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HIGHLIGHTED ARTICLES

Optomechanical parametric oscillation of a quantum light-fluid lattice

A. A. Reynoso, G. Usaj, D. L. Chafatinos, F. Mangussi, A. E. Bruchhausen, A. S. Kuznetsov, K. Biermann, P. V. Santos, and A. Fainstein

Phys. Rev. B 105, 195310 (2022) - Published 26 May, 2022

Optical parametric oscillators are one of the building pillars of nonlinear and quantum optics, the basis of minimum-uncertainty quantum states and entangled photon pairs. Transferring similar ideas to mechanical vibrations, the authors demonstrate an optomechanical parametric oscillator based on a lattice of traps that confine and couple fluids of light and sound. Nonresonant continuous laser excitation leads to 20 GHz self-induced oscillations of the phonon field, a coherent process associated with a tailored intertrap coupling that is quadratic in the mechanical displacement.

Direct observation of the electronic structure of the layered phosphide superconductor ZrP2xSex

A. Ino, T. Kubo, S. Ishizaka, H. Takita, W. Mansuer, K. Shimada, S. Ueda, H. Kitô, I. Hase, S. Ishida, K. Oka, H. Fujihisa, Y. Gotoh, Y. Yoshida, A. Iyo, H. Ogino, H. Eisaki, K. Kawashima, and Y. Yanagi

Phys. Rev. B 105, 195111 (2022) - Published 9 May, 2022

The layered phosphide superconductor, ZrP2xSex, is an emerging platform that allows various elemental substitutions and incorporates Dirac nodal lines. Here, the authors demonstrate with hard x-ray photoemission spectroscopy that the two phosphorus atoms at the in-plane and mixed-anion sites assume different valence states and that the electron filling is indeed controlled by the anion substitution. The full picture obtained for the electronic structure and the evidence of its tunability provide key insights into the optimization of superconductivity and other properties of the compound.

Fractonic order in infinite-component Chern-Simons gauge theories

Xiuqi Ma, Wilbur Shirley, Meng Cheng, Michael Levin, John McGreevy, and Xie Chen

Phys. Rev. B 105, 195124 (2022) - Published 18 May, 2022

The Chern-Simons theory is a powerful tool in the study of 2+1D topological phases, especially quantum Hall systems. Here, the authors extend the framework by allowing an infinite number of gauge fields and use it to study the 3+1D fracton order. Fracton order has been studied mostly using lattice models and higher-rank gauge theories. The introduction of the Chern-Simons formulation allows the user to take advantage of theoretical tools developed over the past decades for quantum Hall systems. In particular, the authors are able to study foliated fracton order more systematically and identify a new type of fracton order, not possible in previous formulations.

Implementation of self-consistent MGGA functionals in augmented plane wave based methods

Jan Doumont, Fabien Tran, and Peter Blaha

Phys. Rev. B 105, 195138 (2022) - Published 25 May, 2022

The authors present the self-consistent implementation and validation of MGGA density functionals in the highly accurate all-electron augmented plane wave based (APW) method for the simulation of solid-state materials. MGGA functionals are the third level of density functional approximations on Jacob’s ladder of exchange-correlation functionals. The implementation in the WIEN2k APW based code is discussed and validated using calculations of band gaps, lattice constants, magnetic properties, and electric field gradients.

Variational methods for contracting projected entangled-pair states

Laurens Vanderstraeten, Lander Burgelman, Boris Ponsioen, Maarten Van Damme, Bram Vanhecke, Philippe Corboz, Jutho Haegeman, and Frank Verstraete

Phys. Rev. B 105, 195140 (2022) - Published 25 May, 2022

Projected entangled-pair states (PEPS) provide excellent variational wave functions for ground states of strongly correlated quantum systems in two dimensions. Determining the expectation value of such a PEPS wave function requires the contraction of a two-dimensional tensor network. Here, the authors show that this contraction can itself be formulated as a variational problem, allowing one to compare the accuracies of two commonly used contraction schemes. The authors find good agreement between the different schemes, demonstrating the robustness of PEPS simulations.

Intrinsic first- and higher-order topological superconductivity in a doped topological insulator

Harley D. Scammell, Julian Ingham, Max Geier, and Tommy Li

Phys. Rev. B 105, 195149 (2022) - Published 31 May, 2022

Higher-order topological superconductors (HOTSs) are topological states possessing gapless modes at the corners (hinges) of 2d (3d) samples. While these phases of matter have recently attracted immense theoretical interest, experimental candidates remain scarce. This paper demonstrates a mechanism for HOTSs in doped topological insulators, and provides explicit modeling for a particular realization. The mechanism is effective in materials with localized orbitals. It requires a minimum doping beyond which superconductivity ensues, thus offering a useful criterion in the search for material realizations.

Clean quantum point contacts in an InAs quantum well grown on a lattice-mismatched InP substrate

Connie L. Hsueh, Praveen Sriram, Tiantian Wang, Candice Thomas, Geoffrey Gardner, Marc A. Kastner, Michael J. Manfra, and David Goldhaber-Gordon

Phys. Rev. B 105, 195303 (2022) - Published 6 May, 2022

Indium arsenide (InAs) has a small effective mass, strong spin-orbit coupling, and surface Fermi level pinning. Together with improvements in the epitaxial growth of quantum well heterostructures, InAs presents an enticing platform for studying mesoscopic physics. Here, the authors investigate quantized conductance and magnetotransport through quantum point contacts (QPCs) fabricated on a deep InAs two-dimensional electron gas. These QPCs can serve as a robust building block for further experiments in quantum circuits and electron quantum optics.

