Browse Issues:

EDITORIALS AND ANNOUNCEMENTS

Editorial: A Welcoming Home for Applied Science

Jessica Thomas and Michael Thoennessen

Phys. Rev. B 106, 150001 (2022) - Published 11 October, 2022

HIGHLIGHTED ARTICLES

Quantized bulk conductivity as a local Chern marker

Peru d'Ornellas, Ryan Barnett, and Derek K. K. Lee

Phys. Rev. B 106, 155124 (2022) - Published 13 October, 2022

Chern insulators display a remarkable insensitivity to spatial disorder and imperfections. Despite this, the Chern number itself is defined in momentum space, and can only be calculated in a clean crystalline material. The authors propose here a spatial Chern marker defined on physical grounds – as the local cross-conductivity around a chosen point in the bulk of the system. The formulation can be related to several other proposed local measures but has the advantage that it constitutes a physical observable of the system. Examples are probed, showing that it is quantized when calculated sufficiently far from the boundary and resistant against disorder.

Crystal electric field and properties of 4f magnetic moments at the surface of the rare-earth compound TbRh2Si2

Artem V. Tarasov, Daria Glazkova, Susanne Schulz, Georg Poelchen, Kristin Kliemt, Alexej Kraiker, Matthias Muntwiler, Clemens Laubschat, Alexander Generalov, Craig Polley, Cornelius Krellner, Denis V. Vyalikh, and Dmitry Yu. Usachov

Phys. Rev. B 106, 155136 (2022) - Published 19 October, 2022

By means of 4f photoemission measurements and first-principles calculations, the authors demonstrate here how the crystal electric field (CEF) and related magnetic properties can be modified at the surface of rare-earth materials. For TbRh2Si2, CEF at the Tb surface makes the 4f moments orthogonal to those in the bulk. For the Tb layer below the Si termination, the temperature-dependent photoemission data reveal larger CEF splitting relative to the bulk. The methodology used here can facilitate unveiling of the surface magnetic properties of layered 4f systems.

Flat bands and band-touching from real-space topology in hyperbolic lattices

Tomáš Bzdušek and Joseph Maciejko

Phys. Rev. B 106, 155146 (2022) - Published 24 October, 2022

Hopping models on geometrically frustrated lattices, such as the kagome and dice lattices, exhibit perfectly flat energy bands that result from eigenstates localized along contractible and/or noncontractible real-space loops. The degeneracy of such flat bands has been understood from an interplay of real-space topology and momentum-space band theory. Here, the authors generalize this paradigm to frustrated hyperbolic lattices, including those realized in recent circuit quantum electrodynamics experiments. They show that hyperbolic flat-band characteristics can similarly be understood by combining real-space topology arguments with the recently developed hyperbolic band theory.

Full configuration interaction quantum Monte Carlo for coupled electron-boson systems and infinite spaces

Robert J. Anderson, Charles J. C. Scott, and George H. Booth

Phys. Rev. B 106, 155158 (2022) - Published 31 October, 2022

When electrons interact not only with themselves, but also with bosons (phonons or other bosonic quasiparticles), what was previously a “curse of dimensionality” for its computational solution now becomes one of infinite size. To deal with this, the authors adapt here a recent method for its stochastic solution, without requiring truncation of the bosonic occupations, and which allows systematic improvability to exact solutions. They apply this to the paradigmatic Hubbard-Holstein model of local phonons, finding a state-of-the-art solution in the thermodynamic limit, as well as to a novel approach in which long-range collective electronic fluctuations are mapped to bosonic quasiparticles to tackle even long-range interacting problems of purely electronic form.

Planckian properties of two-dimensional semiconductor systems

Seongjin Ahn and Sankar Das Sarma

Phys. Rev. B 106, 155427 (2022) - Published 27 October, 2022

The low-temperature resistivity and the temperature-dependent inelastic scattering rate of several different doped 2D semiconductor systems are described and discussed from the perspective of the Planckian hypothesis of the scattering rate having an intrinsic fundamental bound of kBT. The Planckian holds for all the systems with the scattering rate never exceeding kBT by more than an order of magnitude either in the experiment or in the theory. In addition, the authors calculate the temperature-dependent electron-electron inelastic scattering rate by obtaining the temperature-dependent self-energy arising from the Coulomb interaction, also finding it to obey the Planckian bound within an order of magnitude at all densities and temperatures. A theory is provided for why such a generalized Planckian bound applies generically.

