Browse Issues:

HIGHLIGHTED ARTICLES

Temporal evolution of indirectly coupled resonators in open systems

Chenyang Lu, Bentley Turner, Jiguang Yao, Lihua Zhong, Mun Kim, Ying Yang, and Can-Ming Hu

Phys. Rev. B 112, 134309 (2025) - Published 16 October, 2025

Long-range signal propagation is essential for modern communication and quantum technologies, yet it induces travelling wave mediated indirect coupling between distant resonators. This effect is often obscured in steady-state transmission due to interference. Here, the authors demonstrate this information concealment and reveal the hidden coupling in a meter-separated cavity magnon–polariton system. The coupling is observed in time-domain transient measurements, independently confirmed by frequency-domain steady-state absorption. The underlying mechanism is further validated using coupled LRC circuits, providing a unified understanding across platforms.

Universality in the anticoncentration of chaotic quantum circuits

Arman Sauliere, Beatrice Magni, Guglielmo Lami, Xhek Turkeshi, and Jacopo De Nardis

Phys. Rev. B 112, 134312 (2025) - Published 22 October, 2025

The authors uncover here a universal functional form governing anticoncentration, which quantifies how broadly the output probabilities of a random quantum circuit are distributed, across architectures, depths, and even finite system sizes. Using analytical models and extensive simulations, they show that these distributions are characterized by just two parameters. Their results highlight finite-size and finite-depth effects and provide a practical framework for benchmarking quantum devices, enabling validation of much larger systems than previously possible.

Spin Seebeck effect in two-sublattice ferrimagnets in the vicinity of TC

Hayato Fukushima, Masanori Ichioka, and Hiroto Adachi

Phys. Rev. B 112, 134415 (2025) - Published 8 October, 2025

The spin Seebeck effect is a thermal way of spin current injection from a magnet into the adjacent heavy metal. A decade-old mystery in the spin Seebeck effect is a convex downward temperature dependence near the magnetic transition found in a prototypical bilayer system of a ferrimagnet (Y3Fe5O12) and platinum. Here, the authors resolve this mystery by assuming unconventional interfacial exchange coupling. The finding highlights the importance of interface engineering in ferrimagnetic spintronics.

Design, synthesis, and physical properties of the intergrowth compound Eu2CuZn2As3

Xiyu Chen, Ziwen Wang, Wuzhang Yang, Jia-Yi Lu, Zhiyu Zhou, Shanshan Wang, Zhi Ren, Guang-Han Cao, Shuai Dong, and Zhi-Cheng Wang

Phys. Rev. B 112, 134419 (2025) - Published 14 October, 2025

The authors report here on the synthesis and properties of the intergrowth compound Eu2CuZn2As3, designed by structurally hybridizing two known magnetic topological materials, EuCuAs and EuZn2As2. It exhibits a complex antiferromagnetic ground state with multiple transitions, a significant negative magnetoresistance, and a nonlinear anomalous Hall effect. The work demonstrates structural hybridization as an effective strategy for discovering new magnetic topological materials with tailored properties.

Three-dimensional topological orbital Hall effect caused by magnetic hopfions

Börge Göbel and Samir Lounis

Phys. Rev. B 112, 134426 (2025) - Published 15 October, 2025

Hopfions are three-dimensional topological spin textures characterized by an integer topological invariant known as the Hopf index. The authors reveal here that magnetic hopfions give rise to a unique orbital Hall effect, producing transverse currents of orbital angular momentum in three dimensions. This response provides a clear electronic hallmark of hopfions, allowing them to be distinguished from related textures such as skyrmions. The three-dimensional transport behavior of hopfions originates from their noncollinear emergent field and underlying topology.

