitary evolutions that act trivially in the bulk but nontrivially at the boundary of an open system. The first class is captured by an explicit group cohomology construction; it has the remarkable property of converting a trivial boundary state into a nontrivial symmetry-protected topological state. The second class exhibits anomalous counter propagating Hilbert-space transport at the boundary; it lies beyond the cohomology construction.

Fate of a discrete time crystal in an open system

Achilleas Lazarides and Roderich Moessner

Phys. Rev. B 95, 195135 (2017) - Published 17 May, 2017

The theoretical suggestion and the subsequent experimental evidence for the existence of discrete time crystals (DTCs) constitutes one of the most exciting recent fundamental advances in out-of-equilibrium (OOE) quantum physics. These are OOE phases in which time translation symmetry is spontaneously broken alongside the symmetry breaking familiar from static equilibrium systems. In this work, the authors study the fragility of this phenomenon by considering the effect of an external environment on the π spin glass, the paradigmatic model of a disordered DTC, which had hitherto only been considered in completely isolated systems.

Interacting fermionic symmetry-protected topological phases in two dimensions

Chenjie Wang, Chien-Hung Lin, and Zheng-Cheng Gu

Phys. Rev. B 95, 195147 (2017) - Published 22 May, 2017

Symmetry-protected topological (SPT) phases (e.g., the well known topological insulators) are a class of energetically gapped condensed matter systems that exhibit interesting topological properties only in the presence of certain global symmetries. While a great understanding of noninteracting fermionic SPT phases has been achieved recently, interacting SPT phases, in particular those that exist only in strongly interacting systems, are much less understood in general. Here, the authors study strongly interacting fermionic SPT phases in two spatial dimensions with finite Abelian unitary symmetries and provide a potentially complete classification of them.

Floquet topological phases protected by time glide symmetry

Takahiro Morimoto, Hoi Chun Po, and Ashvin Vishwanath

Phys. Rev. B 95, 195155 (2017) - Published 26 May, 2017

Nonequilibrium systems under periodic driving realize novel topological phases that cannot be achieved in equilibrium systems. One unique feature of periodically driven systems is that they can host a purely dynamical symmetry that involves time translation. This work explores a new class of Floquet topological phases protected by one realization of such dynamical symmetry, i.e., “time glide symmetry”, which is defined by a combination of reflection and time translation. Lattice models with time glide symmetric driving that are introduced show stable gapless surface states along with nontrivial topological numbers defined with time glide symmetry. In addition, a general classification theory of time glide symmetric topological phases is obtained by using a Clifford algebra approach.

Gapped excitations in the high-pressure antiferromagnetic phase of URu2Si2

T. J. Williams, H. Barath, Z. Yamani, J. A. Rodriguez-Riviera, J. B. Leão, J. D. Garrett, G. M. Luke, W. J. L. Buyers, and C. Broholm

Phys. Rev. B 95, 195171 (2017) - Published 31 May, 2017

The nature of the “hidden order” phase of URu2Si2 continues to defy understanding, despite three decades of intense research. Nonetheless, progress has been made in identifying key properties of the “hidden order” phase, including the observation of spin correlations indicative of Fermi surface nesting by neutron scattering. Here, the authors show that these spin correlations appear in the pressure-induced antiferromagnetic phase of URu2Si2, with remarkably similar properties. The persistence of these magnetic correlations suggests a significant kinship between these phases that had not been previously appreciated.

ARTICLES

Electronic structure and strongly correlated systems

Phase diagrams of the extended Bose-Hubbard model in one dimension by Monte-Carlo simulation with the help of a stochastic-series expansion

Keima Kawaki, Yoshihito Kuno, and Ikuo Ichinose

Phys. Rev. B 95, 195101 (2017) - Published 1 May, 2017

Generating giant spin currents using nodal topological superconductors

Noah F. Q. Yuan, Yao Lu, James J. He, and K. T. Law

Phys. Rev. B 95, 195102 (2017) - Published 2 May, 2017

Evolution of Nagaoka phase with kinetic energy frustrating hopping

F. T. Lisandrini, B. Bravo, A. E. Trumper, L. O. Manuel, and C. J. Gazza

Phys. Rev. B 95, 195103 (2017) - Published 2 May, 2017

Role of the rare earth in lattice and magnetic coupling in multiferroic hHoMnO3

J. Liu, Y. Gallais, M.-A. Measson, A. Sacuto, S. W. Cheong, and M. Cazayous

Phys. Rev. B 95, 195104 (2017) - Published 3 May, 2017

Tunnel transport and interlayer excitons in bilayer fractional quantum Hall systems

Yuhe Zhang, J. K. Jain, and J. P. Eisenstein

Phys. Rev. B 95, 195105 (2017) - Published 3 May, 2017

Tunneling of an electron from one composite fermion liquid into another in a bilayer system offers a unique spectroscopic probe into the short-distance high-energy physics of this highly nontrivial strongly correlated state. The authors identify the interlayer exciton responsible for the maximum current, and find excellent quantitative agreement with the experimentally measured energy as well as its dependence on an in-plane magnetic field. They also predict that the spin-polarization transitions of the fractional quantum Hall states as a function of the Zeeman energy will be marked by discontinuous jumps in the energy of this exciton.