ARTICLES

Electronic structure and strongly correlated systems

Information geometry of quantum critical submanifolds: Relevant, marginal, and irrelevant operators

Bruno Mera, Nikola Paunković, Syed Tahir Amin, and Vítor R. Vieira

Phys. Rev. B 106, 155101 (2022) - Published 3 October, 2022

Nonuniform grids for Brillouin zone integration and interpolation

Siyu Chen, Pascal T. Salzbrenner, and Bartomeu Monserrat

Phys. Rev. B 106, 155102 (2022) - Published 3 October, 2022

Haldane gap in the SU(3) [3 0 0] Heisenberg chain

Lukas Devos, Laurens Vanderstraeten, and Frank Verstraete

Phys. Rev. B 106, 155103 (2022) - Published 3 October, 2022

Boundary logarithmic corrections to the dynamical correlation functions of one-dimensional spin-12 chains

Imke Schneider, Ipsita Mandal, Polina Matveeva, Dominik Strassel, and Sebastian Eggert

Phys. Rev. B 106, 155104 (2022) - Published 3 October, 2022

Local Ward identities for collective excitations in fermionic systems with spontaneously broken symmetries

Pietro M. Bonetti

Phys. Rev. B 106, 155105 (2022) - Published 3 October, 2022

Ground-state phase diagram of a spin-12 frustrated XXZ ladder

Takuhiro Ogino, Ryui Kaneko, Satoshi Morita, and Shunsuke Furukawa

Phys. Rev. B 106, 155106 (2022) - Published 3 October, 2022

Quasimolecular electronic structure of the spin-liquid candidate Ba3InIr2O9

A. Revelli, M. Moretti Sala, G. Monaco, M. Magnaterra, J. Attig, L. Peterlini, T. Dey, A. A. Tsirlin, P. Gegenwart, T. Fröhlich, M. Braden, C. Grams, J. Hemberger, P. Becker, P. H. M. van Loosdrecht, D. I. Khomskii, J. van den Brink, M. Hermanns, and M. Grüninger

Phys. Rev. B 106, 155107 (2022) - Published 4 October, 2022

Quantum interference of hydrodynamic modes in a dirty marginal Fermi liquid

Tsz Chun Wu, Yunxiang Liao, and Matthew S. Foster

Phys. Rev. B 106, 155108 (2022) - Published 4 October, 2022

Identification of a characteristic doping for charge order phenomena in Bi-2212 cuprates via RIXS

Haiyu Lu, Makoto Hashimoto, Su-Di Chen, Shigeyuki Ishida, Dongjoon Song, Hiroshi Eisaki, Abhishek Nag, Mirian Garcia-Fernandez, Riccardo Arpaia, Giacomo Ghiringhelli, Lucio Braicovich, Jan Zaanen, Brian Moritz, Kurt Kummer, Nicholas B. Brookes, Ke-Jin Zhou, Zhi-Xun Shen, Thomas P. Devereaux, and Wei-Sheng Lee

Phys. Rev. B 106, 155109 (2022) - Published 4 October, 2022

Negative sign free formulations of generalized Kitaev models with higher symmetries

Toshihiro Sato and Fakher F. Assaad

Phys. Rev. B 106, 155110 (2022) - Published 4 October, 2022

Energy-filtered random-phase states as microcanonical thermal pure quantum states

Kazuhiro Seki and Seiji Yunoki

Phys. Rev. B 106, 155111 (2022) - Published 4 October, 2022

Large antiferromagnetic fluctuation enhancement of the thermopower at a critical doping in magnetic semimetal Cr1+δTe2

Atwa Mohamed, Yuita Fujisawa, Takatsugu Onishi, Markel Pardo-Almanza, Mathieu Couillard, Keita Harada, Tsunehiro Takeuchi, and Yoshinori Okada