Spin-flop-like transition as quantum critical point in Cs2RuO4

S. D. Nabi, M. Zhu, K. Yu. Povarov, D. G. Mazzone, J. Lass, Y. Wu, Z. Yan, S. Gvasaliya, and A. Zheludev

Phys. Rev. B 112, 134436 (2025) - Published 21 October, 2025

Cs2RuO4 expands the celebrated family of frustrated magnets Cs2MX4 (M=Cu, Co; X=Br, Cl) into the realm of 4d transition metal ions. This study uncovers an unconventional spin-flop-like transition tied to a quantum critical point, hidden inside the antiferromagnetically ordered phase. Inelastic neutron scattering reveals the magnetic Hamiltonian, which shows that the origin of this peculiar transition lies in geometric frustration of single-ion anisotropy.

Impact of deviatoric stress on the stability and superconductivity of H3S

Han Liu, Chang Liu, Yanming Ma, and Changfeng Chen

Phys. Rev. B 112, 134518 (2025) - Published 16 October, 2025

Near room temperature superconductivity in superhydrides is an exemplary case of theory-driven discovery of novel physics. There are, however, crucial discrepancies, ranging from subtle to prominent, between theory and experiment. Taking H3S as a model system, the authors show here that deviatoric stress, prevalent in high-pressure experiments yet unrecognized in prevailing theories, have a major impact on key structural and superconducting properties, reconciling theoretical and experimental results. These findings highlight significant influence of deviatoric stress on material behaviors under extreme compression.

Superconductivity with repulsion: A variational approach

Laura Fanfarillo, Yifu Cao, Chandan Setty, Sergio Caprara, and P. J. Hirschfeld

Phys. Rev. B 112, 134519 (2025) - Published 17 October, 2025

In the presence of repulsive interactions, the BCS state appears unstable, showing up as a saddle point of the mean-field free energy. This apparent paradox has sparked recent proposals to restore stability by projecting out repulsive modes, effectively restricting the problem to the attractive sector. The authors show here that a Bogoliubov variational construction yields a bounded free energy and stabilizes the BCS state, without constraining the energy landscape. Simple models highlight the role of the full BCS kernel in correctly identifying collective modes, offering a robust framework for multichannel superconductors.

ARTICLES

Structure, structural phase transitions, mechanical properties, defects

Close-packed atomic bromine up to 230 GPa

E. Edmund, M. H. Dalsaniya, R. T. Howie, E. Greenberg, V. B. Prakapenka, M. Peña-Àlvarez, M. Hanfland, P. Dalladay-Simpson, D. Kurzydłowski, and A. Hermann

Phys. Rev. B 112, 134101 (2025) - Published 14 October, 2025

Structural evolution of ceria-supported Ru cluster catalysts under near-realistic conditions explored via a global structural search algorithm

Meiliang Ma, Yan Wang, Zhiyu Wang, and Zhong-Kang Han

Phys. Rev. B 112, 134102 (2025) - Published 17 October, 2025

Electronic temperature driven phase stability and structural evolution of iron at high pressure

S. Azadi and S. M. Vinko

Phys. Rev. B 112, 134103 (2025) - Published 23 October, 2025

Mapped bulk-boundary correspondence in nonlocal systems with strong long-range coupling

Kaiye Shi and Wei Zhang

Phys. Rev. B 112, 134104 (2025) - Published 28 October, 2025

Inhomogeneous, disordered, and partially ordered systems

Quantifying non-Hermiticity using single- and many-particle quantum properties

Soumik Bandyopadhyay, Philipp Hauke, and Sudipto Singha Roy

Phys. Rev. B 112, 134201 (2025) - Published 1 October, 2025

Disorder-induced effects on spontaneous emission from quasibound states in the continuum in regular and dimer gratings

Emmanuel Centeno, Victor Kalt, Rafik Smaali, and Antoine Moreau

Phys. Rev. B 112, 134202 (2025) - Published 7 October, 2025

Spectral properties of a disordered insulating lattice under nonlinear electric field

Kunal Mozumdar, Herbert F. Fotso, and Jong E. Han

Phys. Rev. B 112, 134203 (2025) - Published 10 October, 2025

Electron transport in a disordered insulating lattice under nonlinear electric field

Kunal Mozumdar, Herbert F. Fotso, and Jong E. Han

Phys. Rev. B 112, 134204 (2025) - Published 10 October, 2025

Many-body localization and particle multioccupancy in the disordered Bose-Hubbard model

