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HIGHLIGHTED ARTICLES

Sextets in four-terminal Josephson junctions

Miriam Rike Ebert, David Christian Ohnmacht, Wolfgang Belzig, and Juan Carlos Cuevas

Phys. Rev. B 112, 195430 (2025) - Published 19 November, 2025

The authors show here how correlated processes involving the simultaneous tunneling of three Cooper pairs, known as sextets, can be revealed in the current-phase relation of four-terminal Josephson junctions. They also show how they are connected to the hybridization of Andreev bound states in these devices, and they argue that sextets were already indirectly observed in recent experiments in hybrid superconductor-semiconductor heterostructures.

Three-dimensional spinless Euler insulators with rotational symmetry

Manabu Sato, Shingo Kobayashi, Motoaki Hirayama, and Akira Furusaki

Phys. Rev. B 112, 195108 (2025) - Published 10 November, 2025

The Euler class is a ℤ-valued topological invariant characterizing two real bands protected by C2z𝒯 symmetry. The authors investigate here the relationship between the Euler class and rotation symmetry in spinless insulators with additional C4z or C6z symmetry. They derive general formulas relating the Euler class to rotation eigenvalues and two types of representation-protected invariants. They further construct tight-binding models and present numerical calculations of the Wilson loop spectra and topological surface states to support their analysis.

Generalized Wigner crystal states on square lattices

Zhan-Qin Tong, Da Wang, Bin Cheng, and Feng Miao

Phys. Rev. B 112, 195113 (2025) - Published 12 November, 2025

The authors present here a comprehensive study of generalized Wigner crystals on a square lattice with long-range density-density interactions. Combining classical Monte Carlo and quantum mean-field theory, they systematically determine the charge-ordered ground states for a wide range of fillings. The phase diagram is explained by a hierarchical construction involving different fundamental states and a dual lattice subtraction rule, with most crystals found to be stable against quantum melting.

Enantiomer-dependent study of photogalvanic effects in the multifold fermion PdGa

Wesley E. Deeg, Sujan Subedi, Manita Rai, Alexandre Crosbie, Michael Zdilla, Chandra Shekhar, Claudia Felser, and Darius H. Torchinsky

Phys. Rev. B 112, 195114 (2025) - Published 13 November, 2025

Weyl topological materials with chiral crystal structures provide a valuable platform for investigating the relationship between structural chirality and nonlinear optical response. Using terahertz emission photogalvanic effect spectroscopy, the authors demonstrate here that both bulk and surface states of the multifold fermion material PdGa yield transients whose sign depends on material handedness. Surface-specific measurements further reveal that the nature of the helicoidally dispersing state is reflected in the complementary dependence of the photocurrent direction as a function of photon energy.

Apparent inconsistency between Streda formula and Hall conductivity in reentrant integer quantum anomalous Hall effect in twisted MoTe2

Yi Huang, Seth Musser, Jihang Zhu, Yang-Zhi Chou, and Sankar Das Sarma

Phys. Rev. B 112, 195136 (2025) - Published 26 November, 2025

In a system with a gap to charge excitations, there are two ways to measure the Hall conductivity: transport and via the Streda formula. Both measurements should agree, although in a recent experiment in twisted MoTe2 they do not. To resolve this discrepancy, the authors propose here a reentrant bubble/crystal phase. They substantiate this with an analysis of the experimental data. One reentrant phase may be masked by a phase transition, providing insight into the nature of a nearby superconducting phase.

Tunable roton-like exciton states via magnetic fields in two-dimensional layered systems

Yingda Chen, Wen-Kai Lou, and Kai Chang

Phys. Rev. B 112, 195304 (2025) - Published 17 November, 2025

Excitons are crucial for the optical and electronic properties of transition metal dichalcogenide heterostructures, characterized by large binding energies and excitonic Bose-Einstein condensates. Here, the authors show that magnetic fields can selectively control intralayer and interlayer excitons. Intralayer excitons show weak quadratic diamagnetic shifts and strong screening dependence, whereas interlayer states with finite spacing experience strengthened magnetic confinement, producing linear-in-B shifts, pronounced mass renormalization, and rotonlike minima for B ≲30 T. Magnetic fields thus act as a practical knob for exciton-specific tunable optoelectronic functionality.