Phys. Rev. B 106, 155112 (2022) - Published 5 October, 2022

Critical light-matter entanglement at cavity mediated phase transitions

Giuliano Chiriacò, Marcello Dalmonte, and Titas Chanda

Phys. Rev. B 106, 155113 (2022) - Published 6 October, 2022

Moment functional based spectral density functional theory

Frank Freimuth, Stefan Blügel, and Yuriy Mokrousov

Phys. Rev. B 106, 155114 (2022) - Published 6 October, 2022

Correlated metals and unconventional superconductivity in rhombohedral trilayer graphene: A renormalization group analysis

Da-Chuan Lu, Taige Wang, Shubhayu Chatterjee, and Yi-Zhuang You

Phys. Rev. B 106, 155115 (2022) - Published 6 October, 2022

Green's function approach to interacting higher-order topological insulators

Heqiu Li, Hae-Young Kee, and Yong Baek Kim

Phys. Rev. B 106, 155116 (2022) - Published 6 October, 2022

Temperature-driven changes in the Fermi surface of graphite

Laxman R. Thoutam, Samuel E. Pate, Tingting Wang, Yong-Lei Wang, Ralu Divan, Ivar Martin, Adina Luican-Mayer, Ulrich Welp, Wai-Kwong Kwok, and Zhi-Li Xiao

Phys. Rev. B 106, 155117 (2022) - Published 10 October, 2022

Magnetic anisotropy energies and metal-insulator transitions in monolayers of αRuCl3 and OsCl3 on graphene

P. H. Souza, D. P. de Andrade Deus, W. H. Brito, and R. H. Miwa

Phys. Rev. B 106, 155118 (2022) - Published 10 October, 2022

Aharonov-Bohm cages, flat bands, and gap labeling in hyperbolic tilings

Rémy Mosseri, Roger Vogeler, and Julien Vidal

Phys. Rev. B 106, 155120 (2022) - Published 11 October, 2022

Thermodynamics of the metal-insulator transition in the extended Hubbard model from determinantal quantum Monte Carlo

Alexander Sushchyev and Stefan Wessel

Phys. Rev. B 106, 155121 (2022) - Published 12 October, 2022

Excitonic switching across a Z2 topological phase transition: From Mott-Wannier to Frenkel excitons in organic materials

D. Romanin, M. Calandra, and A. W. Chin

Phys. Rev. B 106, 155122 (2022) - Published 12 October, 2022

Hallmarks of Majorana mode leaking into a hybrid double quantum dot

Piotr Majek, Grzegorz Górski, Tadeusz Domański, and Ireneusz Weymann

Phys. Rev. B 106, 155123 (2022) - Published 13 October, 2022

Quantized bulk conductivity as a local Chern marker

Peru d'Ornellas, Ryan Barnett, and Derek K. K. Lee

Phys. Rev. B 106, 155124 (2022) - Published 13 October, 2022

Chern insulators display a remarkable insensitivity to spatial disorder and imperfections. Despite this, the Chern number itself is defined in momentum space, and can only be calculated in a clean crystalline material. The authors propose here a spatial Chern marker defined on physical grounds – as the local cross-conductivity around a chosen point in the bulk of the system. The formulation can be related to several other proposed local measures but has the advantage that it constitutes a physical observable of the system. Examples are probed, showing that it is quantized when calculated sufficiently far from the boundary and resistant against disorder.

Magnetic and charge instabilities in vanadium-based topological kagome metals

Hai-Yang Ma, Jia-Xin Yin, M. Zahid Hasan, and Jianpeng Liu

Phys. Rev. B 106, 155125 (2022) - Published 14 October, 2022

Correlations, long-range entanglement, and dynamics in long-range Kitaev chains

Gianluca Francica and Luca Dell'Anna

Phys. Rev. B 106, 155126 (2022) - Published 14 October, 2022

Artificial neural network states for nonadditive systems

Wojciech Rzadkowski, Mikhail Lemeshko, and Johan H. Mentink

Phys. Rev. B 106, 155127 (2022) - Published 17 October, 2022

Energy-twisted boundary condition and response in one-dimensional quantum many-body systems

Ryota Nakai, Taozhi Guo, and Shinsei Ryu

Phys. Rev. B 106, 155128 (2022) - Published 17 October, 2022

Finite-temperature optical conductivity with density-matrix renormalization group methods for the Holstein polaron and bipolaron with dispersive phonons