Half-metallic ferromagnetism in Sr3Ru2O7

Pablo Rivero, Vincent Meunier, and William Shelton

Phys. Rev. B 95, 195106 (2017) - Published 3 May, 2017

Infrared ellipsometry study of photogenerated charge carriers at the (001) and (110) surfaces of SrTiO3 crystals and at the interface of the corresponding LaAlO3/SrTiO3 heterostructures

M. Yazdi-Rizi, P. Marsik, B. P. P. Mallett, K. Sen, A. Cerreta, A. Dubroka, M. Scigaj, F. Sánchez, G. Herranz, and C. Bernhard

Phys. Rev. B 95, 195107 (2017) - Published 3 May, 2017

Interaction effects on the classification of crystalline topological insulators and superconductors

Xue-Yang Song and Andreas P. Schnyder

Phys. Rev. B 95, 195108 (2017) - Published 4 May, 2017

Disentangling specific versus generic doping mechanisms in oxide heterointerfaces

J. Gabel, M. Zapf, P. Scheiderer, P. Schütz, L. Dudy, M. Stübinger, C. Schlueter, T.-L. Lee, M. Sing, and R. Claessen

Phys. Rev. B 95, 195109 (2017) - Published 5 May, 2017

Multiflavor string-net models

Chien-Hung Lin

Phys. Rev. B 95, 195110 (2017) - Published 8 May, 2017

Strongly enhanced temperature dependence of the chemical potential in FeSe

L. C. Rhodes, M. D. Watson, A. A. Haghighirad, M. Eschrig, and T. K. Kim

Phys. Rev. B 95, 195111 (2017) - Published 8 May, 2017

Due to its highly tunable unconventional superconductivity, FeSe is one of the most intriguing materials among the iron-based superconductors. In addition, it exhibits a tetragonal to orthorhombic “nematic” phase transition in the absence of static magnetic order. This article presents a set of tight-binding parameters, optimized directly with respect to experimental angle-resolved photoemission spectroscopy (ARPES) data obtained at 100 K. It thus provides a quantitatively accurate model of the electronic structure of the tetragonal phase of FeSe and, hence, a coherent foundation for the understanding of the unique physical properties of this system. The authors go on to predict a feature that has so far remained unnoticed in simpler DFT-based tight-binding-model analyses, namely, a significant temperature dependence of the chemical potential in FeSe. This is confirmed by performing ARPES on FeSe single crystals, whereby a 25-meV rigid chemical potential shift is detected across the entire Brillouin zone over the temperature range between 100 K and 300 K. The finding has important implications for any future theoretical models of nematicity and superconductivity in FeSe and related materials.

Extremely large nonsaturating magnetoresistance and ultrahigh mobility due to topological surface states in the metallic Bi2Te3 topological insulator

K. Shrestha, M. Chou, D. Graf, H. D. Yang, B. Lorenz, and C. W. Chu

Phys. Rev. B 95, 195113 (2017) - Published 8 May, 2017

Quantum dot attached to superconducting leads: Relation between symmetric and asymmetric coupling

A. Kadlecová, M. Žonda, and T. Novotný

Phys. Rev. B 95, 195114 (2017) - Published 8 May, 2017

Validity of the local approximation in iron pnictides and chalcogenides

Patrick Sémon, Kristjan Haule, and Gabriel Kotliar

Phys. Rev. B 95, 195115 (2017) - Published 8 May, 2017

Electronic properties of Ba1xSrxV13O18 (x=0,0.2,1) studied using hard x-ray photoelectron spectroscopy

S. Dash, M. Okawa, T. Kajita, T. Yoshino, R. Shimoyama, K. Takahashi, Y. Takahashi, R. Takayanagi, T. Saitoh, D. Ootsuki, T. Yoshida, E. Ikenaga, N. L. Saini, T. Katsufuji, and T. Mizokawa

Phys. Rev. B 95, 195116 (2017) - Published 9 May, 2017

Origins of bond and spin order in rare-earth nickelate bulk and heterostructures

Yi Lu, Zhicheng Zhong, Maurits W. Haverkort, and Philipp Hansmann

Phys. Rev. B 95, 195117 (2017) - Published 9 May, 2017

Violation of an f-sum rule with generalized kinetic energy

Kridsanaphong Limtragool and Philip W. Phillips

Phys. Rev. B 95, 195118 (2017) - Published 9 May, 2017

Three-dimensional nature of the band structure of ZrTe5 measured by high-momentum-resolution photoemission spectroscopy

H. Xiong, J. A. Sobota, S.-L. Yang, H. Soifer, A. Gauthier, M.-H. Lu, Y.-Y. Lv, S.-H. Yao, D. Lu, M. Hashimoto, P. S. Kirchmann, Y.-F. Chen, and Z.-X. Shen

Phys. Rev. B 95, 195119 (2017) - Published 10 May, 2017

In the past decade, topological materials have been continuously attracting the interest of the condensed-matter physics community because of their unique band structures and transport properties. Recently, ZrTe5 is becoming a promising platform to study topological phase transitions, as it could possibly be a 3D Dirac semimetal, a 3D weak topological insulator (TI), or a 3D strong TI, which are distinguished by whether there is a finite band gap and whether there is a topological surface state (TSS). This paper performs a systematic high-momentum-resolution photoemission study on ZrTe5 using 6 eV photon energy. The conduction and valence bands near Γ are measured with a gap between 18 and 29 meV. The gap size is smaller than former studies. This work also examines the spectral difference at different photon energies, which is attributed to final-state effects and the 3D nature of the band structure. By doing so, the authors confirm the gap is not due to some specific out-of-plane momentum, and conclude that there is no TSS. The final-state interpretation also reconciles the discrepancies of previous studies regarding the existence of the TSS. Hence, the results are consistent with ZrTe5 being a 3D weak topological insulator.

