Browse Issues:

HIGHLIGHTED ARTICLES

Integrability and duality in spin chains

Eyzo Stouten, Pieter W. Claeys, Jean-Sébastien Caux, and Vladimir Gritsev

Phys. Rev. B 99, 075111 (2019) - Published 6 February, 2019

Exactly solvable models have played a key role in our understanding of low-dimensional statistical systems and condensed matter physics. Underlying these models is the famous Yang-Baxter equation, and the authors present here a large class of new integrable quantum many-body models following a rational solution to this equation. Moreover, a duality symmetry connecting different integrable models is uncovered. This is illustrated using an interacting topological system, where the topological phase transition is related to the modular subgroup of the duality symmetry.

Nearly flat Chern bands in moiré superlattices

Ya-Hui Zhang, Dan Mao, Yuan Cao, Pablo Jarillo-Herrero, and T. Senthil

Phys. Rev. B 99, 075127 (2019) - Published 12 February, 2019

The competition between the kinetic energy of electrons in a crystal and the inter-electron Coulomb repulsion underlies many fascinating phenomena in quantum materials. Superlattices formed from moiré patterns in graphene structures have emerged as tunable platforms for such physics. This paper shows that in many graphene moiré structures not only are the electronic bands narrow enough for Coulomb interaction to be important, but they are also topologically nontrivial. This setting of a strong correlated partially filled topological band promises to lead to many novel phenomena.

Fermionic Lieb-Schultz-Mattis theorems and weak symmetry-protected phases

Meng Cheng

Phys. Rev. B 99, 075143 (2019) - Published 21 February, 2019

The celebrated Lieb-Schultz-Mattis theorem excludes a nondegenerate gapped ground state of a spin system with an odd number of s=12 spins per unit cell. Here, the author presents a new family of Lieb-Schultz-Mattis type theorems for fermionic systems that have no analog in spin systems. An example is a particle-hole symmetric system of spinless fermions on a lattice with an odd number of fermionic modes per unit cell. The author shows that a symmetric gapped ground state must be topologically ordered, and the lattice translation symmetries must permute anyon types, resulting in non-Abelian zero modes bound to lattice dislocations. These results can be interpreted as quantum anomalies on the surface of three-dimensional fermionic symmetry-protected phases.

Classification of topological insulators and superconductors out of equilibrium

Max McGinley and Nigel R. Cooper

Phys. Rev. B 99, 075148 (2019) - Published 25 February, 2019

The authors have discovered a topological classification of quantum many-body systems undergoing dynamical evolution, which can be applied to insulators and superconductors driven out of equilibrium. This classification is analogous to the equilibrium classification of topological insulators, which explains the remarkably quantized experimental signatures that these phases are known for. The nonequilibrium classification successfully predicts whether topological edge modes remain stable under external time-dependent fluctuations. This, in turn, has ramifications for the use of such systems in quantum technologies.

Orbital-to-spin angular momentum conversion employing local helicity

Sergey Nechayev, Jörg S. Eismann, Gerd Leuchs, and Peter Banzer

Phys. Rev. B 99, 075155 (2019) - Published 26 February, 2019

Controlling the spatial degrees of freedom of light by its polarization is at the heart of countless phenomena and applications. The most prominent example is the generation of orbital angular momentum by circularly polarized light. Here, the authors demonstrate the opposite effect – mastering spin by orbital angular momentum. They employ a nanoscopic scatterer to manipulate the input field locally at the nanoscale and generate purely circularly polarized light with the spin depending on the orbital angular momentum that they started with.

Singularity in entanglement negativity across finite-temperature phase transitions

Tsung-Cheng Lu and Tarun Grover

Phys. Rev. B 99, 075157 (2019) - Published 26 February, 2019

Phase transitions at a finite (i.e. nonzero) are typically driven by classical fluctuations, as opposed to those at zero temperature where quantum mechanics plays an essential role. Motivated by this observation, here we ask whether there exist any universal signatures of quantum correlations across a finite temperature phase transition? In this work, we approach this question by investigating one measure of quantum correlations at finite temperature, called ‘entanglement negativity’, in several models that exhibit phase transition.

Nonequilibrium properties of graphene probed by superconducting tunnel spectroscopy

Simon Zihlmann, Péter Makk, Sebastián Castilla, Jörg Gramich, Kishan Thodkar, Sabina Caneva, Ruizhi Wang, Stephan Hofmann, and Christian Schönenberger

Phys. Rev. B 99, 075419 (2019) - Published 13 February, 2019

Energy relaxation of hot electrons in a conductor can occur by various mechanisms, including electron-phonon and electron-electron interactions. Superconducting tunnel spectroscopy is a powerful tool to study dissipation in mesoscopic and low-dimensional systems. Here, the authors investigate dissipation and heat transport in graphene through superconducting tunnel spectroscopy. This spectroscopic method is used as a local probe of the energy distribution function, yielding the electron temperature and electrochemical potential for different transport regimes.