David Jansen, Janez Bonča, and Fabian Heidrich-Meisner

Phys. Rev. B 106, 155129 (2022) - Published 17 October, 2022

Spatial spin-spin correlations of the single-impurity Anderson model with a ferromagnetic bath

Peng Fan, Ning-Hua Tong, and Zhen-Gang Zhu

Phys. Rev. B 106, 155130 (2022) - Published 17 October, 2022

Deconfined quantum critical point with nonlocality

Yichen Xu, Xiao-Chuan Wu, and Cenke Xu

Phys. Rev. B 106, 155131 (2022) - Published 18 October, 2022

Two-component parton fractional quantum Hall state in graphene

Ying-Hai Wu

Phys. Rev. B 106, 155132 (2022) - Published 18 October, 2022

X-ray absorption using the projector augmented-wave method and the Bethe-Salpeter equation

Martin Unzog, Alexey Tal, and Georg Kresse

Phys. Rev. B 106, 155133 (2022) - Published 18 October, 2022

Fano resonance in the strong-coupling regime

M. Ahsan Zeb

Phys. Rev. B 106, 155134 (2022) - Published 18 October, 2022

Magnetic field control of insulator-metal crossover in cobaltite films via thermally activated percolation

Meng Wang, Keisuke Matsuura, Masao Nakamura, Masahiro Sawada, Masashi Kawasaki, and Fumitaka Kagawa

Phys. Rev. B 106, 155135 (2022) - Published 19 October, 2022

Crystal electric field and properties of 4f magnetic moments at the surface of the rare-earth compound TbRh2Si2

Artem V. Tarasov, Daria Glazkova, Susanne Schulz, Georg Poelchen, Kristin Kliemt, Alexej Kraiker, Matthias Muntwiler, Clemens Laubschat, Alexander Generalov, Craig Polley, Cornelius Krellner, Denis V. Vyalikh, and Dmitry Yu. Usachov

Phys. Rev. B 106, 155136 (2022) - Published 19 October, 2022

By means of 4f photoemission measurements and first-principles calculations, the authors demonstrate here how the crystal electric field (CEF) and related magnetic properties can be modified at the surface of rare-earth materials. For TbRh2Si2, CEF at the Tb surface makes the 4f moments orthogonal to those in the bulk. For the Tb layer below the Si termination, the temperature-dependent photoemission data reveal larger CEF splitting relative to the bulk. The methodology used here can facilitate unveiling of the surface magnetic properties of layered 4f systems.

Semiconductorlike photocarrier dynamics in Dirac-semimetal Cd3As2 films probed with transient terahertz spectroscopy

Wenjie Zhang, Yunkun Yang, Peng Suo, Kaiwen Sun, Jun Peng, Xian Lin, Faxian Xiu, and Guohong Ma

Phys. Rev. B 106, 155137 (2022) - Published 20 October, 2022

Itinerant antiferromagnetism in Co3S4δ

Liang-Wen Ji, Yi Liu, Si-Qi Wu, Bai-Zhuo Li, Shi-Jie Song, Yan-Wei Cui, Zhi Ren, and Guang-Han Cao

Phys. Rev. B 106, 155138 (2022) - Published 20 October, 2022

Oxygen vacancy formation and electronic reconstruction in strained LaNiO3 and LaNiO3/LaAlO3 superlattices

Benjamin Geisler, Simon Follmann, and Rossitza Pentcheva

Phys. Rev. B 106, 155139 (2022) - Published 21 October, 2022

Finding spectral gaps in quasicrystals

Paul Hege, Massimo Moscolari, and Stefan Teufel

Phys. Rev. B 106, 155140 (2022) - Published 21 October, 2022

Berry curvature induced anomalous Hall conductivity in the magnetic topological oxide double perovskite Sr2FeMoO6

Tirthankar Chakraborty, Kartik Samanta, Satya N. Guin, Jonathan Noky, Iñigo Robredo, Suchitra Prasad, Juergen Kuebler, Chandra Shekhar, Maia G. Vergniory, and Claudia Felser

Phys. Rev. B 106, 155141 (2022) - Published 21 October, 2022

Flat-band ferromagnetism in a correlated topological insulator on a honeycomb lattice