Jie Chen, Chun Chen, and Xiaoqun Wang

Phys. Rev. B 112, 134205 (2025) - Published 14 October, 2025

Topological phases of many-body localized systems: Beyond eigenstate order

David M. Long and Dominic V. Else

Phys. Rev. B 112, 134206 (2025) - Published 14 October, 2025

Inner structure of the many-body localization transition and the fulfillment of the Harris criterion

Jie Chen, Chun Chen, and Xiaoqun Wang

Phys. Rev. B 112, 134208 (2025) - Published 29 October, 2025

Dynamics, dynamical systems, lattice effects

Generation of subterahertz coherent acoustic phonon pulses using a femtosecond pulsed light source in a Ni/GaN interface with strong electron-phonon coupling

Shazan A. Bhat, Swaroop Ganguly, and Dipankar Saha

Phys. Rev. B 112, 134301 (2025) - Published 2 October, 2025

Floquet Möbius topological insulators

Longwen Zhou, Fan Zhang, and Jiaxin Pan

Phys. Rev. B 112, 134302 (2025) - Published 7 October, 2025

Effect of four-phonon scattering and strong anharmonicity on the thermal conductivity of the antiperovskite derivatives Ba3BiX3(X=Br,I)

Xiaohan Liu, Yongheng Li, Yu Wu, Jingtong Zhang, Xingang Jiang, Qi Ren, Bonan Zhu, Jiawang Hong, and Gang Tang

Phys. Rev. B 112, 134303 (2025) - Published 6 October, 2025

Equilibration of noninteracting photons and quantum signatures of chaos

V. M. Bastidas, H. L. Nourse, A. Sakurai, A. Hayashi, S. Nishio, Kae Nemoto, and W. J. Munro

Phys. Rev. B 112, 134304 (2025) - Published 8 October, 2025

Probing Hilbert space fragmentation using controlled dephasing

Dominik Vuina, Robin Schäfer, David M. Long, and Anushya Chandran

Phys. Rev. B 112, 134305 (2025) - Published 9 October, 2025

Exceptional four-phonon scattering effects on low-temperature thermal conductivity in two-dimensional materials

H. F. Feng, B. Liu, Xin-Gao Gong, and Zhi-Xin Guo

Phys. Rev. B 112, 134306 (2025) - Published 14 October, 2025

Two-dimensional ferroelectric crystal with temperature-invariant ultralow thermal conductivity

Wenjie Zhou, Changming Ke, and Shi Liu

Phys. Rev. B 112, 134307 (2025) - Published 15 October, 2025

Nonequilibrium dynamics of a disordered binary alloy

Aly Abuelmaged, Eric Dohner, Shang-Jie Liou, and Herbert F. Fotso

Phys. Rev. B 112, 134308 (2025) - Published 16 October, 2025

Temporal evolution of indirectly coupled resonators in open systems

Chenyang Lu, Bentley Turner, Jiguang Yao, Lihua Zhong, Mun Kim, Ying Yang, and Can-Ming Hu

Phys. Rev. B 112, 134309 (2025) - Published 16 October, 2025

Long-range signal propagation is essential for modern communication and quantum technologies, yet it induces travelling wave mediated indirect coupling between distant resonators. This effect is often obscured in steady-state transmission due to interference. Here, the authors demonstrate this information concealment and reveal the hidden coupling in a meter-separated cavity magnon–polariton system. The coupling is observed in time-domain transient measurements, independently confirmed by frequency-domain steady-state absorption. The underlying mechanism is further validated using coupled LRC circuits, providing a unified understanding across platforms.