Ballistic supercurrent discretization and micrometer-long Josephson coupling in germanium

N. W. Hendrickx, M. L. V. Tagliaferri, M. Kouwenhoven, R. Li, D. P. Franke, A. Sammak, A. Brinkman, G. Scappucci, and M. Veldhorst

Phys. Rev. B 99, 075435 (2019) - Published 27 February, 2019

Germanium quantum wells have long been considered to form an excellent host for spin, superconducting, and topological quantum circuits. As a first experimental step towards planar germanium hybrids, the authors demonstrate gate-tunable Josephson supercurrent that can extend over several micrometers. The supercurrent is observed to become discretized in quantum point contacts due to the quantization of the current carrying modes. These demonstrations provide scope for novel hole-based quantum technologies with control down to the last hole.

ARTICLES

Electronic structure and strongly correlated systems

Dynamic modulation yields one-way beam splitting

Sajjad Taravati and Ahmed A. Kishk

Phys. Rev. B 99, 075101 (2019) - Published 1 February, 2019

Screening of Coulomb interaction and π magnetism in defected graphene

H. Hadipour

Phys. Rev. B 99, 075102 (2019) - Published 1 February, 2019

Ising ferromagnet to valence bond solid transition in a one-dimensional spin chain: Analogies to deconfined quantum critical points

Shenghan Jiang and Olexei Motrunich

Phys. Rev. B 99, 075103 (2019) - Published 1 February, 2019

Charge-spin response and collective excitations in Weyl semimetals

Sayandip Ghosh and Carsten Timm

Phys. Rev. B 99, 075104 (2019) - Published 4 February, 2019

Classification of crystalline topological insulators and superconductors with point group symmetries

Eyal Cornfeld and Adam Chapman

Phys. Rev. B 99, 075105 (2019) - Published 4 February, 2019

Charge disproportionate antiferromagnetism at the verge of the insulator-metal transition in doped LaFeO3

S. Jana, S. K. Panda, D. Phuyal, B. Pal, S. Mukherjee, A. Dutta, P. Anil Kumar, D. Hedlund, J. Schött, P. Thunström, Y. Kvashnin, H. Rensmo, M. Venkata Kamalakar, Carlo U. Segre, P. Svedlindh, K. Gunnarsson, S. Biermann, O. Eriksson, O. Karis, and D. D. Sarma

Phys. Rev. B 99, 075106 (2019) - Published 5 February, 2019

Spin liquids from Majorana zero modes in a Cooper-pair box

Eran Sagi, Hiromi Ebisu, Yukio Tanaka, Ady Stern, and Yuval Oreg

Phys. Rev. B 99, 075107 (2019) - Published 5 February, 2019

One-dimensional Hubbard-Holstein model with finite-range electron-phonon coupling

F. Hébert, Bo Xiao, V. G. Rousseau, R. T. Scalettar, and G. G. Batrouni

Phys. Rev. B 99, 075108 (2019) - Published 6 February, 2019

Kramers doublet ground state in topological Kondo insulators

M. A. Griffith, M. A. Continentino, and T. O. Puel

Phys. Rev. B 99, 075109 (2019) - Published 6 February, 2019

Valence-state and spin-state transition of Co in LaCo0.5Rh0.5O3

S.-C. Liao, S. C. Haw, C. Y. Kuo, H. Guo, H. B. Vasili, S. M. Valvidares, A. C. Komarek, H. Ishii, S. A. Chen, H. J. Lin, A. Tanaka, T. S. Chan, L. H. Tjeng, C. T. Chen, Z. Hu, and J. M. Chen

Phys. Rev. B 99, 075110 (2019) - Published 6 February, 2019

Integrability and duality in spin chains

Eyzo Stouten, Pieter W. Claeys, Jean-Sébastien Caux, and Vladimir Gritsev

Phys. Rev. B 99, 075111 (2019) - Published 6 February, 2019

Exactly solvable models have played a key role in our understanding of low-dimensional statistical systems and condensed matter physics. Underlying these models is the famous Yang-Baxter equation, and the authors present here a large class of new integrable quantum many-body models following a rational solution to this equation. Moreover, a duality symmetry connecting different integrable models is uncovered. This is illustrated using an interacting topological system, where the topological phase transition is related to the modular subgroup of the duality symmetry.