Leonardo S. G. Leite and R. L. Doretto

Phys. Rev. B 106, 155142 (2022) - Published 21 October, 2022

Two-dimensional obstructed atomic insulators with fractional corner charge in the MA2Z4 family

Lei Wang, Yi Jiang, Jiaxi Liu, Shuai Zhang, Jiangxu Li, Peitao Liu, Yan Sun, Hongming Weng, and Xing-Qiu Chen

Phys. Rev. B 106, 155144 (2022) - Published 24 October, 2022

Theory of a continuous bandwidth-tuned Wigner-Mott transition

Seth Musser, T. Senthil, and Debanjan Chowdhury

Phys. Rev. B 106, 155145 (2022) - Published 24 October, 2022

Flat bands and band-touching from real-space topology in hyperbolic lattices

Tomáš Bzdušek and Joseph Maciejko

Phys. Rev. B 106, 155146 (2022) - Published 24 October, 2022

Hopping models on geometrically frustrated lattices, such as the kagome and dice lattices, exhibit perfectly flat energy bands that result from eigenstates localized along contractible and/or noncontractible real-space loops. The degeneracy of such flat bands has been understood from an interplay of real-space topology and momentum-space band theory. Here, the authors generalize this paradigm to frustrated hyperbolic lattices, including those realized in recent circuit quantum electrodynamics experiments. They show that hyperbolic flat-band characteristics can similarly be understood by combining real-space topology arguments with the recently developed hyperbolic band theory.

Ultrafast valley polarization of graphene nanorings

Ahmal Jawad Zafar, Aranyo Mitra, and Vadym Apalkov

Phys. Rev. B 106, 155147 (2022) - Published 25 October, 2022

J=0 nonmagnetic insulating state in K2OsX6 (X=F,Cl,andBr)

Yang Zhang, Ling-Fang Lin, Adriana Moreo, and Elbio Dagotto

Phys. Rev. B 106, 155148 (2022) - Published 26 October, 2022

Possible transition between charge density wave and Weyl semimetal phase in Y2Ir2O7

Abhishek Juyal, Vinod Kumar Dwivedi, Sonu Verma, Shibabrata Nandi, Amit Agarwal, and Soumik Mukhopadhyay

Phys. Rev. B 106, 155149 (2022) - Published 26 October, 2022

Effective field theory of dipolar braiding statistics in two dimensions

Yun-Tak Oh, Jintae Kim, and Jung Hoon Han

Phys. Rev. B 106, 155150 (2022) - Published 26 October, 2022

Metal-insulator transition in CuIr2S4 observed by Cu Kα resonant x-ray emission spectroscopy

Hitoshi Sato, Takuma Matsumoto, Kazuhiro Maeda, Yukihiro Taguchi, Naomi Kawamura, and Hiroki Ishibashi

Phys. Rev. B 106, 155151 (2022) - Published 27 October, 2022

Probing the bulk plasmon continuum of layered materials through electron energy loss spectroscopy in a reflection geometry

Christian Boyd, Luke Yeo, and Philip W. Phillips

Phys. Rev. B 106, 155152 (2022) - Published 27 October, 2022

Variational counterdiabatic driving of the Hubbard model for ground-state preparation

Qing Xie, Kazuhiro Seki, and Seiji Yunoki

Phys. Rev. B 106, 155153 (2022) - Published 28 October, 2022

Hybrid rank-1 and rank-2 U(1) lattice gauge theory, the F3 model, and its effective field theory

Jintae Kim, Yun-Tak Oh, and Jung Hoon Han

Phys. Rev. B 106, 155154 (2022) - Published 28 October, 2022

Non-Fermi liquid behavior and quantum criticality in cubic heavy fermion systems with non-Kramers multipolar local moments

SangEun Han, Daniel J. Schultz, and Yong Baek Kim

Phys. Rev. B 106, 155155 (2022) - Published 28 October, 2022

Predicting band gaps and band-edge positions of oxide perovskites using density functional theory and machine learning

Wei Li, Zigeng Wang, Xia Xiao, Zhiqiang Zhang, Anderson Janotti, Sanguthevar Rajasekaran, and Bharat Medasani