Self-consistent solution of Hedin's equations: Semiconductors and insulators

Andrey L. Kutepov

Phys. Rev. B 95, 195120 (2017) - Published 10 May, 2017

T dependence of nuclear spin-echo decay at low temperatures in YbRh2Si2

S. Kambe, H. Sakai, Y. Tokunaga, T. Hattori, G. Lapertot, T. D. Matsuda, G. Knebel, J. Flouquet, and R. E. Walstedt

Phys. Rev. B 95, 195121 (2017) - Published 10 May, 2017

Matrix product states for topological phases with parafermions

Wen-Tao Xu and Guang-Ming Zhang

Phys. Rev. B 95, 195122 (2017) - Published 10 May, 2017

Multiple particle-hole pair creation in the harmonically driven Fermi-Hubbard model

Nicolai ten Brinke, Manuel Ligges, Uwe Bovensiepen, and Ralf Schützhold

Phys. Rev. B 95, 195123 (2017) - Published 10 May, 2017

One- and two-dimensional carbon nanostructures based on unfolded buckyballs: An ab initio investigation of their electronic properties

Francisco Iago Lira Passos, José Gadelha da Silva Filho, Aldilene Saraiva-Souza, Antônio Gomes Souza Filho, Vincent Meunier, and Eduardo Costa Girão

Phys. Rev. B 95, 195124 (2017) - Published 10 May, 2017

Low-temperature magnetic structure and electron paramagnetic resonance properties of the quasi-one-dimensional S=12 Heisenberg helimagnet CuCl2·2NC5H5

A. N. Ponomaryov, L. Zviagina, J. Wosnitza, M. Thede, E. Ressouche, K. Yu. Povarov, A. Zheludev, C. P. Landee, and S. A. Zvyagin

Phys. Rev. B 95, 195125 (2017) - Published 10 May, 2017

Irreversible proliferation of magnetic moments at cleaved surfaces of the topological Kondo insulator SmB6

Haowei He, Lin Miao, Edwin Augustin, Janet Chiu, Surge Wexler, S. Alexander Breitweiser, Boyoun Kang, B. K. Cho, Chul-Hee Min, Friedrich Reinert, Yi-De Chuang, Jonathan Denlinger, and L. Andrew Wray

Phys. Rev. B 95, 195126 (2017) - Published 11 May, 2017

Block product density matrix embedding theory for strongly correlated spin systems

Klaas Gunst, Sebastian Wouters, Stijn De Baerdemacker, and Dimitri Van Neck

Phys. Rev. B 95, 195127 (2017) - Published 11 May, 2017

Floquet topological phases with symmetry in all dimensions

Rahul Roy and Fenner Harper

Phys. Rev. B 95, 195128 (2017) - Published 12 May, 2017

Periodically driven Floquet systems can host dynamical phases, including a range of exotic topological phases that have no static analogs. This work presents a homotopy approach to the study of driven systems, which treats unitary evolutions as paths in the space of unitary operators. By considering loop evolutions in this space, the authors obtain a topological classification, free of uncertainties and ambiguities about the long-time robustness of of behavior in specific physical models. Two classes of Floquet symmetry-protected topological phase are identified, characterized by unitary evolutions that act trivially in the bulk but nontrivially at the boundary of an open system. The first class is captured by an explicit group cohomology construction; it has the remarkable property of converting a trivial boundary state into a nontrivial symmetry-protected topological state. The second class exhibits anomalous counter propagating Hilbert-space transport at the boundary; it lies beyond the cohomology construction.

Planar tunneling spectroscopy of the topological Kondo insulator SmB6

L. Sun, D.-J. Kim, Z. Fisk, and W. K. Park

Phys. Rev. B 95, 195129 (2017) - Published 15 May, 2017

False spin zeros in the angular dependence of magnetic quantum oscillations in quasi-two-dimensional metals

P. D. Grigoriev and T. I. Mogilyuk

Phys. Rev. B 95, 195130 (2017) - Published 15 May, 2017

Dielectric function and thermodynamic properties of jellium in the GW approximation

Kris Van Houcke, Igor S. Tupitsyn, Andrey S. Mishchenko, and Nikolay V. Prokof'ev

Phys. Rev. B 95, 195131 (2017) - Published 16 May, 2017

Dissipationless spin-valley current in zigzag-edge graphene ribbons with a net magnetization

Kyu Won Lee and Cheol Eui Lee

Phys. Rev. B 95, 195132 (2017) - Published 16 May, 2017

Understanding low-temperature bulk transport in samarium hexaboride without relying on in-gap bulk states

A. Rakoski, Y. S. Eo, K. Sun, and Ç. Kurdak

Phys. Rev. B 95, 195133 (2017) - Published 17 May, 2017

Cycloidal magnetism driven ferroelectricity in double tungstate LiFe(WO4)2

Meifeng Liu, Lingfang Lin, Yang Zhang, Shaozhen Li, Qingzhen Huang, V. Ovidiu Garlea, Tao Zou, Yunlong Xie, Yu Wang, Chengliang Lu, Lin Yang, Zhibo Yan, Xiuzhang Wang, Shuai Dong, and Jun-Ming Liu

Phys. Rev. B 95, 195134 (2017) - Published 17 May, 2017

Fate of a discrete time crystal in an open system

Achilleas Lazarides and Roderich Moessner

Phys. Rev. B 95, 195135 (2017) - Published 17 May, 2017

The theoretical suggestion and the subsequent experimental evidence for the existence of discrete time crystals (DTCs) constitutes one of the most exciting recent fundamental advances in out-of-equilibrium (OOE) quantum physics. These are OOE phases in which time translation symmetry is spontaneously broken alongside the symmetry breaking familiar from static equilibrium systems. In this work, the authors study the fragility of this phenomenon by considering the effect of an external environment on the π spin glass, the paradigmatic model of a disordered DTC, which had hitherto only been considered in completely isolated systems.