Two-dimensional Shubnikov–de Haas oscillations in PtSe2: A fermiological charge carrier investigation

Julian Max Salchegger, Rajdeep Adhikari, Bogdan Faina, and Alberta Bonanni

Phys. Rev. B 112, 195425 (2025) - Published 14 November, 2025

PtSe2 exhibits substantial spin-orbit coupling (SOC) and is expected to host large orbital currents, making it an appealing candidate for low-dissipation computing. However, its charge carrier dynamics system remains largely unexplored. The authors investigate here quantum oscillations, revealing essential charge carrier characteristics. Further, Pt vacancies are found to break the time-reversal symmetry, reducing the SOC. The results provide quantitative information about the dynamics of charge carriers in PtSe2 and approach the origin of the nontrivial Berry phase detected in this system.

Optimizing energy conversion with nonthermal resources in steady-state quantum devices

Elsa Danielsson, Henning Kirchberg, and Janine Splettstoesser

Phys. Rev. B 112, 195434 (2025) - Published 25 November, 2025

The authors present here a versatile theoretical optimization tool for energy conversion and cooling in quantum devices that leverage nonthermal resources —ensembles of particles that do not have well-defined temperatures. By applying this method to small-scale systems, they demonstrate significant enhancements in cooling power, efficiency, and precision. The findings highlight a key insight: tailoring the device design to specific electron distributions of nonthermal reservoirs is essential for achieving optimal performance in quantum thermoelectric energy conversion.

ARTICLES

Electronic structure and strongly correlated systems

Static treatment of dynamic interactions in the single-orbital Anderson impurity model

Anton Pauli, Akshat Mishra, Malte Rösner, and Erik G. C. P. van Loon

Phys. Rev. B 112, 195101 (2025) - Published 3 November, 2025

Modulation of energy and angular momentum radiation of two-dimensional altermagnets

Yong-Mei Zhang and Zhi Ping Niu

Phys. Rev. B 112, 195102 (2025) - Published 3 November, 2025

Machine learning semilocal exchange-correlation functionals for Kohn-Sham density functional theory of the Hubbard model

Eoghan Cronin, Rajarshi Tiwari, and Stefano Sanvito

Phys. Rev. B 112, 195103 (2025) - Published 3 November, 2025

de Haas–van Alphen study of the Dirac nodal-line semimetal candidate TaPtTe5

Maximilian Daschner and F. Malte Grosche

Phys. Rev. B 112, 195104 (2025) - Published 6 November, 2025

Electronic structure complexity and extremely large magnetoresistance in antiferromagnetic semimetal SmAgSb2

Juntao Yao, Sarah Paone, Niraj Aryal, Asish K. Kundu, Elio Vescovo, Weiguo Yin, and Qiang Li

Phys. Rev. B 112, 195105 (2025) - Published 7 November, 2025

Kitaev model in regular hyperbolic tilings

Julien Vidal and Rémy Mosseri

Phys. Rev. B 112, 195106 (2025) - Published 7 November, 2025

CeCo2P2: An antiferromagnetic topological heavy-fermion system with a PT-protected Kondo effect and nodal-line excitations

Haoyu Hu, Yi Jiang, Defa Liu, Yulin Chen, Alexei M. Tsvelik, Yuanfeng Xu, Kristjan Haule, and B. Andrei Bernevig

Phys. Rev. B 112, 195107 (2025) - Published 10 November, 2025

Three-dimensional spinless Euler insulators with rotational symmetry

Manabu Sato, Shingo Kobayashi, Motoaki Hirayama, and Akira Furusaki

Phys. Rev. B 112, 195108 (2025) - Published 10 November, 2025

The Euler class is a ℤ-valued topological invariant characterizing two real bands protected by C2z𝒯 symmetry. The authors investigate here the relationship between the Euler class and rotation symmetry in spinless insulators with additional C4z or C6z symmetry. They derive general formulas relating the Euler class to rotation eigenvalues and two types of representation-protected invariants. They further construct tight-binding models and present numerical calculations of the Wilson loop spectra and topological surface states to support their analysis.

