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HIGHLIGHTED ARTICLES

Electronic topology with bound defect charges promotes intermediate hexatic phase in two-dimensional melting

Junyan Ma and H. Huang

Phys. Rev. B 109, 205107 (2024) - Published 1 May, 2024

This paper delves into the intriguing connection between electronic topology and the two-dimensional melting of solids. Conventionally, Kosterlitz-Thouless-Halperin-Nelson-Young theory shows that the behavior of disclinations determines the melting process of 2D crystals. By uncovering how electrons become trapped in disclinations due to nontrivial electronic topology, the authors shed light here on a deviation of the disclination-involving melting process, because of the increase in the energy barrier for unbinding disclination pairs.

Ballistic to diffusive crossover in a weakly interacting Fermi gas

Jerome Lloyd, Tibor Rakovszky, Frank Pollmann, and Curt von Keyserlingk

Phys. Rev. B 109, 205108 (2024) - Published 1 May, 2024

In systems of fermions at finite temperatures, interactions are believed to induce a crossover from the coherent and ballistic streaming of quasiparticles at early times, to incoherent diffusive behavior at late times. Here, the authors develop a numerical method to simulate such systems. They use the method to determine how the rate of diffusion depends on the strength of interactions, and to confirm the predicted crossover.

Moiré fractional Chern insulators. I. First-principles calculations and continuum models of twisted bilayer MoTe2

Yujin Jia, Jiabin Yu, Jiaxuan Liu, Jonah Herzog-Arbeitman, Ziyue Qi, Hanqi Pi, Nicolas Regnault, Hongming Weng, B. Andrei Bernevig, and Quansheng Wu

Phys. Rev. B 109, 205121 (2024) - Published 7 May, 2024

The researchers here shed new light on the elusive single-particle model of twisted bilayer MoTe2, a material recently highlighted for hosting fractional Chern insulators at zero magnetic field. By leveraging an advanced machine learning method and density functional theory, the team meticulously maps out the band structure across various twist angles, revealing a pivotal band inversion and refining the theoretical landscape. By enhancing the continuum model with higher harmonic terms, they unveil opposite Chern numbers in the valence bands for key angles, paving the way for predicting diverse Chern states. This comprehensive analysis lays the groundwork for accurately pinpointing correlated phases in this intriguing material, offering a beacon for future explorations.

Moiré fractional Chern insulators. II. First-principles calculations and continuum models of rhombohedral graphene superlattices

Jonah Herzog-Arbeitman, Yuzhi Wang, Jiaxuan Liu, Pok Man Tam, Ziyue Qi, Yujin Jia, Dmitri K. Efetov, Oskar Vafek, Nicolas Regnault, Hongming Weng, Quansheng Wu, B. Andrei Bernevig, and Jiabin Yu

Phys. Rev. B 109, 205122 (2024) - Published 7 May, 2024

The observation of fractional Chern insulators in rhombohedral pentalayer graphene twisted on hexagonal boron nitride has initiated a flurry of theoretical work seeking its explanation. As a step towards understanding the origin of these phases, the authors undertake here a first-principles study of the large family of multilayer rhombohedral graphene/boron nitride superlattices, including structural relaxation. The moiré models they obtain faithfully capture the microscopic band structure and are the starting point for understanding the observed topological phases and predicting new ones.

Conformal field theory approach to parton fractional quantum Hall trial wave functions

Greg J. Henderson, G. J. Sreejith, and Steven H. Simon

Phys. Rev. B 109, 205128 (2024) - Published 10 May, 2024

Conformal field theory (CFT) has played a pivotal role in understanding the topological phases of matter represented by many fractional quantum Hall effect (FQHE) trial wave functions. Previous papers have shown how the topological properties of a trial wave function expressible as a CFT correlation function can be related to properties of the corresponding CFT, assuming a field-theoretic generalization of Laughlin’s plasma analogy holds. Here, the authors show how these methods can be extended to understand certain topological properties of parton-type FQHE trial wave functions.

Influence of the electron density on the giant negative magnetoresistance in two-dimensional electron gases

L. Bockhorn, D. Schuh, C. Reichl, W. Wegscheider, and R. J. Haug

Phys. Rev. B 109, 205416 (2024) - Published 13 May, 2024

Ultrahigh-mobility two-dimensional electron gases show an astonishing robust negative magnetoresistance at zero magnetic field. In situ variation of the electron density enables a deep insight into the nature of this negative magnetoresistance. Here, the authors investigate the temperature-dependent giant negative magnetoresistance (GNMR) as a function of the electron density for several temperatures and currents. They find that the GNMR behavior depends decisively on the electron density. This observation is attributed to a changed disorder potential with electron density.

Realization of nodal-ring semimetal in pressurized black phosphorus

Kazuto Akiba, Yuichi Akahama, Masashi Tokunaga, and Tatsuo C. Kobayashi

Phys. Rev. B 109, L201103 (2024) - Published 3 May, 2024

Nodal-ring semimetals have attracted attention for their unique band topology and resulting nontrivial quantum phenomena. Using fermiology under high pressure, the authors reveal here a pure nodal-ring semimetal state in pressurized black phosphorus. Semimetallic black phosphorus can provide an ideal platform to explore the true nature of this topological quantum state using external pressure as an effective tuning parameter.

Nematic heavy fermions and coexisting magnetic order in CeSiI

Aayush Vijayvargia and Onur Erten

Phys. Rev. B 109, L201118 (2024) - Published 16 May, 2024

The authors construct here a low-energy model for CeSiI, a new van der Waals (vdW) material that exhibits heavy Fermi liquid behaviour coexisting with magnetic order. Using Abrikosov mean field theory, they observe that the unique geometry of the material facilitates the existence of a nematic heavy Fermi liquid phase as well as a coexistence of heavy Fermi liquid and magnetic order phase. In particular, it is shown that an electric field applied perpendicular to the material consolidates the coexistence phase, demonstrating the high tunability of this new vdW heavy fermion material.