Polarizability of electrically induced magnetic vortex plasma

P. I. Karpov and S. I. Mukhin

Phys. Rev. B 95, 195136 (2017) - Published 17 May, 2017

Magnetic Chern bands and triplon Hall effect in an extended Shastry-Sutherland model

M. Malki and K. P. Schmidt

Phys. Rev. B 95, 195137 (2017) - Published 18 May, 2017

Three-dimensionality of the bulk electronic structure in WTe2

Yun Wu, Na Hyun Jo, Daixiang Mou, Lunan Huang, S. L. Bud'ko, P. C. Canfield, and Adam Kaminski

Phys. Rev. B 95, 195138 (2017) - Published 18 May, 2017

Spin-orbit coupling and transport in strongly correlated two-dimensional systems

Jian Huang, L. N. Pfeiffer, and K. W. West

Phys. Rev. B 95, 195139 (2017) - Published 18 May, 2017

Exact zero modes in twisted Kitaev chains

Kohei Kawabata, Ryohei Kobayashi, Ning Wu, and Hosho Katsura

Phys. Rev. B 95, 195140 (2017) - Published 18 May, 2017

Electronic phase transition between localized and itinerant states in the solid-solution system CaCu3Ti4xRuxO12

Ting-Hui Kao, Hiroya Sakurai, Shan Yu, Harukazu Kato, Naohito Tsujii, and Hung-Duen Yang

Phys. Rev. B 95, 195141 (2017) - Published 18 May, 2017

Low-energy electronic excitations and band-gap renormalization in CuO

Claudia Rödl, Kari O. Ruotsalainen, Francesco Sottile, Ari-Pekka Honkanen, James M. Ablett, Jean-Pascal Rueff, Fausto Sirotti, Roberto Verbeni, Ali Al-Zein, Lucia Reining, and Simo Huotari

Phys. Rev. B 95, 195142 (2017) - Published 18 May, 2017

Two-dimensional van der Waals p-n junction of InSe/phosphorene

J. E. Padilha, R. H. Miwa, Antonio J. R. da Silva, and A. Fazzio

Phys. Rev. B 95, 195143 (2017) - Published 19 May, 2017

Giant exciton Fano resonance in quasi-one-dimensional Ta2NiSe5

T. I. Larkin, A. N. Yaresko, D. Pröpper, K. A. Kikoin, Y. F. Lu, T. Takayama, Y.-L. Mathis, A. W. Rost, H. Takagi, B. Keimer, and A. V. Boris

Phys. Rev. B 95, 195144 (2017) - Published 19 May, 2017

Lattice-layer entanglement in Bernal-stacked bilayer graphene

Victor A. S. V. Bittencourt and Alex E. Bernardini

Phys. Rev. B 95, 195145 (2017) - Published 19 May, 2017

Effects of pressure and magnetic field on the reentrant superconductor Eu(Fe0.93Rh0.07)2As2

A. Löhle, A. Baumgartner, S. Zapf, M. Dressel, W. H. Jiao, and G. H. Cao

Phys. Rev. B 95, 195146 (2017) - Published 22 May, 2017

Interacting fermionic symmetry-protected topological phases in two dimensions

Chenjie Wang, Chien-Hung Lin, and Zheng-Cheng Gu

Phys. Rev. B 95, 195147 (2017) - Published 22 May, 2017

Symmetry-protected topological (SPT) phases (e.g., the well known topological insulators) are a class of energetically gapped condensed matter systems that exhibit interesting topological properties only in the presence of certain global symmetries. While a great understanding of noninteracting fermionic SPT phases has been achieved recently, interacting SPT phases, in particular those that exist only in strongly interacting systems, are much less understood in general. Here, the authors study strongly interacting fermionic SPT phases in two spatial dimensions with finite Abelian unitary symmetries and provide a potentially complete classification of them.

Symmetric minimally entangled typical thermal states for canonical and grand-canonical ensembles

Moritz Binder and Thomas Barthel

Phys. Rev. B 95, 195148 (2017) - Published 22 May, 2017

Modulated, three-directional, and polar structural instability in layered d1NaTiO2

Alaska Subedi

Phys. Rev. B 95, 195149 (2017) - Published 22 May, 2017

High-pressure magnetic, electronic, and structural properties of MFe2O4 (M=Mg,Zn,Fe) ferric spinels

E. Greenberg, W. M. Xu, M. Nikolaevsky, E. Bykova, G. Garbarino, K. Glazyrin, D. G. Merkel, L. Dubrovinsky, M. P. Pasternak, and G. Kh. Rozenberg

Phys. Rev. B 95, 195150 (2017) - Published 23 May, 2017

Electronic correlation effects and Coulomb gap in the Si(111)-(3×3)-Sn surface

A. B. Odobescu, A. A. Maizlakh, N. I. Fedotov, and S. V. Zaitsev-Zotov

Phys. Rev. B 95, 195151 (2017) - Published 23 May, 2017

Holographic dynamics from multiscale entanglement renormalization ansatz

Victor Chua, Vasilios Passias, Apoorv Tiwari, and Shinsei Ryu

Phys. Rev. B 95, 195152 (2017) - Published 23 May, 2017

Calculation of magnetic properties of metals by means of the magnetic-field-containing relativistic tight-binding approximation method