Quantum spin liquids in pyrochlore magnets with non-Kramers local moments

Tony An, Félix Desrochers, and Yong Baek Kim

Phys. Rev. B 112, 195109 (2025) - Published 10 November, 2025

Riemann-Hilbert approach to Slavnov overlaps in the Lieb-Liniger model

Eldad Bettelheim

Phys. Rev. B 112, 195110 (2025) - Published 12 November, 2025

Clifford augmented density matrix renormalization group for ab initio quantum chemistry

Lizhong Fu, Honghui Shang, Jinlong Yang, and Chu Guo

Phys. Rev. B 112, 195111 (2025) - Published 12 November, 2025

Influence of spin-orbit interaction and self-consistency on quasiparticle electronic structure and exciton optical spectra beyond Tamm-Dancoff: The case of BaF2 and SrF2

Jürgen Furthmüller, Friedhelm Bechstedt, Silvana Botti, and Giancarlo Cappellini

Phys. Rev. B 112, 195112 (2025) - Published 13 November, 2025

Generalized Wigner crystal states on square lattices

Zhan-Qin Tong, Da Wang, Bin Cheng, and Feng Miao

Phys. Rev. B 112, 195113 (2025) - Published 12 November, 2025

The authors present here a comprehensive study of generalized Wigner crystals on a square lattice with long-range density-density interactions. Combining classical Monte Carlo and quantum mean-field theory, they systematically determine the charge-ordered ground states for a wide range of fillings. The phase diagram is explained by a hierarchical construction involving different fundamental states and a dual lattice subtraction rule, with most crystals found to be stable against quantum melting.

Enantiomer-dependent study of photogalvanic effects in the multifold fermion PdGa

Wesley E. Deeg, Sujan Subedi, Manita Rai, Alexandre Crosbie, Michael Zdilla, Chandra Shekhar, Claudia Felser, and Darius H. Torchinsky

Phys. Rev. B 112, 195114 (2025) - Published 13 November, 2025

Weyl topological materials with chiral crystal structures provide a valuable platform for investigating the relationship between structural chirality and nonlinear optical response. Using terahertz emission photogalvanic effect spectroscopy, the authors demonstrate here that both bulk and surface states of the multifold fermion material PdGa yield transients whose sign depends on material handedness. Surface-specific measurements further reveal that the nature of the helicoidally dispersing state is reflected in the complementary dependence of the photocurrent direction as a function of photon energy.

Reconfigurable hyperbolic photonics in copper oxides: Tuning hyperbolic dispersion through oxygen stoichiometry

Han Gao, Shundong Liu, Min Tai, Juan Wang, Bo Yang, Chao Ding, Luyan Li, and Mingwen Zhao

Phys. Rev. B 112, 195115 (2025) - Published 13 November, 2025

Tunable Hilbert space fragmentation and extended critical regime

Mateusz Lisiecki, Janez Bonča, Marcin Mierzejewski, Jacek Herbrych, and Patrycja Łydżba

Phys. Rev. B 112, 195116 (2025) - Published 13 November, 2025

Z2 topological invariants from Green function's diagonal zeros

Florian Simon and Corentin Morice

Phys. Rev. B 112, 195117 (2025) - Published 13 November, 2025

Nature of momentum- and orbital-dependent magnetic fluctuations in Sr2RuO4

Maria Chatzieleftheriou, Alexander N. Rudenko, Yvan Sidis, Silke Biermann, and Evgeny A. Stepanov

Phys. Rev. B 112, 195118 (2025) - Published 13 November, 2025

Anisotropy of linear magnetoresistance in the kagome metal ZrV6Sn6

Yifan Deng, Ming Cheng, Lanxin Liu, Nan Zhou, Yu Zhao, Ruihuan Lan, Yongqiang Pan, Wenhai Song, Yuyan Han, Xiaoguang Zhu, Xuan Luo, and Yuping Sun

Phys. Rev. B 112, 195119 (2025) - Published 17 November, 2025

Quantum supercritical crossover with dynamical singularity

Junsen Wang, Enze Lv, Xinyang Li, Yuliang Jin, and Wei Li

Phys. Rev. B 112, 195120 (2025) - Published 17 November, 2025

Scaling of quantum geometry near non-Hermitian topological phase transitions

Y R Kartik, Jhih-Shih You, and H. H. Jen

Phys. Rev. B 112, 195121 (2025) - Published 17 November, 2025

Surfaces and interfaces of infinite-layer nickelates studied by dynamical mean-field theory