Delta-T noise for weak tunneling in one-dimensional systems: Interactions versus quantum statistics

Gu Zhang, Igor V. Gornyi, and Christian Spånslätt

Phys. Rev. B 105, 195423 (2022) - Published 19 May, 2022

One-dimensional quantum systems can host particles with peculiar exchange statistics. Here, the authors elucidate conditions for when such statistics can be connected to the sign of the recently discovered delta-T noise: charge tunneling noise as a response to only a temperature gradient. This work thereby demonstrates the potential for using delta-T noise as a probe of exotic particles in, e.g., fractional quantum Hall and quantum spin Hall tunneling experiments.

Perturbative renormalization and thermodynamics of quantum crystalline membranes

Achille Mauri and Mikhail I. Katsnelson

Phys. Rev. B 105, 195434 (2022) - Published 26 May, 2022

Understanding how thermal and quantum fluctuations of phonon degrees of freedom affect the low-temperature thermodynamics of a freestanding crystalline membrane poses a complex problem at the interface between elasticity, statistical mechanics, and quantum field theory. In this work, the authors apply field-theoretical renormalization-group methods to revisit the role of mechanical nonlinearities and anharmonic effects on the behavior of thermodynamical quantities in the limit T0.

ARTICLES

Electronic structure and strongly correlated systems

Quantum orders in the frustrated Ising model on the bathroom tile lattice

Sumner N. Hearth, Siddhardh C. Morampudi, and Chris R. Laumann

Phys. Rev. B 105, 195101 (2022) - Published 3 May, 2022

Nonlinear optical response of type-II Weyl fermions in two dimensions

Yaraslau Tamashevich, Leone Di Mauro Villari, and Marco Ornigotti

Phys. Rev. B 105, 195102 (2022) - Published 3 May, 2022

Quenches to the critical point of the three-state Potts model: Matrix product state simulations and conformal field theory

Niall F. Robertson, Jacopo Surace, and Luca Tagliacozzo

Phys. Rev. B 105, 195103 (2022) - Published 4 May, 2022

Fate of pairing and spin-charge separation in the presence of long-range antiferromagnetism

Luhang Yang, Ignacio Hamad, Luis O. Manuel, and Adrian E. Feiguin

Phys. Rev. B 105, 195104 (2022) - Published 5 May, 2022

Magnetic ordering and topology in Mn2Bi2Te5 and Mn2Sb2Te5 van der Waals materials

S. V. Eremeev, M. M. Otrokov, A. Ernst, and E. V. Chulkov

Phys. Rev. B 105, 195105 (2022) - Published 5 May, 2022

Detecting and braiding higher-order Majorana corner states through their spin degree of freedom

Xiao-Hong Pan, Xun-Jiang Luo, Jin-Hua Gao, and Xin Liu

Phys. Rev. B 105, 195106 (2022) - Published 5 May, 2022

Minimally entangled typical thermal state algorithms for finite temperature Matsubara Green functions

Daniel Bauernfeind, Xiaodong Cao, E. Miles Stoudenmire, and Olivier Parcollet

Phys. Rev. B 105, 195107 (2022) - Published 6 May, 2022

Non-Abelian bosonization in a (3+1)-d Kondo semimetal via quantum anomalies

Colin Rylands, Alireza Parhizkar, and Victor Galitski

Phys. Rev. B 105, 195108 (2022) - Published 6 May, 2022

Nonequilibrium electron and lattice dynamics of Sb2Te3 under pressure

Kai Zhang, Jiafeng Xie, Jin Yang, Huachao Jiang, Shile Zhang, Zhi Zeng, Xiaojia Chen, Tianwu Wang, and Fuhai Su

Phys. Rev. B 105, 195109 (2022) - Published 6 May, 2022

Giant efficiency for charge-to-spin conversion via the electron gas at the LaTiO3+δ/SrTiO3 interface

Jing Zhang, Jine Zhang, Xiang Chi, Runrun Hao, Weibin Chen, Huaiwen Yang, Dapeng Zhu, Qinghua Zhang, Weisheng Zhao, Hui Zhang, and Jirong Sun

Phys. Rev. B 105, 195110 (2022) - Published 6 May, 2022

Direct observation of the electronic structure of the layered phosphide superconductor ZrP2xSex

A. Ino, T. Kubo, S. Ishizaka, H. Takita, W. Mansuer, K. Shimada, S. Ueda, H. Kitô, I. Hase, S. Ishida, K. Oka, H. Fujihisa, Y. Gotoh, Y. Yoshida, A. Iyo, H. Ogino, H. Eisaki, K. Kawashima, and Y. Yanagi

Phys. Rev. B 105, 195111 (2022) - Published 9 May, 2022

The layered phosphide superconductor, ZrP2xSex, is an emerging platform that allows various elemental substitutions and incorporates Dirac nodal lines. Here, the authors demonstrate with hard x-ray photoemission spectroscopy that the two phosphorus atoms at the in-plane and mixed-anion sites assume different valence states and that the electron filling is indeed controlled by the anion substitution. The full picture obtained for the electronic structure and the evidence of its tunability provide key insights into the optimization of superconductivity and other properties of the compound.