Three-dimensional photonic band gap cavity with finite support: Enhanced energy density and optical absorption

D. Devashish, Oluwafemi S. Ojambati, Shakeeb B. Hasan, J. J. W. van der Vegt, and Willem L. Vos

Phys. Rev. B 99, 075112 (2019) - Published 6 February, 2019

Super-resolving the Ising model with convolutional neural networks

Stavros Efthymiou, Matthew J. S. Beach, and Roger G. Melko

Phys. Rev. B 99, 075113 (2019) - Published 6 February, 2019

Chiral anomaly in type-I Weyl semimetals: Comprehensive analysis within a semiclassical Fermi surface harmonics approach

Annika Johansson, Jürgen Henk, and Ingrid Mertig

Phys. Rev. B 99, 075114 (2019) - Published 6 February, 2019

Geometric quench in the fractional quantum Hall effect: Exact solution in quantum Hall matrix models and comparison with bimetric theory

Matthew F. Lapa, Andrey Gromov, and Taylor L. Hughes

Phys. Rev. B 99, 075115 (2019) - Published 7 February, 2019

Mirror anomaly and anomalous Hall effect in type-I Dirac semimetals

S. Nandy, Kush Saha, A. Taraphder, and Sumanta Tewari

Phys. Rev. B 99, 075116 (2019) - Published 7 February, 2019

Spin-orbital entangled excitonic insulator with quadrupole order

Toshihiro Sato, Tomonori Shirakawa, and Seiji Yunoki

Phys. Rev. B 99, 075117 (2019) - Published 7 February, 2019

Polarization dependence of angle-resolved photoemission with submicron spatial resolution reveals emerging one-dimensionality of electrons in NbSe3

M. A. Valbuena, P. Chudzinski, S. Pons, S. Conejeros, P. Alemany, E. Canadell, H. Berger, E. Frantzeskakis, J. Avila, M. C. Asensio, T. Giamarchi, and M. Grioni

Phys. Rev. B 99, 075118 (2019) - Published 8 February, 2019

Compact numerical solutions to the two-dimensional repulsive Hubbard model obtained via nonunitary similarity transformations

Werner Dobrautz, Hongjun Luo, and Ali Alavi

Phys. Rev. B 99, 075119 (2019) - Published 8 February, 2019

Three-dimensional two-band Floquet topological insulator with Z2 index

Yan He and Chih-Chun Chien

Phys. Rev. B 99, 075120 (2019) - Published 11 February, 2019

Engineering Dirac states in graphene: Coexisting type-I and type-II Floquet-Dirac fermions

Hang Liu, Jia-Tao Sun, and Sheng Meng

Phys. Rev. B 99, 075121 (2019) - Published 11 February, 2019

Thermodynamic and information-theoretic description of the Mott transition in the two-dimensional Hubbard model

C. Walsh, P. Sémon, D. Poulin, G. Sordi, and A.-M. S. Tremblay

Phys. Rev. B 99, 075122 (2019) - Published 11 February, 2019

Average eigenstate entanglement entropy of the XY chain in a transverse field and its universality for translationally invariant quadratic fermionic models

Lucas Hackl, Lev Vidmar, Marcos Rigol, and Eugenio Bianchi

Phys. Rev. B 99, 075123 (2019) - Published 11 February, 2019

Band offset and gap tuning of tetragonal CuOSrTiO3 heterojunctions

Giovanni Drera, Alessio Giampietri, Alfredo Febbrari, Maddalena Patrini, Maria Cristina Mozzati, and Luigi Sangaletti

Phys. Rev. B 99, 075124 (2019) - Published 11 February, 2019

Tuning of the Ru4+ ground-state orbital population in the 4d4 Mott insulator Ca2RuO4 achieved by La doping

D. Pincini, L. S. I. Veiga, C. D. Dashwood, F. Forte, M. Cuoco, R. S. Perry, P. Bencok, A. T. Boothroyd, and D. F. McMorrow

Phys. Rev. B 99, 075125 (2019) - Published 11 February, 2019

Modular covariance properties of composite fermions on the torus

Mikael Fremling

Phys. Rev. B 99, 075126 (2019) - Published 11 February, 2019

Nearly flat Chern bands in moiré superlattices

Ya-Hui Zhang, Dan Mao, Yuan Cao, Pablo Jarillo-Herrero, and T. Senthil

Phys. Rev. B 99, 075127 (2019) - Published 12 February, 2019

The competition between the kinetic energy of electrons in a crystal and the inter-electron Coulomb repulsion underlies many fascinating phenomena in quantum materials. Superlattices formed from moiré patterns in graphene structures have emerged as tunable platforms for such physics. This paper shows that in many graphene moiré structures not only are the electronic bands narrow enough for Coulomb interaction to be important, but they are also topologically nontrivial. This setting of a strong correlated partially filled topological band promises to lead to many novel phenomena.