Masahiko Higuchi, Dipendra Bahadur Hamal, and Katsuhiko Higuchi

Phys. Rev. B 95, 195153 (2017) - Published 24 May, 2017

Gradient optimization of finite projected entangled pair states

Wen-Yuan Liu, Shao-Jun Dong, Yong-Jian Han, Guang-Can Guo, and Lixin He

Phys. Rev. B 95, 195154 (2017) - Published 24 May, 2017

Floquet topological phases protected by time glide symmetry

Takahiro Morimoto, Hoi Chun Po, and Ashvin Vishwanath

Phys. Rev. B 95, 195155 (2017) - Published 26 May, 2017

Nonequilibrium systems under periodic driving realize novel topological phases that cannot be achieved in equilibrium systems. One unique feature of periodically driven systems is that they can host a purely dynamical symmetry that involves time translation. This work explores a new class of Floquet topological phases protected by one realization of such dynamical symmetry, i.e., “time glide symmetry”, which is defined by a combination of reflection and time translation. Lattice models with time glide symmetric driving that are introduced show stable gapless surface states along with nontrivial topological numbers defined with time glide symmetry. In addition, a general classification theory of time glide symmetric topological phases is obtained by using a Clifford algebra approach.

Crystal-electric-field excitations and spin dynamics in Ce3Co4Sn13 semimetallic chiral-lattice phase

Kazuaki Iwasa, Yuka Otomo, Kazuya Suyama, Keisuke Tomiyasu, Seiko Ohira-Kawamura, Kenji Nakajima, and Jean-Michel Mignot

Phys. Rev. B 95, 195156 (2017) - Published 26 May, 2017

Quantum heat waves in a one-dimensional condensate

Kartiek Agarwal, Emanuele G. Dalla Torre, Jörg Schmiedmayer, and Eugene Demler

Phys. Rev. B 95, 195157 (2017) - Published 26 May, 2017

Convergence behavior of the random phase approximation renormalized correlation energy

Jefferson E. Bates, Jonathon Sensenig, and Adrienn Ruzsinszky

Phys. Rev. B 95, 195158 (2017) - Published 26 May, 2017

Oxygen-vacancy driven electron localization and itinerancy in rutile-based TiO2

Frank Lechermann, Wolfgang Heckel, Oleg Kristanovski, and Stefan Müller

Phys. Rev. B 95, 195159 (2017) - Published 30 May, 2017

Extended Kitaev chain with longer-range hopping and pairing

Antonio Alecce and Luca Dell'Anna

Phys. Rev. B 95, 195160 (2017) - Published 30 May, 2017

Finite-size scaling of the Shannon-Rényi entropy in two-dimensional systems with spontaneously broken continuous symmetry

Grégoire Misguich, Vincent Pasquier, and Masaki Oshikawa

Phys. Rev. B 95, 195161 (2017) - Published 30 May, 2017

Optical properties of TixSi1xO2 solid solutions

Pavel Ondračka, David Holec, David Nečas, Eva Kedroňová, Stéphane Elisabeth, Antoine Goullet, and Lenka Zajíčková

Phys. Rev. B 95, 195163 (2017) - Published 30 May, 2017

Anisotropy of transport in bulk Rashba metals

Valentina Brosco and Claudio Grimaldi

Phys. Rev. B 95, 195164 (2017) - Published 30 May, 2017

Magnetotransport properties of the triply degenerate node topological semimetal tungsten carbide

J. B. He, D. Chen, W. L. Zhu, S. Zhang, L. X. Zhao, Z. A. Ren, and G. F. Chen

Phys. Rev. B 95, 195165 (2017) - Published 30 May, 2017

Interlayer coupling and electronic structure of misfit-layered bismuth-based cobaltites

Sho-ichi Takakura, Isamu Yamamoto, Eishi Tanaka, Junpei Azuma, and Makoto Maki

Phys. Rev. B 95, 195166 (2017) - Published 30 May, 2017

Using random boundary conditions to simulate disordered quantum spin models in two-dimensional systems

A. Yuste, M. Moreno-Cardoner, and A. Sanpera

Phys. Rev. B 95, 195167 (2017) - Published 30 May, 2017

Jain-2/5 parent Hamiltonian: Structure of zero modes, dominance patterns, and zero mode generators

Li Chen, Sumanta Bandyopadhyay, and Alexander Seidel

Phys. Rev. B 95, 195169 (2017) - Published 31 May, 2017

Holographic encoding of universality in corner spectra

Ching-Yu Huang, Tzu-Chieh Wei, and Román Orús

Phys. Rev. B 95, 195170 (2017) - Published 31 May, 2017

Gapped excitations in the high-pressure antiferromagnetic phase of URu2Si2

T. J. Williams, H. Barath, Z. Yamani, J. A. Rodriguez-Riviera, J. B. Leão, J. D. Garrett, G. M. Luke, W. J. L. Buyers, and C. Broholm

Phys. Rev. B 95, 195171 (2017) - Published 31 May, 2017

The nature of the “hidden order” phase of URu2Si2 continues to defy understanding, despite three decades of intense research. Nonetheless, progress has been made in identifying key properties of the “hidden order” phase, including the observation of spin correlations indicative of Fermi surface nesting by neutron scattering. Here, the authors show that these spin correlations appear in the pressure-induced antiferromagnetic phase of URu2Si2, with remarkably similar properties. The persistence of these magnetic correlations suggests a significant kinship between these phases that had not been previously appreciated.