Electrostatic nature of cavity-mediated interactions between low-energy matter excitations

Petros-Andreas Pantazopoulos, Johannes Feist, Akashdeep Kamra, and Francisco J. García-Vidal

Phys. Rev. B 109, L201408 (2024) - Published 23 May, 2024

Here, the authors demonstrate that cavity quantum electrodynamical effects induce electrostatic interactions between low-energy matter excitations when these are off-resonantly coupled either directly to the cavity field or indirectly via resonant mediator modes. These findings expose the limitations of previous models that have used just one cavity mode in the electromagnetic description of the cavity. The results provide critical insights for designing nanophotonic structures leading to significant cavity-induced interactions, which could open new avenues for modifying material properties using vacuum fields.

LETTERS

Electronic structure and strongly correlated systems

Nature of the photoinduced metallic state in monoclinic VO2

Jiyu Chen, Francesco Petocchi, Viktor Christiansson, and Philipp Werner

Phys. Rev. B 109, L201101 (2024) - Published 2 May, 2024

Phase transitions and scale invariance in topological Anderson insulators

Bryan D. Assunção, Gerson J. Ferreira, and Caio H. Lewenkopf

Phys. Rev. B 109, L201102 (2024) - Published 2 May, 2024

Realization of nodal-ring semimetal in pressurized black phosphorus

Kazuto Akiba, Yuichi Akahama, Masashi Tokunaga, and Tatsuo C. Kobayashi

Phys. Rev. B 109, L201103 (2024) - Published 3 May, 2024

Nodal-ring semimetals have attracted attention for their unique band topology and resulting nontrivial quantum phenomena. Using fermiology under high pressure, the authors reveal here a pure nodal-ring semimetal state in pressurized black phosphorus. Semimetallic black phosphorus can provide an ideal platform to explore the true nature of this topological quantum state using external pressure as an effective tuning parameter.

Generation of gauge magnetic fields in a kagome spin liquid candidate using the Dzyaloshinskii-Moriya interaction

Byungmin Kang and Patrick A. Lee

Phys. Rev. B 109, L201104 (2024) - Published 3 May, 2024

Manipulating topological quantum phase transitions of Kitaev's quantum spin liquids with electric fields

Pureum Noh, Kyusung Hwang, and Eun-Gook Moon

Phys. Rev. B 109, L201105 (2024) - Published 6 May, 2024

Optical anisotropy of the kagome magnet FeSn: Dominant role of excitations between kagome and Sn layers

J. Ebad-Allah, M.-C. Jiang, R. Borkenhagen, F. Meggle, L. Prodan, V. Tsurkan, F. Schilberth, G.-Y. Guo, R. Arita, I. Kézsmárki, and C. A. Kuntscher

Phys. Rev. B 109, L201106 (2024) - Published 7 May, 2024

Geometric semimetals and their simulation in synthetic matter

Yu-Ping Lin and Giandomenico Palumbo

Phys. Rev. B 109, L201107 (2024) - Published 8 May, 2024

Origin of incommensurate magnetic order in the RAlSi magnetic Weyl semimetals (R=Pr, Nd, Sm)

Juba Bouaziz, Gustav Bihlmayer, Christopher E. Patrick, Julie B. Staunton, and Stefan Blügel

Phys. Rev. B 109, L201108 (2024) - Published 8 May, 2024

Creation and manipulation of higher-order topological states by altermagnets

Yu-Xuan Li, Yichen Liu, and Cheng-Cheng Liu

Phys. Rev. B 109, L201109 (2024) - Published 9 May, 2024

Manipulating vortices with domain walls in superconductor-ferromagnet heterostructures

Sebastián A. Díaz, Jonas Nothhelfer, Kjetil M. D. Hals, and Karin Everschor-Sitte

Phys. Rev. B 109, L201110 (2024) - Published 10 May, 2024

Population inversion and ultrafast terahertz nonlinearity of transient Dirac fermions in Cd3As2

Changqing Zhu, Patrick Pilch, Renato M. A. Dantas, Anneke Reinold, Yunkun Yang, Faxian Xiu, Amilcar Bedoya-Pinto, Stuart S. P. Parkin, Roderich Moessner, and Zhe Wang

Phys. Rev. B 109, L201111 (2024) - Published 10 May, 2024

Boundary-deconfined quantum criticality at transitions between symmetry-protected topological chains

Saranesh Prembabu, Ryan Thorngren, and Ruben Verresen

Phys. Rev. B 109, L201112 (2024) - Published 13 May, 2024

Entanglement Hamiltonian of a nonrelativistic Fermi gas

Viktor Eisler

Phys. Rev. B 109, L201113 (2024) - Published 13 May, 2024

Room-temperature transparent oxide spin electronics: A conducting interface in LaFeO3SrTiO3

Ripudaman Kaur, Anamika Kumari, Shinjini Paul, Mohd Anas, Bibek Ranjan Satapathy, Sanjeev Kumar, V. K. Malik, P. Mahadevan, D. D. Sarma, and Suvankar Chakraverty

Phys. Rev. B 109, L201114 (2024) - Published 14 May, 2024

Semiempirical ab initio modeling of bound states of deep defects in semiconductor quantum technologies

YunHeng Chen, Lachlan Oberg, Johannes Flick, Artur Lozovoi, Carlos A. Meriles, and Marcus W. Doherty