Extraction of topological information in Tomonaga-Luttinger liquids

Masaaki Nakamura and Shunsuke C. Furuya

Phys. Rev. B 99, 075128 (2019) - Published 13 February, 2019

Interplay between intrinsic and emergent topological protection on interacting helical modes

Raul A. Santos, D. B. Gutman, and Sam T. Carr

Phys. Rev. B 99, 075129 (2019) - Published 14 February, 2019

Non-Hermitian nodal-line semimetals with an anomalous bulk-boundary correspondence

Huaiqiang Wang, Jiawei Ruan, and Haijun Zhang

Phys. Rev. B 99, 075130 (2019) - Published 14 February, 2019

Weyl-loop half-metal in Li3(FeO3)2

Cong Chen, Zhi-Ming Yu, Si Li, Ziyu Chen, Xian-Lei Sheng, and Shengyuan A. Yang

Phys. Rev. B 99, 075131 (2019) - Published 14 February, 2019

Machine learning density functional theory for the Hubbard model

James Nelson, Rajarshi Tiwari, and Stefano Sanvito

Phys. Rev. B 99, 075132 (2019) - Published 15 February, 2019

Bipartite fluctuations and topology of Dirac and Weyl systems

Loïc Herviou, Karyn Le Hur, and Christophe Mora

Phys. Rev. B 99, 075133 (2019) - Published 19 February, 2019

Disorder correction to the Néel temperature of ruthenium-doped BaFe2As2: Theoretical analysis

S. V. Kokanova and A. V. Rozhkov

Phys. Rev. B 99, 075134 (2019) - Published 19 February, 2019

Dynamically screened Coulomb interaction in the parent compounds of hole-doped cuprates: Trends and exceptions

F. Nilsson, K. Karlsson, and F. Aryasetiawan

Phys. Rev. B 99, 075135 (2019) - Published 19 February, 2019

Doping-induced persistent spin helix with a large spin splitting in monolayer SnSe

Moh. Adhib Ulil Absor and Fumiyuki Ishii

Phys. Rev. B 99, 075136 (2019) - Published 19 February, 2019

Optical properties and electromagnetic modes of Weyl semimetals

Qianfan Chen, A. Ryan Kutayiah, Ivan Oladyshkin, Mikhail Tokman, and Alexey Belyanin

Phys. Rev. B 99, 075137 (2019) - Published 19 February, 2019

Entanglement susceptibilities and universal geometric entanglement entropy

William Witczak-Krempa

Phys. Rev. B 99, 075138 (2019) - Published 20 February, 2019

Nonequilibrium Green's functions and their relation to the negative differential conductance in the interacting resonant level model

Max E. Sorantin, Wolfgang von der Linden, Roman Lucrezi, and Enrico Arrigoni

Phys. Rev. B 99, 075139 (2019) - Published 20 February, 2019

Strain and screening: Optical properties of a small-diameter carbon nanotube from first principles

Christian Wagner, Jörg Schuster, and André Schleife

Phys. Rev. B 99, 075140 (2019) - Published 20 February, 2019

Heat transport in the anisotropic Kitaev spin liquid

Angelo Pidatella, Alexandros Metavitsiadis, and Wolfram Brenig

Phys. Rev. B 99, 075141 (2019) - Published 20 February, 2019

Dichotomic nature of spin and electronic fluctuations in FeSe

A. Glamazda, P. Lemmens, J. M. Ok, Jun Sung Kim, and K.-Y. Choi

Phys. Rev. B 99, 075142 (2019) - Published 21 February, 2019

Fermionic Lieb-Schultz-Mattis theorems and weak symmetry-protected phases

Meng Cheng

Phys. Rev. B 99, 075143 (2019) - Published 21 February, 2019

The celebrated Lieb-Schultz-Mattis theorem excludes a nondegenerate gapped ground state of a spin system with an odd number of s=12 spins per unit cell. Here, the author presents a new family of Lieb-Schultz-Mattis type theorems for fermionic systems that have no analog in spin systems. An example is a particle-hole symmetric system of spinless fermions on a lattice with an odd number of fermionic modes per unit cell. The author shows that a symmetric gapped ground state must be topologically ordered, and the lattice translation symmetries must permute anyon types, resulting in non-Abelian zero modes bound to lattice dislocations. These results can be interpreted as quantum anomalies on the surface of three-dimensional fermionic symmetry-protected phases.

Orbital magnetization and anomalous Hall effect in interacting Weyl semimetals

S. Acheche, R. Nourafkan, and A.-M. S. Tremblay

Phys. Rev. B 99, 075144 (2019) - Published 22 February, 2019

Interaction quench and thermalization in a one-dimensional topological Kondo insulator

I. Hagymási, C. Hubig, and U. Schollwöck

Phys. Rev. B 99, 075145 (2019) - Published 25 February, 2019

Classification of topological insulators and superconductors out of equilibrium

Max McGinley and Nigel R. Cooper

Phys. Rev. B 99, 075148 (2019) - Published 25 February, 2019

The authors have discovered a topological classification of quantum many-body systems undergoing dynamical evolution, which can be applied to insulators and superconductors driven out of equilibrium. This classification is analogous to the equilibrium classification of topological insulators, which explains the remarkably quantized experimental signatures that these phases are known for. The nonequilibrium classification successfully predicts whether topological edge modes remain stable under external time-dependent fluctuations. This, in turn, has ramifications for the use of such systems in quantum technologies.