Leonard M. Verhoff, Liang Si, and Karsten Held

Phys. Rev. B 112, 195122 (2025) - Published 17 November, 2025

Band gap independent intrinsic nonlinear optical response for rational materials design

Xuanlin Pan, Bonan Zhu, Aoge Yao, Zheshuai Lin, and Lei Kang

Phys. Rev. B 112, 195123 (2025) - Published 19 November, 2025

Fractionalized prethermalization in the one-dimensional Hubbard model

Anton Romen, Johannes Knolle, and Michael Knap

Phys. Rev. B 112, 195124 (2025) - Published 20 November, 2025

Theory for the spectral splitting exponent of exceptional points

Shu-Xuan Wang and Zhongbo Yan

Phys. Rev. B 112, 195125 (2025) - Published 20 November, 2025

Type-III Weyl semi-half-metal in an ultralight monolayer Li2N

Qingqing Li, Li Chen, Run-Wu Zhang, and Botao Fu

Phys. Rev. B 112, 195126 (2025) - Published 20 November, 2025

Tunable competing electronic orders in double quantum spin Hall superlattices

Yi-Chun Hung, Chen-Hsuan Hsu, and Arun Bansil

Phys. Rev. B 112, 195127 (2025) - Published 20 November, 2025

Experimentally motivated order of length scales affect shot noise

Sourav Manna and Ankur Das

Phys. Rev. B 112, 195128 (2025) - Published 21 November, 2025

Analogs of deconfined quantum criticality for noninvertible symmetry breaking in one dimension

Yu-Hsueh Chen and Tarun Grover

Phys. Rev. B 112, 195129 (2025) - Published 24 November, 2025

Electronic topological transition in zinc under shock compression revealed by electrical resistivity measurements

Zhenning Wang, Yifeng Zhang, Feng Gao, Xilong Dou, Bo Gan, and Kaile Tang

Phys. Rev. B 112, 195130 (2025) - Published 24 November, 2025

Weak electronic correlations in the cobalt oxychalcogenide superconductor Na2CoSe2O

Zhenchao Wu, Yingying Cao, Hong-Gang Luo, and Yi-feng Yang

Phys. Rev. B 112, 195131 (2025) - Published 24 November, 2025

Observation of spin-conserving two-spinon continuum in the S=12 antiferromagnetic chain system Sr2CuO3 using Cu K-edge resonant inelastic x-ray scattering

Kenji Ishii, Kenji Tsutsui, Takayuki Kawamata, and Yoji Koike

Phys. Rev. B 112, 195132 (2025) - Published 24 November, 2025

Matrix product state classification of one-dimensional multipole symmetry-protected topological phases

Takuma Saito, Weiguang Cao, Bo Han, and Hiromi Ebisu

Phys. Rev. B 112, 195133 (2025) - Published 24 November, 2025

Dynamically stable topological edge states in an extended Su-Schrieffer-Heeger ladder with balanced perturbation

E. S. Ma, K. L. Zhang, and Z. Song

Phys. Rev. B 112, 195134 (2025) - Published 25 November, 2025

Quantized and nonquantized Hall response in topological Hatsugai-Kohmoto systems

Thibaut Desort, Mark O. Goerbig, and Corentin Morice

Phys. Rev. B 112, 195135 (2025) - Published 25 November, 2025

Apparent inconsistency between Streda formula and Hall conductivity in reentrant integer quantum anomalous Hall effect in twisted MoTe2

Yi Huang, Seth Musser, Jihang Zhu, Yang-Zhi Chou, and Sankar Das Sarma

Phys. Rev. B 112, 195136 (2025) - Published 26 November, 2025

In a system with a gap to charge excitations, there are two ways to measure the Hall conductivity: transport and via the Streda formula. Both measurements should agree, although in a recent experiment in twisted MoTe2 they do not. To resolve this discrepancy, the authors propose here a reentrant bubble/crystal phase. They substantiate this with an analysis of the experimental data. One reentrant phase may be masked by a phase transition, providing insight into the nature of a nearby superconducting phase.