Valley-dependent topological phase transition and quantum anomalous valley Hall effect in single-layer RuClBr

Hao Sun, Sheng-Shi Li, Wei-xiao Ji, and Chang-Wen Zhang

Phys. Rev. B 105, 195112 (2022) - Published 9 May, 2022

Theory of phonon instabilities in Weyl semimetals at high magnetic fields

Sarbajaya Kundu, Claude Bourbonnais, and Ion Garate

Phys. Rev. B 105, 195113 (2022) - Published 9 May, 2022

Anisotropic giant magnetoresistance and Fermi surface topology in the layered compound YbBi2

Xiaomeng Sun, Fang Tang, Xue Shen, Wencong Sun, Weiyao Zhao, Yuyan Han, Xucai Kan, Shan Cong, Lei Zhang, Zhida Han, Bin Qian, Xuefan Jiang, Shanshan Wang, Renkui Zheng, and Yong Fang

Phys. Rev. B 105, 195114 (2022) - Published 10 May, 2022

Unsupervised learning of topological phase diagram using topological data analysis

Sungjoon Park, Yoonseok Hwang, and Bohm-Jung Yang

Phys. Rev. B 105, 195115 (2022) - Published 10 May, 2022

Band repulsion in periodically modulated lattice models and electromagnetic systems

Yang Yu and Gennady Shvets

Phys. Rev. B 105, 195116 (2022) - Published 10 May, 2022

Chirality-induced spin filtering in pseudo Jahn-Teller molecules

Akihito Kato, Hiroshi M. Yamamoto, and Jun-ichiro Kishine

Phys. Rev. B 105, 195117 (2022) - Published 11 May, 2022

Prethermalization and entanglement dynamics in interacting topological pumps

Raffael Gawatz, Ajit C. Balram, Erez Berg, Netanel H. Lindner, and Mark S. Rudner

Phys. Rev. B 105, 195118 (2022) - Published 12 May, 2022

Emergence of topological and trivial interface states in VSe2 films coupled to Bi2Se3

Joseph A. Hlevyack, Yang-Hao Chan, Meng-Kai Lin, Tao He, Wei-Hsiang Peng, Ellen C. Royal, Mei-Yin Chou, and T.-C. Chiang

Phys. Rev. B 105, 195119 (2022) - Published 12 May, 2022

Kondo effect in Lieb's minimal ferrimagnetic system on the T-shaped bipartite lattice

Masashi Tokuda and Yunori Nishikawa

Phys. Rev. B 105, 195120 (2022) - Published 12 May, 2022

Edge Z3 parafermions in fermionic lattices

Raphael L. R. C. Teixeira and Luis G. G. V. Dias da Silva

Phys. Rev. B 105, 195121 (2022) - Published 13 May, 2022

Evolution of the electronic structure and correlations accompanied by suppression of itinerant ferromagnetism in Sr1x(La0.5K0.5)xRuO3

Ikuto Kawasaki, Shin-ichi Fujimori, Yukiharu Takeda, Hiroshi Yamagami, Rahmanto, Yutoku Honma, Kensuke Matsuoka, and Makoto Yokoyama

Phys. Rev. B 105, 195122 (2022) - Published 16 May, 2022

Combined unitary and symmetric group approach applied to low-dimensional Heisenberg spin systems

Werner Dobrautz, Vamshi M. Katukuri, Nikolay A. Bogdanov, Daniel Kats, Giovanni Li Manni, and Ali Alavi

Phys. Rev. B 105, 195123 (2022) - Published 18 May, 2022

Fractonic order in infinite-component Chern-Simons gauge theories

Xiuqi Ma, Wilbur Shirley, Meng Cheng, Michael Levin, John McGreevy, and Xie Chen

Phys. Rev. B 105, 195124 (2022) - Published 18 May, 2022

The Chern-Simons theory is a powerful tool in the study of 2+1D topological phases, especially quantum Hall systems. Here, the authors extend the framework by allowing an infinite number of gauge fields and use it to study the 3+1D fracton order. Fracton order has been studied mostly using lattice models and higher-rank gauge theories. The introduction of the Chern-Simons formulation allows the user to take advantage of theoretical tools developed over the past decades for quantum Hall systems. In particular, the authors are able to study foliated fracton order more systematically and identify a new type of fracton order, not possible in previous formulations.

Infrared study of the layered magnetic insulator Mn(Bi0.07Sb0.93)2Te4 at low temperatures

M. Köpf, S. H. Lee, Harish Kumar, Z. Q. Mao, and C. A. Kuntscher

Phys. Rev. B 105, 195125 (2022) - Published 18 May, 2022

Second-order magnetic responses in quantum magnets: Magnetization under ac magnetic fields

Tatsuya Kaneko, Yuta Murakami, Shintaro Takayoshi, and Andrew J. Millis

Phys. Rev. B 105, 195126 (2022) - Published 19 May, 2022

Non-Hermitian second-order topology induced by resistances in electric circuits

Jien Wu, Xueqin Huang, Yating Yang, Weiyin Deng, Jiuyang Lu, Wenji Deng, and Zhengyou Liu

Phys. Rev. B 105, 195127 (2022) - Published 20 May, 2022

Revisiting Mott's model for the thermopower of PdxAg1x alloys with support of density functional theory

Maximilien Saint-Cricq, Natalio Mingo, and Ambroise van Roekeghem

Phys. Rev. B 105, 195128 (2022) - Published 20 May, 2022

Higher-order topological pumping and its observation in photonic lattices

Wladimir A. Benalcazar, Jiho Noh, Mohan Wang, Sheng Huang, Kevin P. Chen, and Mikael C. Rechtsman

Phys. Rev. B 105, 195129 (2022) - Published 20 May, 2022

Edge magnetism in transition metal dichalcogenide nanoribbons: Mean field theory and determinant quantum Monte Carlo