Diagonal Padé approximant of the one-body Green's function: A study on Hubbard rings

Walter Tarantino and Stefano Di Sabatino

Phys. Rev. B 99, 075149 (2019) - Published 25 February, 2019

Chiral magnetic photocurrent in Dirac and Weyl materials

Sahal Kaushik, Dmitri E. Kharzeev, and Evan John Philip

Phys. Rev. B 99, 075150 (2019) - Published 25 February, 2019

First-principles study of localized and delocalized electronic states in crystallographic shear phases of niobium oxide

Can P. Koçer, Kent J. Griffith, Clare P. Grey, and Andrew J. Morris

Phys. Rev. B 99, 075151 (2019) - Published 25 February, 2019

Area law and universality in the statistics of subsystem energy

Khadijeh Najafi and M. A. Rajabpour

Phys. Rev. B 99, 075152 (2019) - Published 25 February, 2019

Transport across junctions of a Weyl and a multi-Weyl semimetal

Debabrata Sinha and K. Sengupta

Phys. Rev. B 99, 075153 (2019) - Published 27 February, 2019

Compton profile of VO2 across the metal-insulator transition: Evidence of a non-Fermi liquid metal

Ilkka Kylänpää, Ye Luo, Olle Heinonen, Paul R. C. Kent, and Jaron T. Krogel

Phys. Rev. B 99, 075154 (2019) - Published 26 February, 2019

Orbital-to-spin angular momentum conversion employing local helicity

Sergey Nechayev, Jörg S. Eismann, Gerd Leuchs, and Peter Banzer

Phys. Rev. B 99, 075155 (2019) - Published 26 February, 2019

Controlling the spatial degrees of freedom of light by its polarization is at the heart of countless phenomena and applications. The most prominent example is the generation of orbital angular momentum by circularly polarized light. Here, the authors demonstrate the opposite effect – mastering spin by orbital angular momentum. They employ a nanoscopic scatterer to manipulate the input field locally at the nanoscale and generate purely circularly polarized light with the spin depending on the orbital angular momentum that they started with.

Anisotropic phase diagram of ferroquadrupolar ordering in the trigonal chiral compound DyNi3Ga9

Isao Ishii, Kohki Takezawa, Takuyou Mizuno, Soichiro Kumano, Takashi Suzuki, Hiroki Ninomiya, Keisuke Mitsumoto, Kazunori Umeo, Shota Nakamura, and Shigeo Ohara

Phys. Rev. B 99, 075156 (2019) - Published 26 February, 2019

Singularity in entanglement negativity across finite-temperature phase transitions

Tsung-Cheng Lu and Tarun Grover

Phys. Rev. B 99, 075157 (2019) - Published 26 February, 2019

Phase transitions at a finite (i.e. nonzero) are typically driven by classical fluctuations, as opposed to those at zero temperature where quantum mechanics plays an essential role. Motivated by this observation, here we ask whether there exist any universal signatures of quantum correlations across a finite temperature phase transition? In this work, we approach this question by investigating one measure of quantum correlations at finite temperature, called ‘entanglement negativity’, in several models that exhibit phase transition.

First-order topological quantum phase transition in a strongly correlated ladder

Simone Barbarino, Giorgio Sangiovanni, and Jan Carl Budich

Phys. Rev. B 99, 075158 (2019) - Published 27 February, 2019

Electronic structure of the quadrupolar ordered heavy-fermion compound YbRu2Ge2 measured by angle-resolved photoemission

H. Pfau, E. W. Rosenberg, P. Massat, B. Moritz, M. Hashimoto, D. Lu, I. R. Fisher, and Z.-X. Shen

Phys. Rev. B 99, 075159 (2019) - Published 28 February, 2019

Geometry and electronic structure of monolayer, bilayer, and multilayer Janus WSSe

Wenzhe Zhou, Jianyong Chen, Zhixiong Yang, Junwei Liu, and Fangping Ouyang

Phys. Rev. B 99, 075160 (2019) - Published 28 February, 2019

Mixed-valence transition in a quantum dot coupled to superconducting and spin-polarized leads

Minchul Lee and Mahn-Soo Choi

Phys. Rev. B 99, 075161 (2019) - Published 28 February, 2019

Semiconductors I: bulk

Observation of magnetic field sweep direction dependent dynamic nuclear polarization under periodic optical electron spin pumping

Michael Macmahon, Joseph R. Iafrate, Michael J. Dominguez, and Vanessa Sih

Phys. Rev. B 99, 075201 (2019) - Published 7 February, 2019

Phonon thermal conductance across GaN-AlN interfaces from first principles

Carlos A. Polanco and Lucas Lindsay

Phys. Rev. B 99, 075202 (2019) - Published 8 February, 2019

Insulating titanium oxynitride for visible light photocatalysis

Yuta Aoki, Masahiro Sakurai, Sinisa Coh, James R. Chelikowsky, Steven G. Louie, Marvin L. Cohen, and Susumu Saito