Phys. Rev. B 109, L201115 (2024) - Published 15 May, 2024

No eigenstate of the critical transverse-field Ising chain satisfies the area law

Saverio Bocini and Maurizio Fagotti

Phys. Rev. B 109, L201116 (2024) - Published 15 May, 2024

Floquet chiral quantum walk in a quantum computer

Chan Bin Bark, Youngseok Kim, and Moon Jip Park

Phys. Rev. B 109, L201117 (2024) - Published 15 May, 2024

Nematic heavy fermions and coexisting magnetic order in CeSiI

Aayush Vijayvargia and Onur Erten

Phys. Rev. B 109, L201118 (2024) - Published 16 May, 2024

The authors construct here a low-energy model for CeSiI, a new van der Waals (vdW) material that exhibits heavy Fermi liquid behaviour coexisting with magnetic order. Using Abrikosov mean field theory, they observe that the unique geometry of the material facilitates the existence of a nematic heavy Fermi liquid phase as well as a coexistence of heavy Fermi liquid and magnetic order phase. In particular, it is shown that an electric field applied perpendicular to the material consolidates the coexistence phase, demonstrating the high tunability of this new vdW heavy fermion material.

Kekulé spirals and charge transfer cascades in twisted symmetric trilayer graphene

Ziwei Wang, Yves H. Kwan, Glenn Wagner, Nick Bultinck, Steven H. Simon, and S. A. Parameswaran

Phys. Rev. B 109, L201119 (2024) - Published 16 May, 2024

Thermal transport measurements through the charge density wave transition in CsV3Sb5

Erik D. Kountz, Chaitanya R. Murthy, Dong Chen, Linda Ye, Mark P. Zic, Claudia Felser, Ian R. Fisher, Steven A. Kivelson, and Aharon Kapitulnik

Phys. Rev. B 109, L201120 (2024) - Published 17 May, 2024

Non-Bloch dynamics and topology in a classical nonequilibrium process

Bo Li, He-Ran Wang, Fei Song, and Zhong Wang

Phys. Rev. B 109, L201121 (2024) - Published 20 May, 2024

Multipole higher-order topology in a multimode lattice

Maxim Mazanov, Anton S. Kupriianov, Roman S. Savelev, Zuxian He, and Maxim A. Gorlach

Phys. Rev. B 109, L201122 (2024) - Published 22 May, 2024

Scanning tunneling microscopy of fractional quantum Hall states: Spectroscopy of composite-fermion bound states

Mytraya Gattu, G. J. Sreejith, and J. K. Jain

Phys. Rev. B 109, L201123 (2024) - Published 22 May, 2024

Pair correlations of the hybridized orbitals in a ladder model for the bilayer nickelate La3Ni2O7

Masataka Kakoi, Tatsuya Kaneko, Hirofumi Sakakibara, Masayuki Ochi, and Kazuhiko Kuroki

Phys. Rev. B 109, L201124 (2024) - Published 24 May, 2024

Surface physics, nanoscale physics, low-dimensional systems

Band geometry induced high angular momentum excitonic superfluid in gapped chiral fermion systems

Huaiyuan Yang, Yuelin Shao, Yuanfeng Xu, Xi Dai, and Xin-Zheng Li

Phys. Rev. B 109, L201401 (2024) - Published 3 May, 2024

Tuning the number of chiral edge channels in a fixed quantum anomalous Hall system

Peng Deng, Yulei Han, Peng Zhang, Su Kong Chong, Zhenhua Qiao, and Kang L. Wang

Phys. Rev. B 109, L201402 (2024) - Published 6 May, 2024

Colossal layer Nernst effect in twisted moiré layers

Jin-Xin Hu, Chuanchang Zeng, and Yugui Yao

Phys. Rev. B 109, L201403 (2024) - Published 6 May, 2024

Gapless superconducting state and mirage gap in altermagnets

Miaomiao Wei, Longjun Xiang, Fuming Xu, Lei Zhang, Gaomin Tang, and Jian Wang

Phys. Rev. B 109, L201404 (2024) - Published 13 May, 2024

Fine structure splitting cancellation in highly asymmetric InAs/InP droplet epitaxy quantum dots

N. R. S. van Venrooij, A. R. da Cruz, R. S. R. Gajjela, P. M. Koenraad, Craig E. Pryor, and Michael E. Flatté

Phys. Rev. B 109, L201405 (2024) - Published 15 May, 2024

Terahertz spin-light coupling in proximitized Dirac materials

Konstantin S. Denisov, Igor V. Rozhansky, Sergio O. Valenzuela, and Igor Žutić

Phys. Rev. B 109, L201406 (2024) - Published 16 May, 2024

Fragile dislocation modes in obstructed atomic topological phases

Gabriel Malavé, Jorge Schifferli, Rodrigo Soto-Garrido, Pedro A. Orellana, and Vladimir Juričić

Phys. Rev. B 109, L201407 (2024) - Published 22 May, 2024

Electrostatic nature of cavity-mediated interactions between low-energy matter excitations

Petros-Andreas Pantazopoulos, Johannes Feist, Akashdeep Kamra, and Francisco J. García-Vidal

Phys. Rev. B 109, L201408 (2024) - Published 23 May, 2024

Here, the authors demonstrate that cavity quantum electrodynamical effects induce electrostatic interactions between low-energy matter excitations when these are off-resonantly coupled either directly to the cavity field or indirectly via resonant mediator modes. These findings expose the limitations of previous models that have used just one cavity mode in the electromagnetic description of the cavity. The results provide critical insights for designing nanophotonic structures leading to significant cavity-induced interactions, which could open new avenues for modifying material properties using vacuum fields.