Semiconductors I: bulk

Even exciton series in Cu2O

Frank Schweiner, Jörg Main, Günter Wunner, and Christoph Uihlein

Phys. Rev. B 95, 195201 (2017) - Published 1 May, 2017

Spectral analysis of nonequilibrium molecular dynamics: Spectral phonon temperature and local nonequilibrium in thin films and across interfaces

Tianli Feng, Wenjun Yao, Zuyuan Wang, Jingjing Shi, Chuang Li, Bingyang Cao, and Xiulin Ruan

Phys. Rev. B 95, 195202 (2017) - Published 9 May, 2017

Metric for strong intrinsic fourth-order phonon anharmonicity

Sheng-Ying Yue, Xiaoliang Zhang, Guangzhao Qin, Simon R. Phillpot, and Ming Hu

Phys. Rev. B 95, 195203 (2017) - Published 9 May, 2017

Electron-nuclear spin dynamics of Ga2+ paramagnetic centers probed by spin-dependent recombination: A master equation approach

V. G. Ibarra-Sierra, J. C. Sandoval-Santana, S. Azaizia, H. Carrère, L. A. Bakaleinikov, V. K. Kalevich, E. L. Ivchenko, X. Marie, T. Amand, A. Balocchi, and A. Kunold

Phys. Rev. B 95, 195204 (2017) - Published 10 May, 2017

Phonon dynamics in type-VIII silicon clathrates: Beyond the rattler concept

Payam Norouzzadeh, Charles W. Myles, and Daryoosh Vashaee

Phys. Rev. B 95, 195206 (2017) - Published 11 May, 2017

Prospective high thermoelectric performance of the heavily p-doped half-Heusler compound CoVSn

Hongliang Shi, Wenmei Ming, David S. Parker, Mao-Hua Du, and David J. Singh

Phys. Rev. B 95, 195207 (2017) - Published 11 May, 2017

Intermediate bands in type-II silicon clathrate with Cu and Ag guest atoms

Zhaohui Huang, Huashan Li, Mark T. Lusk, and Zhigang Wu

Phys. Rev. B 95, 195208 (2017) - Published 15 May, 2017

Point defect segregation and its role in the detrimental nature of Frank partials in Cu(In,Ga)Se2 thin-film absorbers

E. Simsek Sanli, D. Barragan-Yani, Q. M. Ramasse, K. Albe, R. Mainz, D. Abou-Ras, A. Weber, H.-J. Kleebe, and P. A. van Aken

Phys. Rev. B 95, 195209 (2017) - Published 26 May, 2017

Semiconductors II: surfaces, interfaces, microstructures, and related topics

Field-induced exciton dissociation in PTB7-based organic solar cells

Marina Gerhard, Andreas P. Arndt, Mühenad Bilal, Uli Lemmer, Martin Koch, and Ian A. Howard

Phys. Rev. B 95, 195301 (2017) - Published 2 May, 2017

Spin separation and exchange for quantum dots in the Overhauser field

J. Leśnicki and B. Szafran

Phys. Rev. B 95, 195302 (2017) - Published 2 May, 2017

Design rules for interfacial thermal conductance: Building better bridges

Carlos A. Polanco, Rouzbeh Rastgarkafshgarkolaei, Jingjie Zhang, Nam Q. Le, Pamela M. Norris, and Avik W. Ghosh

Phys. Rev. B 95, 195303 (2017) - Published 3 May, 2017

Millimeter wave radiation-induced magnetoresistance oscillations in the high quality GaAs/AlGaAs 2D electron system under bichromatic excitation

B. Gunawardana, H.-C. Liu, R. L. Samaraweera, M. S. Heimbeck, H. O. Everitt, J. Iñarrea, C. Reichl, W. Wegscheider, and R. G. Mani

Phys. Rev. B 95, 195304 (2017) - Published 3 May, 2017

Phonon-assisted dark exciton preparation in a quantum dot

S. Lüker, T. Kuhn, and D. E. Reiter

Phys. Rev. B 95, 195305 (2017) - Published 9 May, 2017

Magnetotransport in Weyl semimetal nanowires

Akira Igarashi and Mikito Koshino

Phys. Rev. B 95, 195306 (2017) - Published 9 May, 2017

Time-dependent current into and through multilevel parallel quantum dots in a photon cavity

Vidar Gudmundsson, Nzar Rauf Abdullah, Anna Sitek, Hsi-Sheng Goan, Chi-Shung Tang, and Andrei Manolescu

Phys. Rev. B 95, 195307 (2017) - Published 15 May, 2017

Measurement of the excited-state transverse hyperfine coupling in NV centers via dynamic nuclear polarization

F. Poggiali, P. Cappellaro, and N. Fabbri

Phys. Rev. B 95, 195308 (2017) - Published 15 May, 2017

Interaction between magnetic moments and itinerant carriers in d0 ferromagnetic SiC

Yu Liu, Ye Yuan, Fang Liu, Roman Böttger, Wolfgang Anwand, Yutian Wang, Anna Semisalova, Alexey N. Ponomaryov, Xia Lu, Alpha T. N’Diaye, Elke Arenholz, Viton Heera, Wolfgang Skorupa, Manfred Helm, and Shengqiang Zhou