Phys. Rev. B 99, 075203 (2019) - Published 25 February, 2019

Spontaneous symmetry breaking of an interacting Chern insulator on a topological square lattice

Yi-Xiang Wang and Dong-Xiang Qi

Phys. Rev. B 99, 075204 (2019) - Published 27 February, 2019

Eigenenergies of excitonic giant-dipole states in cuprous oxide

Markus Kurz and Stefan Scheel

Phys. Rev. B 99, 075205 (2019) - Published 28 February, 2019

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

Phonon-induced quantum ratchet in the exciton spin dynamics in diluted magnetic semiconductors in a magnetic field

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

Phys. Rev. B 99, 075301 (2019) - Published 5 February, 2019

Plasmon-assisted two-photon Rabi oscillations in a semiconductor quantum dot – metal nanoparticle heterodimer

Bintoro S. Nugroho, Alexander A. Iskandar, Victor A. Malyshev, and Jasper Knoester

Phys. Rev. B 99, 075302 (2019) - Published 11 February, 2019

Magnetoresistance in the in-plane magnetic field induced semimetallic phase of inverted HgTe quantum wells

T. Khouri, S. Pezzini, M. Bendias, P. Leubner, U. Zeitler, N. E. Hussey, H. Buhmann, L. W. Molenkamp, M. Titov, and S. Wiedmann

Phys. Rev. B 99, 075303 (2019) - Published 11 February, 2019

Surface states in topological semimetal slab geometries

Enrique Benito-Matías and Rafael A. Molina

Phys. Rev. B 99, 075304 (2019) - Published 19 February, 2019

Core-shell nanospheres under visible light: Optimal absorption, scattering, and cloaking

Arsen Sheverdin and Constantinos Valagiannopoulos

Phys. Rev. B 99, 075305 (2019) - Published 19 February, 2019

Fe/GeTe(111) heterostructures as an avenue towards spintronics based on ferroelectric Rashba semiconductors

Jagoda Sławińska, Domenico Di Sante, Sara Varotto, Christian Rinaldi, Riccardo Bertacco, and Silvia Picozzi

Phys. Rev. B 99, 075306 (2019) - Published 19 February, 2019

Subsecond nuclear spin dynamics in n-GaAs

P. S. Sokolov, M. Yu. Petrov, K. V. Kavokin, M. S. Kuznetsova, S. Yu. Verbin, I. Ya. Gerlovin, D. R. Yakovlev, and M. Bayer

Phys. Rev. B 99, 075307 (2019) - Published 19 February, 2019

Incorporation of random alloy GaBixAs1x barriers in InAs quantum dot molecules: Energy levels and confined hole states

Arthur Lin, Matthew F. Doty, and Garnett W. Bryant

Phys. Rev. B 99, 075308 (2019) - Published 22 February, 2019

Fourier modal method for the description of nanoparticle lattices in the dipole approximation

Ilia M. Fradkin, Sergey A. Dyakov, and Nikolay A. Gippius

Phys. Rev. B 99, 075310 (2019) - Published 27 February, 2019

Attractive interactions between like-oriented surface steps from an ab initio perspective: Role of the elastic and electrostatic contributions

Giulia Righi, Anna Franchini, and Rita Magri

Phys. Rev. B 99, 075311 (2019) - Published 28 February, 2019

Surface physics, nanoscale physics, low-dimensional systems

Analytical and numerical analysis of linear and nonlinear properties of an rf-SQUID based metasurface

M. M. Müller, B. Maier, C. Rockstuhl, and M. Hochbruck

Phys. Rev. B 99, 075401 (2019) - Published 1 February, 2019

Power-law energy level spacing distributions in fractals

Askar A. Iliasov, Mikhail I. Katsnelson, and Shengjun Yuan

Phys. Rev. B 99, 075402 (2019) - Published 1 February, 2019

Intersubband plasmon excitations in doped carbon nanotubes

Daria Satco, Ahmad R. T. Nugraha, M. Shoufie Ukhtary, Daria Kopylova, Albert G. Nasibulin, and Riichiro Saito

Phys. Rev. B 99, 075403 (2019) - Published 4 February, 2019

Transition from T4 to T1 behavior of conductivity and violation of Matthiessen's rule in p-type monolayer MoS2 from acoustic phonon scattering

Xiao-Qin Yu, Qing-Lian Xu, Zhen-Gang Zhu, and Gang Su

Phys. Rev. B 99, 075404 (2019) - Published 4 February, 2019

Photogalvanic currents in dynamically gapped transition metal dichalcogenide monolayers

V. M. Kovalev and I. G. Savenko

Phys. Rev. B 99, 075405 (2019) - Published 5 February, 2019

Strong interband interaction in the excitonic insulator phase of Ta2NiSe5

Jinwon Lee, Chang-Jong Kang, Man Jin Eom, Jun Sung Kim, Byung Il Min, and Han Woong Yeom