Probing the Fermi surface with quantum oscillation measurements in the Dirac semimetal TaNiTe5

Maximilian Daschner, Bruno Gudac, Mario Novak, Cheng Liu, F. Malte Grosche, and Ivan Kokanović

Phys. Rev. B 112, 195137 (2025) - Published 26 November, 2025

Semiconductors I: bulk

Computational uncertainties in the prediction of lattice thermal conductivity of crystalline solids

Yagyank Srivastava, Amey G. Gokhale, and Ankit Jain

Phys. Rev. B 112, 195201 (2025) - Published 5 November, 2025

Tunable spin texture in ferroelectric Bi6O9

Li-Qi Huang, Ming Li, Hang Zhou, Zi-An Wang, Yue-Wen Fang, Yu-Ping Sun, Wen-Jian Lu, and Ding-Fu Shao

Phys. Rev. B 112, 195202 (2025) - Published 10 November, 2025

p-type ultrawide band gap spinel ZnGa2O4: A critical theoretical reevaluation

Junwei Guo and Zewen Xiao

Phys. Rev. B 112, 195203 (2025) - Published 10 November, 2025

Pressure-induced anisotropic reversal of thermal conductivity and its implication beyond conventional higher-order phonon scattering in non–van der Waals layered Bi2O2Se

Zheng Chang, Zhongyin Zhang, Yongchao Zhu, Kunpeng Yuan, Muhammad Mushtaq, Jing Ma, Yi Xia, Tianqi Deng, Mohammed Al-Fahdi, Xiaoliang Zhang, Yufei Gao, Hongtao Liu, Jinshu Lu, Jie Zhu, Guanghua Cheng, Dawei Tang, Tiejun Zhu, and Hailin Peng

Phys. Rev. B 112, 195204 (2025) - Published 17 November, 2025

Suppression of phonon transport due to ionic-to-covalent bonding transition in N-doped βGa2O3

Jing Wu, Ming Li, Luyao Chen, Haobo Yang, Xin Qian, Ronggui Yang, and Te-Huan Liu

Phys. Rev. B 112, 195205 (2025) - Published 18 November, 2025

Symmetry-adapted models for multifold fermions with spin-orbit coupling

Koki Satow and Ai Yamakage

Phys. Rev. B 112, 195206 (2025) - Published 19 November, 2025

Orbital magnetic susceptibility of type I, II, and III massless Dirac fermions in two dimensions

Tomonari Mizoguchi, Hiroyasu Matsuura, and Masao Ogata

Phys. Rev. B 112, 195207 (2025) - Published 20 November, 2025

Unveiling the impact of trivalent metal cation transmutation on Cs2AgM(III)Cl6 double perovskites using many-body perturbation theory

Surajit Adhikari and Priya Johari

Phys. Rev. B 112, 195208 (2025) - Published 24 November, 2025

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

Impact of exciton Zeeman splitting energy variation on the magnetoluminescence of an inhomogeneously broadened ensemble of epitaxial CdSe/(Zn,Mn)Se quantum dots

I. I. Kozlov, N. V. Kozyrev, B. R. Namozov, Yu. G. Kusrayev, I. V. Sedova, and S. V. Sorokin

Phys. Rev. B 112, 195301 (2025) - Published 3 November, 2025

Ultrafast nonradiative bright-to-dark exciton relaxation facilitated by excitonic effects at As/SnS2 van der Waals heterostructure interfaces

Zuoyin Liu, Yanming Lin, Zhenyi Jiang, and Aijun Du

Phys. Rev. B 112, 195302 (2025) - Published 6 November, 2025

Surface properties of hexagonal Si and Ge: First-principles study of energetics, atomic relaxation, and electronic structure

Martin Keller, Abderrezak Belabbes, Jürgen Furthmüller, Friedhelm Bechstedt, and Silvana Botti

Phys. Rev. B 112, 195303 (2025) - Published 7 November, 2025

Tunable roton-like exciton states via magnetic fields in two-dimensional layered systems