Exciton spin Hall effect in arc-shaped strained WSe2

A. Shubnic, V. Shahnazaryan, I. A. Shelykh, and H. Rostami

Phys. Rev. B 109, L201409 (2024) - Published 24 May, 2024

ARTICLES

Electronic structure and strongly correlated systems

Electronic and valley properties of Janus TeMSiX2 (M=Mo,W; X=P,As) monolayers and TeMSiX2/CrI3 heterostructures

Yang Yang, Tao Li, Shi-quan Feng, and Hong-Yan Lu

Phys. Rev. B 109, 205101 (2024) - Published 1 May, 2024

Robust T-linear resistivity due to SU(4) valley and spin fluctuation mechanism in magic-angle twisted bilayer graphene

Daisuke Inoue, Seiichiro Onari, and Hiroshi Kontani

Phys. Rev. B 109, 205102 (2024) - Published 1 May, 2024

Realization of ideal nodal-line fermions in doped Ni3In-based structures

Ye Yang, Rui Wang, and Xianhui Chen

Phys. Rev. B 109, 205103 (2024) - Published 1 May, 2024

Magnetic polarons beyond linear spin-wave theory: Mesons dressed by magnons

Pit Bermes, Annabelle Bohrdt, and Fabian Grusdt

Phys. Rev. B 109, 205104 (2024) - Published 1 May, 2024

Nonvolatile spin field effect transistor based on VSi2N4/Sc2CO2 multiferroic heterostructure

Xian Zhang, Bang Liu, Junsheng Huang, Xinwei Cao, Yunzhe Zhang, and Zhi-Xin Guo

Phys. Rev. B 109, 205105 (2024) - Published 1 May, 2024

Direct topological insulator transitions in three dimensions are destabilized by nonperturbative effects of disorder

Yixing Fu, Justin H. Wilson, David A. Huse, and J. H. Pixley

Phys. Rev. B 109, 205106 (2024) - Published 1 May, 2024

Electronic topology with bound defect charges promotes intermediate hexatic phase in two-dimensional melting

Junyan Ma and H. Huang

Phys. Rev. B 109, 205107 (2024) - Published 1 May, 2024

This paper delves into the intriguing connection between electronic topology and the two-dimensional melting of solids. Conventionally, Kosterlitz-Thouless-Halperin-Nelson-Young theory shows that the behavior of disclinations determines the melting process of 2D crystals. By uncovering how electrons become trapped in disclinations due to nontrivial electronic topology, the authors shed light here on a deviation of the disclination-involving melting process, because of the increase in the energy barrier for unbinding disclination pairs.

Ballistic to diffusive crossover in a weakly interacting Fermi gas

Jerome Lloyd, Tibor Rakovszky, Frank Pollmann, and Curt von Keyserlingk

Phys. Rev. B 109, 205108 (2024) - Published 1 May, 2024

In systems of fermions at finite temperatures, interactions are believed to induce a crossover from the coherent and ballistic streaming of quasiparticles at early times, to incoherent diffusive behavior at late times. Here, the authors develop a numerical method to simulate such systems. They use the method to determine how the rate of diffusion depends on the strength of interactions, and to confirm the predicted crossover.

Tuning proximity spin-orbit coupling in graphene/NbSe2 heterostructures via twist angle

Thomas Naimer, Martin Gmitra, and Jaroslav Fabian

Phys. Rev. B 109, 205109 (2024) - Published 2 May, 2024

Higher-harmonic generation in the driven Mott-Hubbard model

Friedemann Queisser and Ralf Schützhold

Phys. Rev. B 109, 205110 (2024) - Published 3 May, 2024

Chiral spin liquid on a Shastry-Sutherland Heisenberg antiferromagnet

Jian-Wei Yang, Wei-Wei Luo, W. Zhu, L. Wang, Bo Yang, and Pinaki Sengupta

Phys. Rev. B 109, 205111 (2024) - Published 3 May, 2024

Relocalization of uranium 5f electrons in the antiferromagnetic heavy-fermion superconductor UPd2Al3: Insights from angle-resolved photoemission spectroscopy

Jiao-Jiao Song, Chen Zhang, Qi-Yi Wu, Yin-Zou Zhao, Ján Rusz, John J. Joyce, Kevin S. Graham, Peter S. Riseborough, Clifford G. Olson, Hao Liu, Bo Chen, Ya-Hua Yuan, Yu-Xia Duan, Paul H. Tobash, Eric D. Bauer, Peter M. Oppeneer, Tomasz Durakiewicz, and Jian-Qiao Meng

Phys. Rev. B 109, 205114 (2024) - Published 3 May, 2024

Fermi surface of the chiral topological semimetal CoSi

Nico Huber, Sanu Mishra, Ilya Sheikin, Kirill Alpin, Andreas P. Schnyder, Georg Benka, Andreas Bauer, Christian Pfleiderer, and Marc A. Wilde

Phys. Rev. B 109, 205115 (2024) - Published 6 May, 2024

Electronic quantum wires in extended quasiparticle picture

Klaus Morawetz, Vinod Ashokan, Kare Narain Pathak, Neil Drummond, and Gianaurelio Cuniberti

Phys. Rev. B 109, 205116 (2024) - Published 7 May, 2024

Microscopic theory of nonlinear Hall effect induced by electric field and temperature gradient

Terufumi Yamaguchi, Kazuki Nakazawa, and Ai Yamakage

Phys. Rev. B 109, 205117 (2024) - Published 7 May, 2024

Consistent combination of truncated-unity functional renormalization group and mean-field theory