Phys. Rev. B 95, 195309 (2017) - Published 17 May, 2017

Resonance fluorescence and phase-dependent spectra of a singly charged n-doped quantum dot in the Voigt geometry

F. Carreño, S. Maede-Razavi, and M. A. Antón

Phys. Rev. B 95, 195310 (2017) - Published 19 May, 2017

Exciton mass increase in a GaAs/AlGaAs quantum well in a transverse magnetic field

S. Yu. Bodnar, P. S. Grigoryev, D. K. Loginov, V. G. Davydov, Yu. P. Efimov, S. A. Eliseev, V. A. Lovtcius, E. V. Ubyivovk, V. Yu. Mikhailovskii, and I. V. Ignatiev

Phys. Rev. B 95, 195311 (2017) - Published 22 May, 2017

Trapping time of excitons in Si nanocrystals embedded in a SiO2 matrix

E. M. L. D. de Jong, W. D. A. M. de Boer, I. N. Yassievich, and T. Gregorkiewicz

Phys. Rev. B 95, 195312 (2017) - Published 22 May, 2017

Nonexponential spin decay in a quantum kinetic description of the D'yakonov-Perel' mechanism mediated by impurity scattering

M. Cosacchi, M. Cygorek, F. Ungar, and V. M. Axt

Phys. Rev. B 95, 195313 (2017) - Published 23 May, 2017

Adsorption and desorption of hydrogen at nonpolar GaN(11¯00) surfaces: Kinetics and impact on surface vibrational and electronic properties

L. Lymperakis, J. Neugebauer, M. Himmerlich, S. Krischok, M. Rink, J. Kröger, and V. M. Polyakov

Phys. Rev. B 95, 195314 (2017) - Published 24 May, 2017

Hanle spin precession in a two-dimensional electron system

T. Kuczmik, M. Oltscher, A. Bayer, D. Schuh, D. Bougeard, M. Ciorga, and D. Weiss

Phys. Rev. B 95, 195315 (2017) - Published 25 May, 2017

Spin blockade in hole quantum dots: Tuning exchange electrically and probing Zeeman interactions

Jo-Tzu Hung, Elizabeth Marcellina, Bin Wang, Alexander R. Hamilton, and Dimitrie Culcer

Phys. Rev. B 95, 195316 (2017) - Published 26 May, 2017

Nonreciprocal quantum Hall devices with driven edge magnetoplasmons in two-dimensional materials

S. Bosco and D. P. DiVincenzo

Phys. Rev. B 95, 195317 (2017) - Published 26 May, 2017

Surface physics, nanoscale physics, low-dimensional systems

Electron-phonon coupling and surface Debye temperature of Bi2Te3(111) from helium atom scattering

Anton Tamtögl, Patrick Kraus, Nadav Avidor, Martin Bremholm, Ellen M. J. Hedegaard, Bo B. Iversen, Marco Bianchi, Philip Hofmann, John Ellis, William Allison, Giorgio Benedek, and Wolfgang E. Ernst

Phys. Rev. B 95, 195401 (2017) - Published 4 May, 2017

Spin relaxation in corrugated graphene

I. M. Vicent, H. Ochoa, and F. Guinea

Phys. Rev. B 95, 195402 (2017) - Published 4 May, 2017

Dynamical Shiba states from precessing magnetic moments in an s-wave superconductor

Vardan Kaladzhyan, Silas Hoffman, and Mircea Trif

Phys. Rev. B 95, 195403 (2017) - Published 4 May, 2017

Direct observation of enhanced magnetism in individual size- and shape-selected 3d transition metal nanoparticles

Armin Kleibert, Ana Balan, Rocio Yanes, Peter M. Derlet, C. A. F. Vaz, Martin Timm, Arantxa Fraile Rodríguez, Armand Béché, Jo Verbeeck, R. S. Dhaka, Milan Radovic, Ulrich Nowak, and Frithjof Nolting

Phys. Rev. B 95, 195404 (2017) - Published 5 May, 2017

Ultrafast switching of composite order in A3C60

Philipp Werner, Hugo U. R. Strand, Shintaro Hoshino, and Martin Eckstein

Phys. Rev. B 95, 195405 (2017) - Published 5 May, 2017

Surface-lattice resonances in two-dimensional arrays of spheres: Multipolar interactions and a mode analysis

Sylvia D. Swiecicki and J. E. Sipe

Phys. Rev. B 95, 195406 (2017) - Published 5 May, 2017

Spin-orbit signatures in the dynamics of singlet-triplet qubits in double quantum dots

Juan E. Rolon, Ernesto Cota, and Sergio E. Ulloa

Phys. Rev. B 95, 195407 (2017) - Published 8 May, 2017

Topological phase transitions in an inverted InAs/GaSb quantum well driven by tilted magnetic fields

Hsiu-Chuan Hsu, Min-Jyun Jhang, Tsung-Wei Chen, and Guang-Yu Guo

Phys. Rev. B 95, 195408 (2017) - Published 9 May, 2017

Electrical conduction and metal-insulator transition of indium nanowires on Si(111)

Shinichiro Hatta, Takashi Noma, Hiroshi Okuyama, and Tetsuya Aruga

Phys. Rev. B 95, 195409 (2017) - Published 9 May, 2017

Control of the absorption of a four-level quantum system near a plasmonic nanostructure