Yingda Chen, Wen-Kai Lou, and Kai Chang

Phys. Rev. B 112, 195304 (2025) - Published 17 November, 2025

Excitons are crucial for the optical and electronic properties of transition metal dichalcogenide heterostructures, characterized by large binding energies and excitonic Bose-Einstein condensates. Here, the authors show that magnetic fields can selectively control intralayer and interlayer excitons. Intralayer excitons show weak quadratic diamagnetic shifts and strong screening dependence, whereas interlayer states with finite spacing experience strengthened magnetic confinement, producing linear-in-B shifts, pronounced mass renormalization, and rotonlike minima for B ≲30 T. Magnetic fields thus act as a practical knob for exciton-specific tunable optoelectronic functionality.

Parallel spin transport and holonomy in non-Euclidean curved circuits on a spherical two-dimensional electron gas

E. J. Rodríguez, A. A. Reynoso, J. P. Baltanás, D. Bercioux, and D. Frustaglia

Phys. Rev. B 112, 195305 (2025) - Published 17 November, 2025

Plasmon-enhanced quadrupole transitions of Rydberg excitons in Cu2O

David Ziemkiewicz and Sylwia Zielińska-Raczyńska

Phys. Rev. B 112, 195306 (2025) - Published 19 November, 2025

Surface physics, nanoscale physics, low-dimensional systems

Across-layer sliding ferroelectricity and robust valley polarization in inversion-symmetry lattices

Haomiao Cheng, Lixin Zhang, Xiaobo Yuan, Guichao Hu, Junfeng Ren, and Xiuwen Zhao

Phys. Rev. B 112, 195401 (2025) - Published 3 November, 2025

Altermagnetism-induced iron-based third-order topological superconductivity

Hai-Yuan Sun, Lizhou Liu, Ying-Tao Zhang, and Zhenhua Qiao

Phys. Rev. B 112, 195402 (2025) - Published 3 November, 2025

Fully programmable plasmonic PT-symmetric dimer with epsilon near zero and phase-change materials for integrated photonics

Shahab Ramezanpour and Amr Helmy

Phys. Rev. B 112, 195403 (2025) - Published 3 November, 2025

Magnetic flux induced higher-order topological superconductivity

Jinpeng Xiao, Qianglin Hu, Zuodong Yu, Weipeng Chen, and Xiaobing Luo

Phys. Rev. B 112, 195404 (2025) - Published 3 November, 2025

Anisotropic superconductivity in the two-dimensional metal-organic kagome framework Cu3(CO)6

Jing-Jing Zheng, Jingyu Li, Rong-Rong Ma, Fengkai Guo, Jiang-Jiang Ma, and Peng-Fei Liu

Phys. Rev. B 112, 195405 (2025) - Published 3 November, 2025

Inversion-asymmetric kagome monolayers: A platform for Rashba effect and two-dimensional piezoelectricity

Ze-Xuan Liu, Yang Liu, Wei Wang, Ji-Zheng Wu, Xiu-Xiu Zhang, and Chen Si

Phys. Rev. B 112, 195406 (2025) - Published 4 November, 2025

Antireflective behavior of a facet in a multilayer waveguide-based laser with a surface-trapped mode

V. A. Shchukin, E. V. Shliaga, V. P. Kalosha, and N. N. Ledentsov

Phys. Rev. B 112, 195407 (2025) - Published 4 November, 2025

Theory of topological diffusion in a honeycomb lattice

Jotaro J. Nakane, Keita Funayama, and Ai Yamakage

Phys. Rev. B 112, 195408 (2025) - Published 4 November, 2025

Anisotropic spin-blockade leakage current in a Ge hole double quantum dot

Zhanning Wang, S. D. Liles, Joe Hillier, A. R. Hamilton, and Dimitrie Culcer

Phys. Rev. B 112, 195409 (2025) - Published 4 November, 2025

Mechanically and electrically switchable triferroic altermagnet in a pentagonal FeO2 monolayer

Deping Guo, Jiaqi Dai, Renhong Wang, Cong Wang, and Wei Ji

Phys. Rev. B 112, 195410 (2025) - Published 4 November, 2025

Light-induced transitions of valley Chern numbers and flat bands in a nontwisted moiré graphene–hexagonal boron nitride superlattice