Song-Jin O

Phys. Rev. B 109, 205118 (2024) - Published 7 May, 2024

Nonendpoint Majorana bound states in an extended Kitaev chain

Xuan Zhang, Cheng-Ming Miao, Qing-Feng Sun, and Ying-Tao Zhang

Phys. Rev. B 109, 205119 (2024) - Published 7 May, 2024

Moiré fractional Chern insulators. I. First-principles calculations and continuum models of twisted bilayer MoTe2

Yujin Jia, Jiabin Yu, Jiaxuan Liu, Jonah Herzog-Arbeitman, Ziyue Qi, Hanqi Pi, Nicolas Regnault, Hongming Weng, B. Andrei Bernevig, and Quansheng Wu

Phys. Rev. B 109, 205121 (2024) - Published 7 May, 2024

The researchers here shed new light on the elusive single-particle model of twisted bilayer MoTe2, a material recently highlighted for hosting fractional Chern insulators at zero magnetic field. By leveraging an advanced machine learning method and density functional theory, the team meticulously maps out the band structure across various twist angles, revealing a pivotal band inversion and refining the theoretical landscape. By enhancing the continuum model with higher harmonic terms, they unveil opposite Chern numbers in the valence bands for key angles, paving the way for predicting diverse Chern states. This comprehensive analysis lays the groundwork for accurately pinpointing correlated phases in this intriguing material, offering a beacon for future explorations.

Moiré fractional Chern insulators. II. First-principles calculations and continuum models of rhombohedral graphene superlattices

Jonah Herzog-Arbeitman, Yuzhi Wang, Jiaxuan Liu, Pok Man Tam, Ziyue Qi, Yujin Jia, Dmitri K. Efetov, Oskar Vafek, Nicolas Regnault, Hongming Weng, Quansheng Wu, B. Andrei Bernevig, and Jiabin Yu

Phys. Rev. B 109, 205122 (2024) - Published 7 May, 2024

The observation of fractional Chern insulators in rhombohedral pentalayer graphene twisted on hexagonal boron nitride has initiated a flurry of theoretical work seeking its explanation. As a step towards understanding the origin of these phases, the authors undertake here a first-principles study of the large family of multilayer rhombohedral graphene/boron nitride superlattices, including structural relaxation. The moiré models they obtain faithfully capture the microscopic band structure and are the starting point for understanding the observed topological phases and predicting new ones.

Many-body higher-order topological invariant for Cn-symmetric insulators

Ammar Jahin, Yuan-Ming Lu, and Yuxuan Wang

Phys. Rev. B 109, 205123 (2024) - Published 8 May, 2024

Dynamical correlations leading to site and orbital selective Mott insulator transition in hydrogen doped SmNiO3

Soumya S. Bhat, Vijay Singh, Uthpala Herath, Bilvin Varughese, Subramanian K. R. S. Sankaranarayanan, Hyowon Park, and Aldo H. Romero

Phys. Rev. B 109, 205124 (2024) - Published 9 May, 2024

Boundaries and defects in the cubic code

Cory T. Aitchison, Daniel Bulmash, Arpit Dua, Andrew C. Doherty, and Dominic J. Williamson

Phys. Rev. B 109, 205125 (2024) - Published 9 May, 2024

Bound on approximating non-Markovian dynamics by tensor networks in the time domain

Ilya Vilkoviskiy and Dmitry A. Abanin

Phys. Rev. B 109, 205126 (2024) - Published 9 May, 2024

Neutron scattering study on dimerized 4f1 intermetallic compound Ce5Si3

Daichi Ueta, Yuki Iwata, Riki Kobayashi, Keitaro Kuwahara, Takatsugu Masuda, and Shinichi Itoh

Phys. Rev. B 109, 205127 (2024) - Published 9 May, 2024

Conformal field theory approach to parton fractional quantum Hall trial wave functions

Greg J. Henderson, G. J. Sreejith, and Steven H. Simon

Phys. Rev. B 109, 205128 (2024) - Published 10 May, 2024

Conformal field theory (CFT) has played a pivotal role in understanding the topological phases of matter represented by many fractional quantum Hall effect (FQHE) trial wave functions. Previous papers have shown how the topological properties of a trial wave function expressible as a CFT correlation function can be related to properties of the corresponding CFT, assuming a field-theoretic generalization of Laughlin’s plasma analogy holds. Here, the authors show how these methods can be extended to understand certain topological properties of parton-type FQHE trial wave functions.

Electron-vacancy scattering in SrNbO3 and SrTiO3: A density functional theory study with nonequilibrium Green's functions

Victor Rosendal, Nini Pryds, Dirch H. Petersen, and Mads Brandbyge

Phys. Rev. B 109, 205129 (2024) - Published 13 May, 2024

High-harmonic generation in semi-Dirac and Weyl semimetals with broken time-reversal symmetry: Exploration of the merging of Weyl nodes

Luka Medic, Jernej Mravlje, Anton Ramšak, and Tomaž Rejec

Phys. Rev. B 109, 205130 (2024) - Published 13 May, 2024

Mechanism of intermetallic charge transfer and bond disproportionation in BiNiO3 and PbNiO3 revealed by hard x-ray photoemission spectroscopy

Tatsuya Yamaguchi, Mizuki Furo, Yuki Sakai, Takumi Nishikubo, Hajime Hojo, Masaki Azuma, Kengo Oka, Daisuke Mori, Yoshiyuki Inaguma, Masaichiro Mizumaki, Kento Yamamoto, Jan Kuneš, Takashi Mizokawa, and Atsushi Hariki

Phys. Rev. B 109, 205131 (2024) - Published 13 May, 2024

Collapse of quasiparticle multiplets and 5f itinerant-localized crossovers in cubic phase Pu3Ga

Li Huang and Haiyan Lu

Phys. Rev. B 109, 205132 (2024) - Published 13 May, 2024

Magnetic fluctuations and dominant superconducting pairing symmetry near the tunable Van Hove singularity