Francisco M. O. Brito, Linhu Li, João M. V. P. Lopes, and Eduardo V. Castro

Phys. Rev. B 105, 195130 (2022) - Published 20 May, 2022

Observation of non-Hermitian aggregation effects induced by strong interactions

Weixuan Zhang, Fengxiao Di, Hao Yuan, Haiteng Wang, Xingen Zheng, Lu He, Houjun Sun, and Xiangdong Zhang

Phys. Rev. B 105, 195131 (2022) - Published 23 May, 2022

Dynamic transition from insulating state to η-pairing state in a composite non-Hermitian system

X. M. Yang and Z. Song

Phys. Rev. B 105, 195132 (2022) - Published 23 May, 2022

Angular momentum invoked band inversions in mirror symmetry protected topological states

Dexin Li, Mingxiang Pan, Citian Wang, and Huaqing Huang

Phys. Rev. B 105, 195133 (2022) - Published 23 May, 2022

Critical role of magnetic moments in heavy-fermion materials: Revisiting SmB6

Ruiqi Zhang, Bahadur Singh, Christopher Lane, Jamin Kidd, Yubo Zhang, Bernardo Barbiellini, Robert S. Markiewicz, Arun Bansil, and Jianwei Sun

Phys. Rev. B 105, 195134 (2022) - Published 23 May, 2022

Pressure-induced electronic transitions in samarium monochalcogenides

Debalina Banerjee, Evgeny Plekhanov, Ivan Rungger, and Cedric Weber

Phys. Rev. B 105, 195135 (2022) - Published 23 May, 2022

Temperature-driven reorganization of electronic order in CsV3Sb5

Q. Stahl, D. Chen, T. Ritschel, C. Shekhar, E. Sadrollahi, M. C. Rahn, O. Ivashko, M. v. Zimmermann, C. Felser, and J. Geck

Phys. Rev. B 105, 195136 (2022) - Published 24 May, 2022

Understanding photoluminescence of Cs2ZrCl6 doped with post-transition-metal ions using first-principles calculations

Mingzhe Liu, Chang-Kui Duan, Peter A. Tanner, Chong-Geng Ma, Xiantao Wei, and Min Yin

Phys. Rev. B 105, 195137 (2022) - Published 25 May, 2022

Implementation of self-consistent MGGA functionals in augmented plane wave based methods

Jan Doumont, Fabien Tran, and Peter Blaha

Phys. Rev. B 105, 195138 (2022) - Published 25 May, 2022

The authors present the self-consistent implementation and validation of MGGA density functionals in the highly accurate all-electron augmented plane wave based (APW) method for the simulation of solid-state materials. MGGA functionals are the third level of density functional approximations on Jacob’s ladder of exchange-correlation functionals. The implementation in the WIEN2k APW based code is discussed and validated using calculations of band gaps, lattice constants, magnetic properties, and electric field gradients.

Variational methods for contracting projected entangled-pair states

Laurens Vanderstraeten, Lander Burgelman, Boris Ponsioen, Maarten Van Damme, Bram Vanhecke, Philippe Corboz, Jutho Haegeman, and Frank Verstraete

Phys. Rev. B 105, 195140 (2022) - Published 25 May, 2022

Projected entangled-pair states (PEPS) provide excellent variational wave functions for ground states of strongly correlated quantum systems in two dimensions. Determining the expectation value of such a PEPS wave function requires the contraction of a two-dimensional tensor network. Here, the authors show that this contraction can itself be formulated as a variational problem, allowing one to compare the accuracies of two commonly used contraction schemes. The authors find good agreement between the different schemes, demonstrating the robustness of PEPS simulations.

Machine learning based prediction of the electronic structure of quasi-one-dimensional materials under strain

Shashank Pathrudkar, Hsuan Ming Yu, Susanta Ghosh, and Amartya S. Banerjee

Phys. Rev. B 105, 195141 (2022) - Published 26 May, 2022

Materials scientists from UCLA and Michigan Technological University have trained artificial intelligence (AI) to predict the electronic properties of nanoscale strands of building blocks of materials after they have been twisted, stretched, or compressed. Described as “quasi-one-dimensional,” this class of materials include nanotubes, nanoribbons, nanowires, and similar configurations of materials that are long and thin. The researchers use specialized quantum mechanical simulation techniques to produce the data that the AI models are trained on. Remarkably, the AI models, based on artificial neural networks, are able to discern hidden patterns in the simulations data and to predict accurately the complex electronic structure of the strained quasi-one-dimensional materials, based on very limited training. The researchers anticipate that such AI-assisted simulation capabilities of nanomaterials may lead to the discovery of new materials for energy storage technologies, quantum computing hardware, advanced sensors, and a range of other electronic devices.

Doubled quantum spin Hall effect with high-spin Chern number in α-antimonene and α-bismuthene

Yingxi Bai, Linke Cai, Ning Mao, Runhan Li, Ying Dai, Baibiao Huang, and Chengwang Niu

Phys. Rev. B 105, 195142 (2022) - Published 26 May, 2022

Exciton ionization induced by intersubband absorption in nonpolar ZnO-ZnMgO quantum wells at room temperature

A. Jollivet, P. Quach, M. Tchernycheva, R. Ferreira, E. Di Russo, L. Rigutti, B. Vinter, N. le Biavan, D. Lefebvre, M. Hugues, J-M. Chauveau, and F. H. Julien

Phys. Rev. B 105, 195143 (2022) - Published 26 May, 2022

Simulating Lindbladian evolution with non-Abelian symmetries: Ballistic front propagation in the SU(2) Hubbard model with a localized loss