Saud Alabdulal, Miftah Hadi Syahputra Anfa, Hocine Bahlouli, and Michael Vogl

Phys. Rev. B 112, 195411 (2025) - Published 5 November, 2025

Mode-dependent emission thresholds and frequencies in metal nanoparticles within gain-enhanced media

Karen Caicedo, Nicole Recalde, Milena Mora, Alonso Moreta, Maria Antonia Iatì, Onofrio M. Maragò, Melissa Infusino, and Alessandro Veltri

Phys. Rev. B 112, 195412 (2025) - Published 5 November, 2025

Spin-orbit coupling effect on the Seebeck coefficient in Dirac electron systems in α(BETS)2I3

Yoshikazu Suzumura, Takao Tsumuraya, and Masao Ogata

Phys. Rev. B 112, 195414 (2025) - Published 10 November, 2025

Quantum magnetotransport in monolayer Pt2HgSe3

Muzamil Shah, Imtiaz Khan, Kashif Sabeeh, Muhammad Sabieh Anwar, and Reza Asgari

Phys. Rev. B 112, 195415 (2025) - Published 10 November, 2025

Magnetic second-order topological insulator Cr2XY (X/Y=P,As,Sb) monolayers and corner-state substitution

Xin Yang, Yanqing Shen, Yu Zhang, Xianghui Meng, Xinyu Wang, Xiangqian Jiang, Qing Ai, Yong Shuai, and Zhongxiang Zhou

Phys. Rev. B 112, 195417 (2025) - Published 12 November, 2025

Influence of nanoscale roughness on Derjaguin-Landau-Verwey-Overbeek forces between alkanethiol self-assembled monolayer surfaces

R. Bakhshandehseraji, G. Ch. Ponce de Leon, G. Palasantzas, and C. Lungani Mthembu

Phys. Rev. B 112, 195418 (2025) - Published 12 November, 2025

Electronic transport and anti-super-Klein tunneling in few-layer black phosphorus

Jorge Alfonso Lizarraga-Brito, Armando Arciniega-Gutiérrez, Yonatan Betancur-Ocampo, and Thomas Stegmann

Phys. Rev. B 112, 195419 (2025) - Published 12 November, 2025

Spin-split magnon bands induce pure spin current in insulating altermagnets

Sankar Sarkar and Amit Agarwal

Phys. Rev. B 112, 195420 (2025) - Published 12 November, 2025

Band engineering aided by topological edge state proximity effects: Inducing antichirality in graphene

Ricardo Y. Díaz-Bonifaz and Carlos Ramírez

Phys. Rev. B 112, 195421 (2025) - Published 13 November, 2025

Signatures of Majorana bound states in scanning-gate microscopy of hybrid nanowires

S. Maji and M. P. Nowak

Phys. Rev. B 112, 195422 (2025) - Published 13 November, 2025

Thermal conductivity enhancement by phonon inelastic scattering in Si1xGex alloyed nanowires

Wei Zhang, Shiyun Xiong, Yangyu Guo, Hong-Liang Yi, Masahiro Nomura, and Sebastian Volz

Phys. Rev. B 112, 195423 (2025) - Published 13 November, 2025

Tuning excitons and superfluidity of dipolar excitons in double layers of kagome lattice by applying circularly polarized irradiation

Sita Kandel, Godfrey Gumbs, Teresa Lee, and Oleg L. Berman

Phys. Rev. B 112, 195424 (2025) - Published 14 November, 2025

Two-dimensional Shubnikov–de Haas oscillations in PtSe2: A fermiological charge carrier investigation

Julian Max Salchegger, Rajdeep Adhikari, Bogdan Faina, and Alberta Bonanni

Phys. Rev. B 112, 195425 (2025) - Published 14 November, 2025

PtSe2 exhibits substantial spin-orbit coupling (SOC) and is expected to host large orbital currents, making it an appealing candidate for low-dissipation computing. However, its charge carrier dynamics system remains largely unexplored. The authors investigate here quantum oscillations, revealing essential charge carrier characteristics. Further, Pt vacancies are found to break the time-reversal symmetry, reducing the SOC. The results provide quantitative information about the dynamics of charge carriers in PtSe2 and approach the origin of the nontrivial Berry phase detected in this system.