Xiaohan Kong, Boyang Wen, Kaiyi Guo, Ying Liang, and Tianxing Ma

Phys. Rev. B 109, 205133 (2024) - Published 14 May, 2024

Optimal compression of constrained quantum time evolution

Maurits S. J. Tepaske, David J. Luitz, and Dominik Hahn

Phys. Rev. B 109, 205134 (2024) - Published 15 May, 2024

Non-Hermitian skin effects in two- and three-dimensional intertwined tight-binding lattices

Chong Hou, Gangzhou Wu, Lingfang Li, Abdul Basit, Yating Wei, Shihua Chen, Philippe Grelu, and Zhenhua Ni

Phys. Rev. B 109, 205135 (2024) - Published 15 May, 2024

Observation of a p-orbital higher-order topological insulator phase in puckered lattice acoustic metamaterials

Bing-Quan Wu, Zhi-Kang Lin, Li-Wei Wang, and Jian-Hua Jiang

Phys. Rev. B 109, 205136 (2024) - Published 16 May, 2024

Higher-order topological phases in bilayer phononic crystals and topological bound states in the continuum

Xiao-Yu Liu, Yang Liu, Zhan Xiong, Hai-Xiao Wang, and Jian-Hua Jiang

Phys. Rev. B 109, 205137 (2024) - Published 16 May, 2024

Successive change from band insulating phase to spin-singlet dimer phase in the pseudobrookite titanate MgTi2O5Ti3O5 system

Daigo Indo, Taisei Yoshinaga, Mitsutoshi Arizono, Kazuya Takasu, Tetsuro Izaki, Takumi Shirasaki, Hinata Arai, Hideki Kuwahara, Kaoru Akimoto, Kei Ikeda, Takuro Katsufuji, and Tetsuji Okuda

Phys. Rev. B 109, 205138 (2024) - Published 20 May, 2024

Electrical tuning of the magnetic properties of two-dimensional magnets: Cr2Ge2Te6

Guido Menichetti, Matteo Calandra, and Marco Polini

Phys. Rev. B 109, 205139 (2024) - Published 20 May, 2024

Quantifying the accuracy of steady states obtained from the universal Lindblad equation

Frederik Nathan and Mark S. Rudner

Phys. Rev. B 109, 205140 (2024) - Published 20 May, 2024

Comprehensive study of all spinful and spinless linear band crossings in the 80 layer groups

Wencheng Wang, Liangliang Huang, Xiangang Wan, and Feng Tang

Phys. Rev. B 109, 205141 (2024) - Published 20 May, 2024

Topological phases of commensurate or incommensurate non-Hermitian Su-Schrieffer-Heeger lattices

Milad Jangjan, Linhu Li, Luis E. F. Foa Torres, and Mir Vahid Hosseini

Phys. Rev. B 109, 205142 (2024) - Published 21 May, 2024

Atomic multiplet and charge transfer screening effects in 1s and 2p core-level x-ray photoelectron spectra of early 3d transition-metal oxides

Tatsuya Yamaguchi, Keisuke Higashi, Anna Regoutz, Yoshihiro Takahashi, Masoud Lazemi, Qijun Che, Frank M. F. de Groot, and Atsushi Hariki

Phys. Rev. B 109, 205143 (2024) - Published 21 May, 2024

Exotic topological phenomena in chiral superconducting states on doped quantum spin Hall insulators with honeycomb lattices

Junkang Huang, Tao Zhou, and Z. D. Wang

Phys. Rev. B 109, 205144 (2024) - Published 21 May, 2024

Tuning the colossal magnetoresistance in (Mn1xMgx)3Si2Te6 by engineering the gap and magnetic properties via doping and pressure

Chaoxin Huang, Mengwu Huo, Xing Huang, Hui Liu, Lisi Li, Ziyou Zhang, Zhiqiang Chen, Yifeng Han, Lan Chen, Feixiang Liang, Hongliang Dong, Bing Shen, Hualei Sun, and Meng Wang

Phys. Rev. B 109, 205145 (2024) - Published 21 May, 2024

Anyon condensation web and multipartite entanglement in two-dimensional modulated gauge theories

Guilherme Delfino and Yizhi You

Phys. Rev. B 109, 205146 (2024) - Published 21 May, 2024

Integral algorithm of exponential observables for interacting fermions in quantum Monte Carlo simulations

Xu Zhang, Gaopei Pan, Bin-Bin Chen, Kai Sun, and Zi Yang Meng

Phys. Rev. B 109, 205147 (2024) - Published 21 May, 2024

Antiferromagnetic order enhanced by local dissipation

Oscar Bouverot-Dupuis, Saptarshi Majumdar, Alberto Rosso, and Laura Foini

Phys. Rev. B 109, 205148 (2024) - Published 22 May, 2024

RKKY signals characterizing the topological phase transitions in Floquet Dirac semimetals

Hou-Jian Duan, Shi-Ming Cai, Xing Wei, Yong-Chi Chen, Yong-Jia Wu, Ming-Xun Deng, Ruiqiang Wang, and Mou Yang

Phys. Rev. B 109, 205149 (2024) - Published 23 May, 2024

Many-body model for the cooperative Jahn-Teller effect in crystals and its associated orbital ordering

Toraya Fernández-Ruiz, Inés Sánchez-Movellán, Juan María García-Lastra, Miguel Moreno, José Antonio Aramburu, and Pablo García-Fernández

Phys. Rev. B 109, 205150 (2024) - Published 24 May, 2024

Efficient calculation of unbiased atomic forces in ab initio variational Monte Carlo