Cătălin Paşcu Moca, Miklós Antal Werner, Örs Legeza, Tomaž Prosen, Márton Kormos, and Gergely Zaránd

Phys. Rev. B 105, 195144 (2022) - Published 26 May, 2022

Dirac nodal lines in the quasi-one-dimensional ternary telluride TaPtTe5

Shaozhu Xiao, Wen-He Jiao, Yu Lin, Qi Jiang, Xiufu Yang, Yunpeng He, Zhicheng Jiang, Yichen Yang, Zhengtai Liu, Mao Ye, Dawei Shen, and Shaolong He

Phys. Rev. B 105, 195145 (2022) - Published 27 May, 2022

Transport and spectroscopic signatures of a disorder-stabilized metal in two-dimensional frustrated Mott insulators

Madhuparna Karmakar and Nyayabanta Swain

Phys. Rev. B 105, 195146 (2022) - Published 27 May, 2022

Revealing the effect of interstitial oxygen on the low-energy crystal electric field excitations of Pr3+ in 214-nickelates

Rajesh Dutta, Avishek Maity, Anna Marsicano, J. Ross Stewart, Matthias Opel, and Werner Paulus

Phys. Rev. B 105, 195147 (2022) - Published 27 May, 2022

Intrinsic first- and higher-order topological superconductivity in a doped topological insulator

Harley D. Scammell, Julian Ingham, Max Geier, and Tommy Li

Phys. Rev. B 105, 195149 (2022) - Published 31 May, 2022

Higher-order topological superconductors (HOTSs) are topological states possessing gapless modes at the corners (hinges) of 2d (3d) samples. While these phases of matter have recently attracted immense theoretical interest, experimental candidates remain scarce. This paper demonstrates a mechanism for HOTSs in doped topological insulators, and provides explicit modeling for a particular realization. The mechanism is effective in materials with localized orbitals. It requires a minimum doping beyond which superconductivity ensues, thus offering a useful criterion in the search for material realizations.

Emergent plasmonic excitations in Mexican-hat and bell-shaped bands of hybridized Dirac electrons in graphene/topological insulator heterostructures

Yujie Liu, Tong Wei, Ping Cui, Xiaoguang Li, and Zhenyu Zhang

Phys. Rev. B 105, 195150 (2022) - Published 31 May, 2022

Protected valley states and generation of valley- and spin-polarized current in monolayer MA2Z4

Jiaren Yuan, Qingyuan Wei, Minglei Sun, Xiaohong Yan, Yongqing Cai, Lei Shen (沈雷), and Udo Schwingenschlögl

Phys. Rev. B 105, 195151 (2022) - Published 31 May, 2022

Density matrix renormalization group algorithm for mixed quantum states

Chu Guo

Phys. Rev. B 105, 195152 (2022) - Published 31 May, 2022

Hubbard U parameters for transition metals from first principles

Rebekka Tesch and Piotr M. Kowalski

Phys. Rev. B 105, 195153 (2022) - Published 31 May, 2022

Rotation symmetry-protected topological phases of fermions

Meng Cheng and Chenjie Wang

Phys. Rev. B 105, 195154 (2022) - Published 31 May, 2022

Development of magnetism in Fe-doped magnetic semiconductors: Resonant photoemission and x-ray magnetic circular dichroism studies of (Ga,Fe)As

Takahito Takeda, Shoya Sakamoto, Le Duc Anh, Yukiharu Takeda, Shin-ichi Fujimori, Miho Kitamura, Koji Horiba, Hiroshi Kumigashira, Atsushi Fujimori, Masaaki Tanaka, and Masaki Kobayashi

Phys. Rev. B 105, 195155 (2022) - Published 31 May, 2022

Magnetic impurity as a local probe of the U(1) quantum spin liquid with spinon Fermi surface

Wen-Yu He and Patrick A. Lee

Phys. Rev. B 105, 195156 (2022) - Published 31 May, 2022

Semiconductors I: bulk

Insights into the aftereffects phenomenon in solids based on DFT and time-differential perturbed γγ angular correlation studies in 111In ( 111Cd)-doped tin oxides

G. N. Darriba, E. L. Muñoz, D. Richard, A. P. Ayala, A. W. Carbonari, H. M. Petrilli, and M. Rentería

Phys. Rev. B 105, 195201 (2022) - Published 2 May, 2022

Ensemble spin relaxation of shallow donor qubits in ZnO

Vasileios Niaouris, Mikhail V. Durnev, Xiayu Linpeng, Maria L. K. Viitaniemi, Christian Zimmermann, Aswin Vishnuradhan, Yusuke Kozuka, Masashi Kawasaki, and Kai-Mei C. Fu

Phys. Rev. B 105, 195202 (2022) - Published 9 May, 2022

Low-energy electronic structure of perovskite and Ruddlesden-Popper semiconductors in the Ba-Zr-S system probed by bond-selective polarized x-ray absorption spectroscopy, infrared reflectivity, and Raman scattering

Kevin Ye, Nathan Z. Koocher, Stephen Filippone, Shanyuan Niu, Boyang Zhao, Matthew Yeung, Sharon Bone, Adam J. Robinson, Patrick Vora, André Schleife, Long Ju, Alexey Boubnov, James M. Rondinelli, Jayakanth Ravichandran, and R. Jaramillo

Phys. Rev. B 105, 195203 (2022) - Published 11 May, 2022

Anomalous ambipolar transport in depleted GaAs nanowires

H. Hijazi, D. Paget, A C. H. Rowe, G. Monier, K. Lahlil, E. Gil, A. Trassoudaine, F. Cadiz, Y. André, and C. Robert-Goumet