Phys. Rev. B 99, 075408 (2019) - Published 6 February, 2019

Edge states in a two-dimensional nonsymmorphic semimetal

P. G. Matveeva, D. N. Aristov, D. Meidan, and D. B. Gutman

Phys. Rev. B 99, 075409 (2019) - Published 6 February, 2019

Pseudo-Euler equations from nonlinear optics: Plasmon-assisted photodetection beyond hydrodynamics

Alessandro Principi, Denis Bandurin, Habib Rostami, and Marco Polini

Phys. Rev. B 99, 075410 (2019) - Published 7 February, 2019

Spectroscopy of double quantum dot two-spin states by tuning the interdot barrier

G. Giavaras and Y. Tokura

Phys. Rev. B 99, 075412 (2019) - Published 8 February, 2019

Exceptional points and spectral singularities in active epsilon-near-zero plasmonic waveguides

Ying Li and Christos Argyropoulos

Phys. Rev. B 99, 075413 (2019) - Published 11 February, 2019

Nonequilibrium dual-fermion approach to electronic transport in disordered nanostructures

Chenyi Zhou and Hong Guo

Phys. Rev. B 99, 075414 (2019) - Published 11 February, 2019

Direction-dependent giant optical conductivity in two-dimensional semi-Dirac materials

Alestin Mawrie and Bhaskaran Muralidharan

Phys. Rev. B 99, 075415 (2019) - Published 12 February, 2019

Supercurrent carried by nonequilibrium quasiparticles in a multiterminal Josephson junction

M. P. Nowak, M. Wimmer, and A. R. Akhmerov

Phys. Rev. B 99, 075416 (2019) - Published 12 February, 2019

Dynamics of the Anderson impurity model: Benchmarking a nonadiabatic exchange-correlation potential in time-dependent density-functional theory

Niklas Dittmann, Nicole Helbig, and Dante M. Kennes

Phys. Rev. B 99, 075417 (2019) - Published 13 February, 2019

Extracting critical exponents by finite-size scaling with convolutional neural networks

Zhenyu Li, Mingxing Luo, and Xin Wan

Phys. Rev. B 99, 075418 (2019) - Published 13 February, 2019

Nonequilibrium properties of graphene probed by superconducting tunnel spectroscopy

Simon Zihlmann, Péter Makk, Sebastián Castilla, Jörg Gramich, Kishan Thodkar, Sabina Caneva, Ruizhi Wang, Stephan Hofmann, and Christian Schönenberger

Phys. Rev. B 99, 075419 (2019) - Published 13 February, 2019

Energy relaxation of hot electrons in a conductor can occur by various mechanisms, including electron-phonon and electron-electron interactions. Superconducting tunnel spectroscopy is a powerful tool to study dissipation in mesoscopic and low-dimensional systems. Here, the authors investigate dissipation and heat transport in graphene through superconducting tunnel spectroscopy. This spectroscopic method is used as a local probe of the energy distribution function, yielding the electron temperature and electrochemical potential for different transport regimes.

Casimir interaction of two dielectric half spaces with Chern-Simons boundary layers

Valery N. Marachevsky

Phys. Rev. B 99, 075420 (2019) - Published 13 February, 2019

Optical absorption in monolayer SnO2

C. E. Ekuma

Phys. Rev. B 99, 075421 (2019) - Published 14 February, 2019

Moiré patterns in van der Waals heterostructures

Maxime Le Ster, Tobias Maerkl, Pawel J. Kowalczyk, and Simon A. Brown

Phys. Rev. B 99, 075422 (2019) - Published 15 February, 2019

Floquet spectrum and two-terminal conductance of a transition-metal dichalcogenide ribbon under a circularly polarized laser field

A. Huamán and Gonzalo Usaj

Phys. Rev. B 99, 075423 (2019) - Published 15 February, 2019

Second-harmonic generation in Mie-resonant dielectric nanoparticles made of noncentrosymmetric materials

Kristina Frizyuk, Irina Volkovskaya, Daria Smirnova, Alexander Poddubny, and Mihail Petrov

Phys. Rev. B 99, 075425 (2019) - Published 19 February, 2019

Topological edge states induced by the Zak phase in A3B monolayers

Tomoaki Kameda, Feng Liu, Sudipta Dutta, and Katsunori Wakabayashi

Phys. Rev. B 99, 075426 (2019) - Published 19 February, 2019

Electronic structures of air-exposed few-layer black phosphorus by optical spectroscopy

Fanjie Wang, Guowei Zhang, Shenyang Huang, Chaoyu Song, Chong Wang, Qiaoxia Xing, Yuchen Lei, and Hugen Yan

Phys. Rev. B 99, 075427 (2019) - Published 19 February, 2019

Thermally assisted lubricity and negative work tails in sliding friction

Franco Pellegrini, Emanuele Panizon, Giuseppe E. Santoro, and Erio Tosatti

Phys. Rev. B 99, 075428 (2019) - Published 19 February, 2019

Nonlocal thermoelectricity in a Cooper-pair splitter

Robert Hussein, Michele Governale, Sigmund Kohler, Wolfgang Belzig, Francesco Giazotto, and Alessandro Braggio