Phys. Rev. B 106, 155156 (2022) - Published 28 October, 2022

Pairing of electromagnetic bosons under spin-orbit coupling

S. V. Andreev

Phys. Rev. B 106, 155157 (2022) - Published 31 October, 2022

Full configuration interaction quantum Monte Carlo for coupled electron-boson systems and infinite spaces

Robert J. Anderson, Charles J. C. Scott, and George H. Booth

Phys. Rev. B 106, 155158 (2022) - Published 31 October, 2022

When electrons interact not only with themselves, but also with bosons (phonons or other bosonic quasiparticles), what was previously a “curse of dimensionality” for its computational solution now becomes one of infinite size. To deal with this, the authors adapt here a recent method for its stochastic solution, without requiring truncation of the bosonic occupations, and which allows systematic improvability to exact solutions. They apply this to the paradigmatic Hubbard-Holstein model of local phonons, finding a state-of-the-art solution in the thermodynamic limit, as well as to a novel approach in which long-range collective electronic fluctuations are mapped to bosonic quasiparticles to tackle even long-range interacting problems of purely electronic form.

Dirac fermions with plaquette interactions. III. SU(N) phase diagram with Gross-Neveu criticality and first-order phase transition

Yuan Da Liao, Xiao Yan Xu, Zi Yang Meng, and Yang Qi

Phys. Rev. B 106, 155159 (2022) - Published 31 October, 2022

Equilibrium and nonequilibrium dynamics of a hole in a bilayer antiferromagnet

Jens H. Nyhegn, Kristian K. Nielsen, and Georg M. Bruun

Phys. Rev. B 106, 155160 (2022) - Published 31 October, 2022

Semiconductors I: bulk

Atomic and electronic structures of nitrogen vacancies in silicon nitride: Emergence of floating gap states

Fugo Nanataki, Kenji Shiraishi, Jun-ichi Iwata, Yu-ichiro Matsushita, and Atsushi Oshiyama

Phys. Rev. B 106, 155201 (2022) - Published 25 October, 2022

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

Hydrodynamic heat transport in dielectric crystals in the collective limit and the drifting/driftless velocity conundrum

Lluc Sendra, Albert Beardo, Javier Bafaluy, Pol Torres, F. Xavier Alvarez, and Juan Camacho

Phys. Rev. B 106, 155301 (2022) - Published 5 October, 2022

Electronic structure of Humble defects in Ge and Ge0.8Si0.2

Shang Ren, Hongbin Yang, Sobhit Singh, Philip E. Batson, Eric L. Garfunkel, and David Vanderbilt

Phys. Rev. B 106, 155302 (2022) - Published 6 October, 2022

Large deviations theory for noisy nonlinear electronics: CMOS inverter as a case study

Ashwin Gopal, Massimiliano Esposito, and Nahuel Freitas

Phys. Rev. B 106, 155303 (2022) - Published 10 October, 2022

Tailoring the superposition of finite-momentum valley exciton states in transition-metal dichalcogenide monolayers by using polarized twisted light

Guan-Hao Peng, Oscar Javier Gomez Sanchez, Wei-Hua Li, Ping-Yuan Lo, and Shun-Jen Cheng

Phys. Rev. B 106, 155304 (2022) - Published 11 October, 2022

Contact of the intrinsic magnetic topological insulator Mn(Bi,Sb)2Te4 with a superconducting Pb film

D. A. Estyunin, T. P. Makarova, K. A. Kokh, O. E. Tereshchenko, A. M. Shikin, and I. I. Klimovskikh

Phys. Rev. B 106, 155305 (2022) - Published 21 October, 2022

Surface physics, nanoscale physics, low-dimensional systems

Simple approach to current-induced bond weakening in ballistic conductors

N. Papior, S. Leitherer, and M. Brandbyge

Phys. Rev. B 106, 155401 (2022) - Published 3 October, 2022

Role of electron-electron interaction in the plasmon modes of twisted bilayer graphene

Chao Ding, Xuejin Zhang, Han Gao, Xikui Ma, Yangyang Li, and Mingwen Zhao

Phys. Rev. B 106, 155402 (2022) - Published 5 October, 2022

Origin of large magnetocapacitance in K0.5Na0.5NbO3/La0.67Sr0.33MnO3 superlattices

Soumen Pradhan, Oleg I. Lebedev, Martando Rath, Fabien Veillon, Wilfrid Prellier, and M. S. Ramachandra Rao