Phys. Rev. B 105, 195204 (2022) - Published 16 May, 2022

Effect of liquidlike cations on electronic and defect properties of solid solutions of Cu2Te and Ag2Te

Xiaowei Wu, Chen Ming, Weiwei Gao, Jing Shi, Kunpeng Zhao, Han Wang, and Yi-Yang Sun

Phys. Rev. B 105, 195206 (2022) - Published 31 May, 2022

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

Magnetic field dependent two-photon absorption properties in monolayer MoS2

Rui Gong, Chang Zhou, and Xiaobo Feng

Phys. Rev. B 105, 195301 (2022) - Published 3 May, 2022

Highly tunable and strongly bound exciton in MoSi2N4 via strain engineering

Dan Liang, Shi Xu, Pengfei Lu, and Yongqing Cai

Phys. Rev. B 105, 195302 (2022) - Published 4 May, 2022

Clean quantum point contacts in an InAs quantum well grown on a lattice-mismatched InP substrate

Connie L. Hsueh, Praveen Sriram, Tiantian Wang, Candice Thomas, Geoffrey Gardner, Marc A. Kastner, Michael J. Manfra, and David Goldhaber-Gordon

Phys. Rev. B 105, 195303 (2022) - Published 6 May, 2022

Indium arsenide (InAs) has a small effective mass, strong spin-orbit coupling, and surface Fermi level pinning. Together with improvements in the epitaxial growth of quantum well heterostructures, InAs presents an enticing platform for studying mesoscopic physics. Here, the authors investigate quantized conductance and magnetotransport through quantum point contacts (QPCs) fabricated on a deep InAs two-dimensional electron gas. These QPCs can serve as a robust building block for further experiments in quantum circuits and electron quantum optics.

Efficient modeling of organic adsorbates on oxygen-intercalated graphene on Ir(111)

Jari Järvi, Milica Todorović, and Patrick Rinke

Phys. Rev. B 105, 195304 (2022) - Published 9 May, 2022

Characterization of dot-specific and tunable effective g factors in a GaAs/AlGaAs double quantum dot single-hole device

A. Padawer-Blatt, J. Ducatel, M. Korkusinski, A. Bogan, L. Gaudreau, P. Zawadzki, D. G. Austing, A. S. Sachrajda, S. Studenikin, L. Tracy, J. Reno, and T. Hargett

Phys. Rev. B 105, 195305 (2022) - Published 11 May, 2022

Significant reduction in semiconductor interface resistance via interfacial atomic mixing

Qichen Song, Jiawei Zhou, and Gang Chen

Phys. Rev. B 105, 195306 (2022) - Published 11 May, 2022

Atomistic analysis of Auger recombination in c-plane (In,Ga)N/GaN quantum wells: Temperature-dependent competition between radiative and nonradiative recombination

Joshua M. McMahon, Emmanouil Kioupakis, and Stefan Schulz

Phys. Rev. B 105, 195307 (2022) - Published 12 May, 2022

Significant effect of interfacial spin moments in ferromagnet-semiconductor heterojunctions on spin transport in a semiconductor

T. Naito, R. Nishimura, M. Yamada, A. Masago, Y. Shiratsuchi, Y. Wagatsuma, K. Sawano, R. Nakatani, T. Oguchi, and K. Hamaya

Phys. Rev. B 105, 195308 (2022) - Published 13 May, 2022

Nuclear-spin polaron formation: Anisotropy effects and quantum phase transition

Iris Kleinjohann, Andreas Fischer, Mikhail M. Glazov, and Frithjof B. Anders

Phys. Rev. B 105, 195309 (2022) - Published 19 May, 2022

Optomechanical parametric oscillation of a quantum light-fluid lattice

A. A. Reynoso, G. Usaj, D. L. Chafatinos, F. Mangussi, A. E. Bruchhausen, A. S. Kuznetsov, K. Biermann, P. V. Santos, and A. Fainstein

Phys. Rev. B 105, 195310 (2022) - Published 26 May, 2022

Optical parametric oscillators are one of the building pillars of nonlinear and quantum optics, the basis of minimum-uncertainty quantum states and entangled photon pairs. Transferring similar ideas to mechanical vibrations, the authors demonstrate an optomechanical parametric oscillator based on a lattice of traps that confine and couple fluids of light and sound. Nonresonant continuous laser excitation leads to 20 GHz self-induced oscillations of the phonon field, a coherent process associated with a tailored intertrap coupling that is quadratic in the mechanical displacement.

Anyonic braiding via quench dynamics in fractional quantum Hall liquids

Jie Li, Dan Ye, Chen-Xin Jiang, Na Jiang, Xin Wan, and Zi-Xiang Hu

Phys. Rev. B 105, 195311 (2022) - Published 31 May, 2022

Strain-engineered topological phase transitions in ferrovalley 2HRuCl2 monolayer

Kang Sheng, Bokai Zhang, Hong-Kuan Yuan, and Zhi-Yong Wang

Phys. Rev. B 105, 195312 (2022) - Published 31 May, 2022

Surface physics, nanoscale physics, low-dimensional systems

Shear-assisted contact aging of single-asperity nanojunctions

Matthias Vorholzer, Dirk Dietzel, Ebru Cihan, and André Schirmeisen

Phys. Rev. B 105, 195401 (2022) - Published 2 May, 2022

Double local and double nonlocal Andreev reflections in nodal-line semimetal-superconducting heterostructures