Kousuke Nakano, Michele Casula, and Giacomo Tenti

Phys. Rev. B 109, 205151 (2024) - Published 28 May, 2024

Tensile and compressive strain tuning of a Kondo lattice

Soumendra Nath Panja, Anton Jesche, Nan Tang, and Philipp Gegenwart

Phys. Rev. B 109, 205152 (2024) - Published 28 May, 2024

Collective excitations in competing phases in two and three dimensions

Joshua Althüser and Götz S. Uhrig

Phys. Rev. B 109, 205153 (2024) - Published 28 May, 2024

SU(N) Kondo-Heisenberg chain: Phase diagram, Ising criticality, and the coexistence of heavy quasiparticles and valence bond solid order

Marcin Raczkowski and Fakher F. Assaad

Phys. Rev. B 109, 205154 (2024) - Published 29 May, 2024

Realization of rhombohedral-stacked trilayer graphene by moiré engineering

Ya-Xin Zhao, Mo-Han Zhang, Zi-Yi Han, Ya-Ning Ren, Xiao-Feng Zhou, Chao Yan, Ke Lv, Yu Zhang, and Lin He

Phys. Rev. B 109, 205155 (2024) - Published 29 May, 2024

Electronic properties of the bilayer nickelates R3Ni2O7 with oxygen vacancies (R=La or Ce)

Xuelei Sui, Xiangru Han, Heng Jin, Xiaojun Chen, Liang Qiao, Xiaohong Shao, and Bing Huang

Phys. Rev. B 109, 205156 (2024) - Published 28 May, 2024

Critical quantum dynamics of observables at eigenstate transitions

Simon Jiricek, Miroslav Hopjan, Patrycja Łydżba, Fabian Heidrich-Meisner, and Lev Vidmar

Phys. Rev. B 109, 205157 (2024) - Published 28 May, 2024

Superconducting triangular islands as a platform for manipulating Majorana zero modes

Aidan Winblad and Hua Chen

Phys. Rev. B 109, 205158 (2024) - Published 31 May, 2024

Semiconductors I: bulk

Optical and photovoltaic properties of organic solar cells versus bulk-heterojunction morphology

Nurzhan Asanov, Nora Schopp, Constantinos Valagiannopoulos, and Viktor Brus

Phys. Rev. B 109, 205201 (2024) - Published 2 May, 2024

Multiband k·p theory for hexagonal germanium

Yetkin Pulcu, János Koltai, Andor Kormányos, and Guido Burkard

Phys. Rev. B 109, 205202 (2024) - Published 2 May, 2024

Ultralow thermal conduction and impurity scattering in Cu2HgSnS4: An Hg-harnessed diamondlike semiconductor for thermoelectric devices

Sumit Kukreti, Surbhi Ramawat, and Ambesh Dixit

Phys. Rev. B 109, 205203 (2024) - Published 6 May, 2024

Orbit-lattice coupling leads to the intrinsic low thermal conductivity in MTe(M=Ge,Sn,Pb) thermoelectric materials

Yan Wang, Mingyuan Hu, Lin Xie, and Jiaqing He

Phys. Rev. B 109, 205204 (2024) - Published 20 May, 2024

Origin of hole density pinning in group-V doped CdTe

Baoying Dou, Xuefen Cai, and Su-Huai Wei

Phys. Rev. B 109, 205205 (2024) - Published 20 May, 2024

Radiative transitions in undoped and Mn-doped CdGeP2 crystals

Gennady Medvedkin

Phys. Rev. B 109, 205206 (2024) - Published 28 May, 2024

Insights into the facet- and direction-dependent photoelectric properties of anatase and rutile TiO2

Jiali Jiang, Xiangchao Ma, Haojiang Fan, Xin Wu, and Delian Liu

Phys. Rev. B 109, 205207 (2024) - Published 28 May, 2024

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

Magnetochiral anisotropy induced nonlinear planar Hall effect in topological insulator surface states

D. C. Marinescu and S. Tewari

Phys. Rev. B 109, 205301 (2024) - Published 2 May, 2024

Soliton formation in an exciton-polariton condensate at a bound state in the continuum

I. Septembre, I. Foudjo, V. Develay, T. Guillet, S. Bouchoule, J. Zúñiga-Pérez, D. D. Solnyshkov, and G. Malpuech

Phys. Rev. B 109, 205302 (2024) - Published 6 May, 2024

Origin of giant magnetoresistance in layered nodal-line semimetal TaNiTe5 nanoflakes

Ding-Bang Zhou, Kuang-Hong Gao, Meng-Fan Zhao, Zhi-Yan Jia, Xiao-Xia Hu, Qian-Jin Guo, Hai-Yan Du, Xiao-Ping Chen, and Zhi-Qing Li

Phys. Rev. B 109, 205303 (2024) - Published 21 May, 2024

Nonadiabatic polariton condensation in annular optical traps

I. Chestnov, E. Cherotchenko, and A. Nalitov

Phys. Rev. B 109, 205304 (2024) - Published 28 May, 2024

Surface physics, nanoscale physics, low-dimensional systems

Theory of solid-state harmonic generation governed by crystal symmetry

Chen Qian, Shicheng Jiang, Tong Wu, Hongming Weng, Chao Yu, and Ruifeng Lu

Phys. Rev. B 109, 205401 (2024) - Published 2 May, 2024

Valley focusing effect in a rippled graphene superlattice

M. Pudlak and R. G. Nazmitdinov

Phys. Rev. B 109, 205402 (2024) - Published 2 May, 2024

Tailoring intrinsic chirality in a two-dimensional planar waveguide grating via quasibound states in the continuum

Dandan Zhang, Tingting Liu, Linlin Lei, Weimin Deng, Tongbiao Wang, Qinghua Liao, Wenxing Liu, Shuyuan Xiao, and Tianbao Yu