Phys. Rev. B 106, 155403 (2022) - Published 6 October, 2022

Radiative heat transfer in a low-symmetry Bravais crystal

Cheng-Long Zhou, Gaoming Tang, Yong Zhang, Mauro Antezza, and Hong-Liang Yi

Phys. Rev. B 106, 155404 (2022) - Published 7 October, 2022

Theory for shear displacement by light-induced Raman force in bilayer graphene

Habib Rostami

Phys. Rev. B 106, 155405 (2022) - Published 10 October, 2022

Surface enhanced electron correlation on the trivial quasi-two-dimensional bulk insulator 1TTaS2

Jiwon Jung, Jae Whan Park, Jaeyoung Kim, and Han Woong Yeom

Phys. Rev. B 106, 155406 (2022) - Published 10 October, 2022

Edge states, Majorana fermions, and topological order in superconducting wires with generalized boundary conditions

Alfonso Maiellaro, Francesco Romeo, and Fabrizio Illuminati

Phys. Rev. B 106, 155407 (2022) - Published 10 October, 2022

Observation of nonlinear planar Hall effect in magnetic-insulator–topological-insulator heterostructures

Yang Wang, Sivakumar V. Mambakkam, Yue-Xin Huang, Yong Wang, Yi Ji, Cong Xiao, Shengyuan A. Yang, Stephanie A. Law, and John Q. Xiao

Phys. Rev. B 106, 155408 (2022) - Published 10 October, 2022

Long-lived qubit entanglement by surface plasmon polaritons in a Weyl semimetal

M. Shoufie Ukhtary, Eddwi H. Hasdeo, Andriyan B. Suksmono, and Ahmad R. T. Nugraha

Phys. Rev. B 106, 155409 (2022) - Published 10 October, 2022

Moiré exciton condensate: Nonlinear Dirac point, broken-symmetry Bloch waves, and unusual optical selection rules

Sha Deng, Yichen Chu, and Qizhong Zhu

Phys. Rev. B 106, 155410 (2022) - Published 10 October, 2022

Phase diagram of Rydberg-dressed atoms on two-leg triangular ladders

Pierre Fromholz, Mikheil Tsitsishvili, Matteo Votto, Marcello Dalmonte, Alexander Nersesyan, and Titas Chanda

Phys. Rev. B 106, 155411 (2022) - Published 12 October, 2022

Electrically driven spin resonance with bichromatic driving

Zoltán György, András Pályi, and Gábor Széchenyi

Phys. Rev. B 106, 155412 (2022) - Published 17 October, 2022

Self-consistent noise characterization of quantum devices

Won Kyu Calvin Sun and Paola Cappellaro

Phys. Rev. B 106, 155413 (2022) - Published 17 October, 2022

High-energy Landau levels in graphene beyond nearest-neighbor hopping processes: Corrections to the effective Dirac Hamiltonian

Kevin J. U. Vidarte and Caio Lewenkopf

Phys. Rev. B 106, 155414 (2022) - Published 17 October, 2022

Detection of single phonons via phonon drag in two-dimensional materials

Ali Kefayati, Jonathan P. Bird, and Vasili Perebeinos

Phys. Rev. B 106, 155415 (2022) - Published 17 October, 2022

Carrier trapping centers in a two-dimensional silica bilayer: Strongly localized shallow gap states and resonances induced by oxygen vacancies

Nestor Fajardo and Ricardo Wagner Nunes

Phys. Rev. B 106, 155416 (2022) - Published 18 October, 2022

Strain-induced pseudo magnetic field in the αT3 lattice

Junsong Sun, Tianyu Liu, Yi Du, and Huaiming Guo

Phys. Rev. B 106, 155417 (2022) - Published 19 October, 2022

Vertical structure of Sb-intercalated quasifreestanding graphene on SiC(0001)

You-Ron Lin (林又容), Susanne Wolff, Philip Schädlich, Mark Hutter, Serguei Soubatch, Tien-Lin Lee (李天麟), F. Stefan Tautz, Thomas Seyller, Christian Kumpf, and François C. Bocquet

Phys. Rev. B 106, 155418 (2022) - Published 19 October, 2022

Local bistability under microwave heating for spatially mapping disordered superconductors