Yun-Xia Wang, Xing Wang, and Yu-Xian Li

Phys. Rev. B 105, 195402 (2022) - Published 2 May, 2022

Excitonic fine structure of epitaxial Cd(Se,Te) on ZnTe type-II quantum dots

Petr Klenovský, Piotr Baranowski, and Piotr Wojnar

Phys. Rev. B 105, 195403 (2022) - Published 2 May, 2022

Anomalous screening in narrow-gap carbon nanotubes

Giacomo Sesti, Daniele Varsano, Elisa Molinari, and Massimo Rontani

Phys. Rev. B 105, 195404 (2022) - Published 2 May, 2022

Efficient high-harmonic generation in graphene with two-color laser field at orthogonal polarization

Hamlet K. Avetissian, Garnik F. Mkrtchian, and Andreas Knorr

Phys. Rev. B 105, 195405 (2022) - Published 3 May, 2022

Anisotropic terahertz optostriction in group-IV monochalcogenide compounds

Kun Liu and Jian Zhou

Phys. Rev. B 105, 195406 (2022) - Published 3 May, 2022

Topology of multipartite non-Hermitian one-dimensional systems

Ritu Nehra and Dibyendu Roy

Phys. Rev. B 105, 195407 (2022) - Published 4 May, 2022

First-principles study of bilayer polymeric manganese phthalocyanine

Haechan Park, Shuanglong Liu, James N. Fry, and Hai-Ping Cheng

Phys. Rev. B 105, 195408 (2022) - Published 5 May, 2022

Valley transport driven by dynamic lattice distortion

Yuya Ominato, Daigo Oue, and Mamoru Matsuo

Phys. Rev. B 105, 195409 (2022) - Published 6 May, 2022

Electrically tunable magnetism and unique intralayer charge transfer in Janus monolayer MnSSe for spintronics applications

Yu Chen, Qiang Fan, Yiding Liu, and Gang Yao

Phys. Rev. B 105, 195410 (2022) - Published 6 May, 2022

Impact of band structure on wave function dissipation in field emission resonance

Wei-Bin Su, Shin-Ming Lu, Ho-Hsiang Chang, Horng-Tay Jeng, Wen-Yuan Chan, Pei-Cheng Jiang, Kung-Hsuan Lin, and Chia-Seng Chang

Phys. Rev. B 105, 195411 (2022) - Published 6 May, 2022

Curved-space Dirac description of elastically deformed monolayer graphene is generally incorrect

Matthew M. Roberts and Toby Wiseman

Phys. Rev. B 105, 195412 (2022) - Published 6 May, 2022

Activation of Raman modes in monolayer transition metal dichalcogenides through strong interaction with gold

Alvaro Rodriguez, Matěj Velický, Jaroslava Řáhová, Viktor Zólyomi, János Koltai, Martin Kalbáč, and Otakar Frank

Phys. Rev. B 105, 195413 (2022) - Published 10 May, 2022

Activation of magnetic moments by annealing in chemical vapor deposited graphene

Hyungki Shin, Ebrahim Sajadi, Ali Khademi, Silvia Lüscher, and Joshua A. Folk

Phys. Rev. B 105, 195414 (2022) - Published 12 May, 2022

Surface reconstructions on Mn3O4(001) films

K. Gillmeister, M. Trautmann, M. Huth, R. Shantyr, K. Meinel, A. Chassé, K.-M. Schindler, H. Neddermeyer, and W. Widdra

Phys. Rev. B 105, 195415 (2022) - Published 12 May, 2022

Manipulating electron waves in graphene using carbon nanotube gating

Shiang-Bin Chiu (邱翔彬), Alina Mreńca-Kolasińska (柯琳娜), Ka Long Lei (李嘉朗), Ching-Hung Chiu (邱靖鈜), Wun-Hao Kang (康文豪), Szu-Chao Chen (陳思超), and Ming-Hao Liu (劉明豪)

Phys. Rev. B 105, 195416 (2022) - Published 16 May, 2022

Unidirectional valley-contrasting photocurrent in strained transition metal dichalcogenide monolayers

Reza Asgari and Dimitrie Culcer

Phys. Rev. B 105, 195418 (2022) - Published 16 May, 2022

Ta4SiTe4: A possible one-dimensional topological insulator

Siyuan Liu, Huabing Yin, David J. Singh, and Peng-Fei Liu

Phys. Rev. B 105, 195419 (2022) - Published 16 May, 2022

Reverse strain-induced snake states in graphene nanoribbons

Cheng-yi Zuo, Junjie Qi, Tian-lun Lu, Zhi-qiang Bao, and Yan Li

Phys. Rev. B 105, 195420 (2022) - Published 17 May, 2022

Orbital Hall effect in bilayer transition metal dichalcogenides: From the intra-atomic approximation to the Bloch states orbital magnetic moment approach

Tarik P. Cysne, Sayantika Bhowal, Giovanni Vignale, and Tatiana G. Rappoport

Phys. Rev. B 105, 195421 (2022) - Published 17 May, 2022

Moiré band structures of the double twisted few-layer graphene

Miao Liang, Meng-Meng Xiao, Zhen Ma, and Jin-Hua Gao

Phys. Rev. B 105, 195422 (2022) - Published 18 May, 2022

Delta-T noise for weak tunneling in one-dimensional systems: Interactions versus quantum statistics

Gu Zhang, Igor V. Gornyi, and Christian Spånslätt

Phys. Rev. B 105, 195423 (2022) - Published 19 May, 2022

One-dimensional quantum systems can host particles with peculiar exchange statistics. Here, the authors elucidate conditions for when such statistics can be connected to the sign of the recently discovered delta-T noise: charge tunneling noise as a response to only a temperature gradient. This work thereby demonstrates the potential for using delta-T noise as a probe of exotic particles in, e.g., fractional quantum Hall and quantum spin Hall tunneling experiments.