Phys. Rev. B 99, 075429 (2019) - Published 19 February, 2019

Lead-related quantum emitters in diamond

Matthew E. Trusheim, Noel H. Wan, Kevin C. Chen, Christopher J. Ciccarino, Johannes Flick, Ravishankar Sundararaman, Girish Malladi, Eric Bersin, Michael Walsh, Benjamin Lienhard, Hassaram Bakhru, Prineha Narang, and Dirk Englund

Phys. Rev. B 99, 075430 (2019) - Published 21 February, 2019

Geometry and electronic structure of iridium adsorbed on graphene

Bradford A. Barker, Aaron J. Bradley, Miguel M. Ugeda, Sinisa Coh, Alex Zettl, Michael F. Crommie, Steven G. Louie, and Marvin L. Cohen

Phys. Rev. B 99, 075431 (2019) - Published 22 February, 2019

Ultraviolet dynamics from ground-state overlap in the Kondo model

C. D. Pelwan and I. Snyman

Phys. Rev. B 99, 075432 (2019) - Published 22 February, 2019

Nonmonotonic thermoelectric currents and energy harvesting in interacting double quantum dots

Yair Mazal, Yigal Meir, and Yonatan Dubi

Phys. Rev. B 99, 075433 (2019) - Published 22 February, 2019

Shear sound of two-dimensional Fermi liquids

Jun Yong Khoo and Inti Sodemann Villadiego

Phys. Rev. B 99, 075434 (2019) - Published 27 February, 2019

Ballistic supercurrent discretization and micrometer-long Josephson coupling in germanium

N. W. Hendrickx, M. L. V. Tagliaferri, M. Kouwenhoven, R. Li, D. P. Franke, A. Sammak, A. Brinkman, G. Scappucci, and M. Veldhorst

Phys. Rev. B 99, 075435 (2019) - Published 27 February, 2019

Germanium quantum wells have long been considered to form an excellent host for spin, superconducting, and topological quantum circuits. As a first experimental step towards planar germanium hybrids, the authors demonstrate gate-tunable Josephson supercurrent that can extend over several micrometers. The supercurrent is observed to become discretized in quantum point contacts due to the quantization of the current carrying modes. These demonstrations provide scope for novel hole-based quantum technologies with control down to the last hole.

Tuning the Aharonov-Bohm effect with dephasing in nonequilibrium transport

Georg Engelhardt and Jianshu Cao

Phys. Rev. B 99, 075436 (2019) - Published 28 February, 2019

Two-dimensional materials in the presence of nonplanar interfaces

Danilo T. Alves and N. M. R. Peres

Phys. Rev. B 99, 075437 (2019) - Published 28 February, 2019

Twist-angle dependence of the proximity spin-orbit coupling in graphene on transition-metal dichalcogenides

Yang Li and Mikito Koshino

Phys. Rev. B 99, 075438 (2019) - Published 28 February, 2019

ERRATA

Erratum: Anomalous metallic state with strong charge fluctuations in BaxTi8O16+δ revealed by hard x-ray photoemission spectroscopy [Phys. Rev. B 97, 165116 (2018)]

S. Dash, T. Kajita, M. Okawa, T. Saitoh, E. Ikenaga, N. L. Saini, T. Katsufuji, and T. Mizokawa

Phys. Rev. B 99, 079901 (2019) - Published 6 February, 2019

Erratum: Spatially resolved and time-resolved imaging of transport of indirect excitons in high magnetic fields [Phys. Rev. B 95, 235308 (2017)]

C. J. Dorow, M. W. Hasling, E. V. Calman, L. V. Butov, J. Wilkes, K. L. Campman, and A. C. Gossard

Phys. Rev. B 99, 079902 (2019) - Published 7 February, 2019

Erratum: Metallic phases from disordered (2+1)-dimensional quantum electrodynamics [Phys. Rev. B 95, 235145 (2017)]

Pallab Goswami, Hart Goldman, and S. Raghu

Phys. Rev. B 99, 079903 (2019) - Published 7 February, 2019

Erratum: Efficient orbital angular momentum transfer between plasmons and free electrons [Phys. Rev. B 98, 045424 (2018)]

Wei Cai, Ori Reinhardt, Ido Kaminer, and F. Javier García de Abajo

Phys. Rev. B 99, 079904 (2019) - Published 14 February, 2019

Erratum: Electron diffraction by plasmon waves [Phys. Rev. B 94, 041404(R) (2016)]

F. J. García de Abajo, B. Barwick, and F. Carbone

Phys. Rev. B 99, 079905 (2019) - Published 14 February, 2019

Sign In to Your Journals Account

Filter

Filter

Article Lookup

Enter a citation