Electronic and optical properties of transition metal impurities in GaN and AlN

M. R. Lambert, Mark E. Turiansky, and Chris G. Van de Walle

Phys. Rev. B 112, 195426 (2025) - Published 18 November, 2025

Interlayer-sliding controlled magneto-optical effect and ferrovalley in a fully compensated ferrimagnetic bilayer

Meng Su, Dingwen Zhang, Haoshen Ye, G. P. Zhang, Mingqiang Gu, and Jianli Wang

Phys. Rev. B 112, 195427 (2025) - Published 18 November, 2025

Electric field-induced Kerr rotation on metallic surfaces

Farzad Mahfouzi, Mark D. Stiles, and Paul M. Haney

Phys. Rev. B 112, 195428 (2025) - Published 18 November, 2025

Approximate half-integer quantization in anomalous planar transport in d-wave altermagnets

Srimayi Korrapati, Snehasish Nandy, and Sumanta Tewari

Phys. Rev. B 112, 195429 (2025) - Published 19 November, 2025

Sextets in four-terminal Josephson junctions

Miriam Rike Ebert, David Christian Ohnmacht, Wolfgang Belzig, and Juan Carlos Cuevas

Phys. Rev. B 112, 195430 (2025) - Published 19 November, 2025

The authors show here how correlated processes involving the simultaneous tunneling of three Cooper pairs, known as sextets, can be revealed in the current-phase relation of four-terminal Josephson junctions. They also show how they are connected to the hybridization of Andreev bound states in these devices, and they argue that sextets were already indirectly observed in recent experiments in hybrid superconductor-semiconductor heterostructures.

Effects of short- and long-range disorder in the photoluminescence of GaAs1xSbx/GaAs quantum wells

G. M. Jacobsen, B. Liang, S. Kryvyi, H. V. Stanchu, M. Benamara, V. A. Oliveira, M. E. Ware, G. J. Salamo, Yu. I. Mazur, G. E. Marques, and M. D. Teodoro

Phys. Rev. B 112, 195431 (2025) - Published 20 November, 2025

Plasmon polariton assisted second-harmonic generation in graphene

João M. Alendouro Pinho, Simão S. Cardoso, Yuliy V. Bludov, João M. Viana Parente Lopes, Vladimir V. Konotop, Joel D. Cox, and Nuno M. R. Peres

Phys. Rev. B 112, 195432 (2025) - Published 21 November, 2025

Fragmented exceptional points and their bulk and edge realizations in lattice models

Subhajyoti Bid and Henning Schomerus

Phys. Rev. B 112, 195433 (2025) - Published 21 November, 2025

Optimizing energy conversion with nonthermal resources in steady-state quantum devices

Elsa Danielsson, Henning Kirchberg, and Janine Splettstoesser

Phys. Rev. B 112, 195434 (2025) - Published 25 November, 2025

The authors present here a versatile theoretical optimization tool for energy conversion and cooling in quantum devices that leverage nonthermal resources —ensembles of particles that do not have well-defined temperatures. By applying this method to small-scale systems, they demonstrate significant enhancements in cooling power, efficiency, and precision. The findings highlight a key insight: tailoring the device design to specific electron distributions of nonthermal reservoirs is essential for achieving optimal performance in quantum thermoelectric energy conversion.

Skyrmionic qubits stabilized by Dzyaloshinskii-Moriya interaction as platforms for qubits and quantum gates

Doru Sticlet, Romulus Tetean, and Coriolan Tiusan

Phys. Rev. B 112, 195435 (2025) - Published 26 November, 2025

ERRATA

Erratum: Nonlocal Andreev transport through a quantum dot in a magnetic field: Interplay between Kondo, Zeeman, and Cooper-pair correlations [Phys. Rev. B 109, 035404 (2024)]

Masashi Hashimoto, Yasuhiro Yamada, Yoichi Tanaka, Yoshimichi Teratani, Takuro Kemi, Norio Kawakami, and Akira Oguri

Phys. Rev. B 112, 199901 (2025) - Published 6 November, 2025

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