Model dielectric functions for fluctuation potential calculations in electron gas: A critical assessment

Aditi Mandal, Sylvain Tricot, Rakesh Choubisa, and Didier Sébilleau

Phys. Rev. B 105, 195424 (2022) - Published 19 May, 2022

Manipulating strong coupling between exciton and quasibound states in the continuum resonance

Meibao Qin, Junyi Duan, Shuyuan Xiao, Wenxing Liu, Tianbao Yu, Tongbiao Wang, and Qinghua Liao

Phys. Rev. B 105, 195425 (2022) - Published 20 May, 2022

Orbital magnetization of Floquet topological systems

Gabriel E. Topp, Päivi Törmä, Dante M. Kennes, and Aditi Mitra

Phys. Rev. B 105, 195426 (2022) - Published 23 May, 2022

Direct dd hybridization mechanism for strong anisotropic carrier transport in layered Mo2SBr2

Haijun Liao, Ye Xiao, Yibin Yang, Le Huang, Huafeng Dong, and Fugen Wu

Phys. Rev. B 105, 195427 (2022) - Published 23 May, 2022

Spin-orbit coupling in transition metal dichalcogenide heterobilayer flat bands

Louk Rademaker

Phys. Rev. B 105, 195428 (2022) - Published 23 May, 2022

Effect of emitters on quantum state transfer in coupled cavity arrays

Eli Baum, Amelia Broman, Trevor Clarke, Natanael C. Costa, Jack Mucciaccio, Alexander Yue, Yuxi Zhang, Victoria Norman, Jesse Patton, Marina Radulaski, and Richard T. Scalettar

Phys. Rev. B 105, 195429 (2022) - Published 23 May, 2022

Casimir-Polder attraction and repulsion between nanoparticles and graphene in out-of-thermal-equilibrium conditions

G. L. Klimchitskaya, V. M. Mostepanenko, and O. Yu. Tsybin

Phys. Rev. B 105, 195430 (2022) - Published 23 May, 2022

Strain-driven chiral phonons in two-dimensional hexagonal materials

Habib Rostami, Francisco Guinea, and Emmanuele Cappelluti

Phys. Rev. B 105, 195431 (2022) - Published 26 May, 2022

Flexible electromagnetic manipulation by topological one-way large-area waveguide states

Tiantao Qu, Neng Wang, Mudi Wang, Lei Zhang, and Jun Chen

Phys. Rev. B 105, 195432 (2022) - Published 26 May, 2022

Nontrivial effect of out-of-plane acoustic phonon mode on limiting room temperature conductivity of ABA-stacked trilayer graphene

Lanting Feng, Zhe Liu, Mingfeng Zhu, and Yisong Zheng

Phys. Rev. B 105, 195433 (2022) - Published 26 May, 2022

Perturbative renormalization and thermodynamics of quantum crystalline membranes

Achille Mauri and Mikhail I. Katsnelson

Phys. Rev. B 105, 195434 (2022) - Published 26 May, 2022

Understanding how thermal and quantum fluctuations of phonon degrees of freedom affect the low-temperature thermodynamics of a freestanding crystalline membrane poses a complex problem at the interface between elasticity, statistical mechanics, and quantum field theory. In this work, the authors apply field-theoretical renormalization-group methods to revisit the role of mechanical nonlinearities and anharmonic effects on the behavior of thermodynamical quantities in the limit T0.

Nonadiabatic vibronic effects in single-molecule junctions: A theoretical study using the hierarchical equations of motion approach

C. Kaspar, A. Erpenbeck, J. Bätge, C. Schinabeck, and M. Thoss

Phys. Rev. B 105, 195435 (2022) - Published 27 May, 2022

Influence of metal codeposition on the growth and orientation of nanoripple structure during ion bombardment

Anindita Deka, Pintu Barman, M. K. Mukhopadhyay, and S. R. Bhattacharyya

Phys. Rev. B 105, 195437 (2022) - Published 31 May, 2022

Influence of deuterium-induced volume changes on optical transmission in Fe/V (001) and Cr/V (001) superlattices

S. A. Droulias, O. Grånäs, O. Hartmann, K. Komander, B. Hjörvarsson, M. Wolff, and G. K. Pálsson

Phys. Rev. B 105, 195438 (2022) - Published 31 May, 2022

Jacutingaite family: An efficient platform for coexistence of spin valley Hall effects, valley spin-valve realization, and layer spin crossover

Majeed Ur Rehman, Maryam Kiani, and Jian Wang

Phys. Rev. B 105, 195439 (2022) - Published 31 May, 2022

Polarization-controlled dynamically switchable high-harmonic generation from all-dielectric metasurfaces governed by dual bound states in the continuum

Shuyuan Xiao, Meibao Qin, Junyi Duan, Feng Wu, and Tingting Liu

Phys. Rev. B 105, 195440 (2022) - Published 31 May, 2022

ERRATA

Erratum: Pulay forces in density-functional theory with extended Hubbard functionals: From nonorthogonalized to orthogonalized manifolds [Phys. Rev. B 102, 235159 (2020)]

Iurii Timrov, Francesco Aquilante, Luca Binci, Matteo Cococcioni, and Nicola Marzari

Phys. Rev. B 105, 199901 (2022) - Published 31 May, 2022

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