F. Carreño, M. A. Antón, V. Yannopapas, and E. Paspalakis

Phys. Rev. B 95, 195410 (2017) - Published 11 May, 2017

Momentum- and space-resolved high-resolution electron energy loss spectroscopy of individual single-wall carbon nanotubes

F. S. Hage, T. P. Hardcastle, A. J. Scott, R. Brydson, and Q. M. Ramasse

Phys. Rev. B 95, 195411 (2017) - Published 11 May, 2017

Renormalization group approach to stability of two-dimensional interacting type-II Dirac fermions

Ze-Min Huang, Jianhui Zhou, and Shun-Qing Shen

Phys. Rev. B 95, 195412 (2017) - Published 11 May, 2017

Ferroionic states in ferroelectric thin films

Anna N. Morozovska, Eugene A. Eliseev, Nicholas V. Morozovsky, and Sergei V. Kalinin

Phys. Rev. B 95, 195413 (2017) - Published 11 May, 2017

Insight into the wetting of a graphene-mica slit pore with a monolayer of water

Hu Lin, Andre Schilo, A. Rauf Kamoka, Nikolai Severin, Igor M. Sokolov, and Jürgen P. Rabe

Phys. Rev. B 95, 195414 (2017) - Published 12 May, 2017

Multiplicity of atomic reconfigurations in an electrochemical Pb single-atom transistor

F.-Q. Xie, X.-H. Lin, A. Gross, F. Evers, F. Pauly, and Th. Schimmel

Phys. Rev. B 95, 195415 (2017) - Published 15 May, 2017

Anomalously temperature-dependent thermal conductivity of monolayer GaN with large deviations from the traditional 1/T law

Guangzhao Qin, Zhenzhen Qin, Huimin Wang, and Ming Hu

Phys. Rev. B 95, 195416 (2017) - Published 15 May, 2017

Absolute determination of optical constants by reflection electron energy loss spectroscopy

H. Xu, B. Da, J. Tóth, K. Tőkési, and Z. J. Ding

Phys. Rev. B 95, 195417 (2017) - Published 16 May, 2017

Collective scattering in hybrid nanostructures with many atomic oscillators coupled to an electromagnetic resonance

Pierre Fauché, Spyridon G. Kosionis, and Philippe Lalanne

Phys. Rev. B 95, 195418 (2017) - Published 18 May, 2017

Silicene-based π and φ0 Josephson junctions

Xingfei Zhou and Guojun Jin

Phys. Rev. B 95, 195419 (2017) - Published 18 May, 2017

Effect of long-range interaction on graphene edge magnetism

Zheng Shi and Ian Affleck

Phys. Rev. B 95, 195420 (2017) - Published 19 May, 2017

Detecting topological superconductivity with φ0 Josephson junctions

Constantin Schrade, Silas Hoffman, and Daniel Loss

Phys. Rev. B 95, 195421 (2017) - Published 19 May, 2017

Engineering and manipulating exciton wave packets

Xiaoning Zang, Simone Montangero, Lincoln D. Carr, and Mark T. Lusk

Phys. Rev. B 95, 195423 (2017) - Published 22 May, 2017

Gate-tunable valley currents, nonlocal resistances, and valley accumulation in bilayer graphene nanostructures

Mohammadhadi Azari and George Kirczenow

Phys. Rev. B 95, 195424 (2017) - Published 25 May, 2017

Thermoelectric transport in junctions of Majorana and Dirac channels

Dmitriy S. Shapiro, D. E. Feldman, Alexander D. Mirlin, and Alexander Shnirman

Phys. Rev. B 95, 195425 (2017) - Published 30 May, 2017

Magnetic proximity effect in graphene coupled to a BiFeO3 nanoplate

Yan-Fei Wu, Hua-Ding Song, Liang Zhang, Xin Yang, Zhaohui Ren, Dameng Liu, Han-Chun Wu, Jansheng Wu, Jin-Guang Li, Zhenzhao Jia, Baoming Yan, Xiaosong Wu, Chun-Gang Duan, Gaorong Han, Zhi-Min Liao, and Dapeng Yu

Phys. Rev. B 95, 195426 (2017) - Published 30 May, 2017

Robust high-temperature trion emission in monolayers of Mo(SySe1y)2 alloys

J. Jadczak, A. Delgado, L. Bryja, Y. S. Huang, and P. Hawrylak

Phys. Rev. B 95, 195427 (2017) - Published 30 May, 2017

Surface-bound states in nanodiamonds

Peng Han, Denis Antonov, Jörg Wrachtrup, and Gabriel Bester

Phys. Rev. B 95, 195428 (2017) - Published 30 May, 2017

Josephson junction dynamics in the presence of 2π- and 4π-periodic supercurrents

F. Domínguez, O. Kashuba, E. Bocquillon, J. Wiedenmann, R. S. Deacon, T. M. Klapwijk, G. Platero, L. W. Molenkamp, B. Trauzettel, and E. M. Hankiewicz

Phys. Rev. B 95, 195430 (2017) - Published 30 May, 2017

Nonequilibrium transport through a disordered molecular nanowire

P. Thiessen, E. Díaz, R. A. Römer, and F. Domínguez-Adame

Phys. Rev. B 95, 195431 (2017) - Published 30 May, 2017

ERRATA

Publisher's Note: First-order density-wave-like transitions in surface-doped Na2IrO3 [Phys. Rev. B 94, 041109(R) (2016)]

Kavita Mehlawat and Yogesh Singh

Phys. Rev. B 95, 199901 (2017) - Published 31 May, 2017

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