D. B. Karki, R. S. Whitney, and D. M. Basko

Phys. Rev. B 106, 155419 (2022) - Published 21 October, 2022

Intense high-frequency laser-field control of spin-orbit coupling in GaInAs/AlInAs quantum wells: A laser dressing effect

Xue Li, Wei Wang, Ning Zhao, Hao Yang, Shixuan Han, Wen Liu, Hailong Wang, Fanyao Qu, Ning Hao, Jiyong Fu, and Ping Zhang

Phys. Rev. B 106, 155420 (2022) - Published 21 October, 2022

Why experiments fail to detect the finite linear Rashba spin-orbit coupling of two-dimensional holes in semiconductor quantum wells: The case of Ge/SiGe quantum wells

Jia-Xin Xiong, Yang Liu, Shan Guan, Jun-Wei Luo, and Shu-Shen Li

Phys. Rev. B 106, 155421 (2022) - Published 24 October, 2022

Tunable interband and intraband plasmons in twisted double bilayer graphene

Atasi Chakraborty, Debasis Dutta, and Amit Agarwal

Phys. Rev. B 106, 155422 (2022) - Published 24 October, 2022

Boundary condition for the optical force density

Kevin J. Webb

Phys. Rev. B 106, 155423 (2022) - Published 25 October, 2022

Quantitative analysis of photoinduced thermal force: Surface and volume responses

Junghoon Jahng, Bongsu Kim, and Eun Seong Lee

Phys. Rev. B 106, 155424 (2022) - Published 26 October, 2022

Enhancement of intrinsic optical transitions in silicon nanocrystals by state localization

Feilong Wang (王飞龙), Qiongrong Ou (区琼荣), and Shuyu Zhang (张树宇)

Phys. Rev. B 106, 155425 (2022) - Published 26 October, 2022

Valley spin-acoustic resonance in MoS2 monolayers

K. Sonowal, D. V. Boev, A. V. Kalameitsev, V. M. Kovalev, and I. G. Savenko

Phys. Rev. B 106, 155426 (2022) - Published 26 October, 2022

Planckian properties of two-dimensional semiconductor systems

Seongjin Ahn and Sankar Das Sarma

Phys. Rev. B 106, 155427 (2022) - Published 27 October, 2022

The low-temperature resistivity and the temperature-dependent inelastic scattering rate of several different doped 2D semiconductor systems are described and discussed from the perspective of the Planckian hypothesis of the scattering rate having an intrinsic fundamental bound of kBT. The Planckian holds for all the systems with the scattering rate never exceeding kBT by more than an order of magnitude either in the experiment or in the theory. In addition, the authors calculate the temperature-dependent electron-electron inelastic scattering rate by obtaining the temperature-dependent self-energy arising from the Coulomb interaction, also finding it to obey the Planckian bound within an order of magnitude at all densities and temperatures. A theory is provided for why such a generalized Planckian bound applies generically.

Theory of sub-Sharvin charge transport in graphene disks

Adam Rycerz and Piotr Witkowski

Phys. Rev. B 106, 155428 (2022) - Published 31 October, 2022

Trapped-mode excitation in all-dielectric metamaterials with loss and gain

Anton V. Hlushchenko, Denis V. Novitsky, and Vladimir R. Tuz

Phys. Rev. B 106, 155429 (2022) - Published 31 October, 2022

COMMENTS

Comment on “Curved-space Dirac description of elastically deformed monolayer graphene is generally incorrect”

Alfredo Iorio and Pablo Pais

Phys. Rev. B 106, 157401 (2022) - Published 19 October, 2022

Reply to “Comment on ‘Curved-space Dirac description of elastically deformed monolayer graphene is generally incorrect’ ”

Matthew M. Roberts and Toby Wiseman

Phys. Rev. B 106, 157402 (2022) - Published 19 October, 2022

ERRATA

Erratum: Implementation of self-consistent MGGA functionals in augmented plane wave based methods [Phys. Rev. B 105, 195138 (2022)]

Jan Doumont, Fabien Tran, and Peter Blaha

Phys. Rev. B 106, 159901 (2022) - Published 19 October, 2022

Sign In to Your Journals Account

Filter

Filter

Article Lookup

Enter a citation