Phys. Rev. B 109, 205403 (2024) - Published 2 May, 2024

High-mobility carriers and superconductivity at the SrNbO3SrTiO3 interface

Haoran Wei, Shengru Chen, Yuting Zou, Yuxin Wang, Meng Yang, Qinghua Zhang, Ke Zou, Lin Gu, Kun Jiang, Er-Jia Guo, and Zhi Gang Cheng

Phys. Rev. B 109, 205404 (2024) - Published 2 May, 2024

Mid-infrared strong coupling between quasibound states in the continuum and epsilon-near-zero modes in a thin polar dielectric film

Ling Yue, Peng Xie, Shiyu Shen, Qi Ding, Hong Zhang, and Wei Wang

Phys. Rev. B 109, 205405 (2024) - Published 2 May, 2024

Controllable odd-frequency Cooper pairs in multisuperconductor Josephson junctions

Jorge Cayao, Pablo Burset, and Yukio Tanaka

Phys. Rev. B 109, 205406 (2024) - Published 6 May, 2024

Formal Green's function theory in non-Hermitian lattice systems

Changrui Chen and Wenan Guo

Phys. Rev. B 109, 205407 (2024) - Published 6 May, 2024

Asymmetrical regulation of thermal transport in BAs/MoSSe van der Waals heterostructures with applied electric field

Donghai Wei, E Zhou, Jinyuan Xu, Ailing Chen, Hanpeng Xie, Fuqing Duan, Huimin Wang, Zhenzhen Qin, and Guangzhao Qin

Phys. Rev. B 109, 205408 (2024) - Published 6 May, 2024

Giant electrode effect on tunneling magnetoresistance and electroresistance in van der Waals intrinsic multiferroic tunnel junctions using VS2

Zhi Yan, Ruixia Yang, Cheng Fang, Wentian Lu, and Xiaohong Xu

Phys. Rev. B 109, 205409 (2024) - Published 6 May, 2024

Phononic Doppler effect in sliding friction

Yi Tao, Yun Dong, Yajing Kan, Zhiyong Wei, Yan Zhang, Chenhan Liu, and Yunfei Chen

Phys. Rev. B 109, 205410 (2024) - Published 7 May, 2024

Nature of even and odd magic angles in helical twisted trilayer graphene

Daniele Guerci, Yuncheng Mao, and Christophe Mora

Phys. Rev. B 109, 205411 (2024) - Published 7 May, 2024

Single-electron states of phosphorus-atom arrays in silicon

Maicol A. Ochoa, Keyi Liu, Michał Zieliński, and Garnett Bryant

Phys. Rev. B 109, 205412 (2024) - Published 8 May, 2024

Valley filtering in 8-Pmmn borophene based on an electrostatic waveguide constriction

Emile Vanderstraeten and Dries Vande Ginste

Phys. Rev. B 109, 205413 (2024) - Published 9 May, 2024

Microscopic many-body theory of two-dimensional coherent spectroscopy of exciton polarons in one-dimensional materials

Jia Wang, Hui Hu, and Xia-Ji Liu

Phys. Rev. B 109, 205414 (2024) - Published 13 May, 2024

Weyl-point teleportation

György Frank, Dániel Varjas, Gergő Pintér, and András Pályi

Phys. Rev. B 109, 205415 (2024) - Published 13 May, 2024

Influence of the electron density on the giant negative magnetoresistance in two-dimensional electron gases

L. Bockhorn, D. Schuh, C. Reichl, W. Wegscheider, and R. J. Haug

Phys. Rev. B 109, 205416 (2024) - Published 13 May, 2024

Ultrahigh-mobility two-dimensional electron gases show an astonishing robust negative magnetoresistance at zero magnetic field. In situ variation of the electron density enables a deep insight into the nature of this negative magnetoresistance. Here, the authors investigate the temperature-dependent giant negative magnetoresistance (GNMR) as a function of the electron density for several temperatures and currents. They find that the GNMR behavior depends decisively on the electron density. This observation is attributed to a changed disorder potential with electron density.

General principle behind magnetization-induced second-order topological corner states in the Kane-Mele model

Cheng-Ming Miao, Lizhou Liu, Yu-Hao Wan, Qing-Feng Sun, and Ying-Tao Zhang

Phys. Rev. B 109, 205417 (2024) - Published 13 May, 2024

Revealing exciton transport in atomically thin semiconductors

Fengjiang Liu, Kai Chen, Wei Yan, Weiwei Tang, Hao Zhang, Richard J. Blaikie, Yu-Hui Chen, Boyang Ding, and Min Qiu

Phys. Rev. B 109, 205418 (2024) - Published 14 May, 2024

Intrinsic and extrinsic plasmons in the hard x-ray photoelectron spectra of nearly free electron metals

Mohammad Balal, Shuvam Sarkar, Pramod Bhakuni, Andrei Gloskovskii, Aparna Chakrabarti, and Sudipta Roy Barman

Phys. Rev. B 109, 205419 (2024) - Published 14 May, 2024

Magnetic flux induced topological superconductivity in magnetic atomic rings

Jinpeng Xiao, Qianglin Hu, and Xiaobing Luo

Phys. Rev. B 109, 205420 (2024) - Published 16 May, 2024

Topological edge/corner states and polaritons in dimerized/trimerized superconducting qubits in a cavity

Motohiko Ezawa

Phys. Rev. B 109, 205421 (2024) - Published 17 May, 2024

Controllable fusion of electromagnetic bosons in two-dimensional semiconductors

S. V. Andreev

Phys. Rev. B 109, 205423 (2024) - Published 20 May, 2024

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