Time evolution of the quantum Ising model in two dimensions using tree tensor networks

Wladislaw Krinitsin, Niklas Tausendpfund, Markus Heyl, Matteo Rizzi, and Markus Schmitt

Phys. Rev. B 112, 134310 (2025) - Published 17 October, 2025

Chaos as a manifestation of time-translation symmetry breaking

Parvinder Solanki and Fabrizio Minganti

Phys. Rev. B 112, 134311 (2025) - Published 21 October, 2025

Universality in the anticoncentration of chaotic quantum circuits

Arman Sauliere, Beatrice Magni, Guglielmo Lami, Xhek Turkeshi, and Jacopo De Nardis

Phys. Rev. B 112, 134312 (2025) - Published 22 October, 2025

The authors uncover here a universal functional form governing anticoncentration, which quantifies how broadly the output probabilities of a random quantum circuit are distributed, across architectures, depths, and even finite system sizes. Using analytical models and extensive simulations, they show that these distributions are characterized by just two parameters. Their results highlight finite-size and finite-depth effects and provide a practical framework for benchmarking quantum devices, enabling validation of much larger systems than previously possible.

Discrete time crystals in one-dimensional classical Floquet systems with nearest-neighbor interactions

Zhuo-Yi Li and Yu-Ran Zhang

Phys. Rev. B 112, 134313 (2025) - Published 27 October, 2025

Transport in a system with a tower of quantum many-body scars

Gianluca Morettini, Luca Capizzi, Maurizio Fagotti, and Leonardo Mazza

Phys. Rev. B 112, 134314 (2025) - Published 28 October, 2025

Uhlmann and scalar Wilczek-Zee phases of degenerate quantum systems

Xin Wang, Xu-Yang Hou, Hao Guo, and Chih-Chun Chien

Phys. Rev. B 112, 134315 (2025) - Published 31 October, 2025

Magnetism

Large enhancement of the intrinsic spin Hall conductivity in W-N compounds

Quynh Anh T. Nguyen, Do Duc Cuong, Min Hyeok Lee, Minkyu Park, Young Keun Kim, and Sonny H. Rhim

Phys. Rev. B 112, 134401 (2025) - Published 1 October, 2025

Near complete laser-induced modulation of the ferromagnetic-antiferromagnetic phase fraction in FeRh films

Alexis Pecheux, Robin Salvatore, Laura Thevenard, Jon Ander Arregi, Vojtěch Uhlíř, Morgan Almanza, Danièle Fournier, Catherine Gourdon, and Martino LoBue

Phys. Rev. B 112, 134402 (2025) - Published 1 October, 2025

Efficient optimization of variational tensor-network approach to three-dimensional statistical systems

Xia-Ze Xu, Tong-Yu Lin, and Guang-Ming Zhang

Phys. Rev. B 112, 134403 (2025) - Published 2 October, 2025

Measuring the magnetic anisotropy of the spin Hall effect and spin relaxation length in nickel and permalloy via electrical spin injection

Eoin Dolan, Jone Mencos, Williams Savero Torres, Maxen Cosset-Chéneau, Jean-Philippe Attané, Laurent Vila, Luis E. Hueso, and Fèlix Casanova

Phys. Rev. B 112, 134404 (2025) - Published 2 October, 2025

Spin-strain interactions under hydrostatic pressure in αRuCl3

A. Hauspurg, Susmita Singh, T. Yanagisawa, V. Tsurkan, J. Wosnitza, Wolfram Brenig, Natalia B. Perkins, and S. Zherlitsyn

Phys. Rev. B 112, 134405 (2025) - Published 3 October, 2025

Fe layer thickness driven evolution of magnetic states in Gd/Fe multilayers

Smritiparna Ghosh, Rakhul Raj, Sourav Mukherjee, Chandana Mondal, Mukul Gupta, and V. Raghavendra Reddy

Phys. Rev. B 112, 134406 (2025) - Published 3 October, 2025

Linear magnetoconductivity as a probe of time-reversal symmetry breaking

V. Sunko, C. Liu, M. Vila, I. Na, Y. Tang, V. Kozii, S. M. Griffin, J. E. Moore, and J. Orenstein

Phys. Rev. B 112, 134407 (2025) - Published 6 October, 2025

Dynamic freezing in a quasicrystal nanomagnet array

Dong Shi, Haifeng Lou, Shilei Zhang, Xin Ouyang, Zixiong Yuan, Peiyuan Huang, Liang He, Han-Wen Cheng, Yan Chen, Wen-Cheng Yue, Yong-Lei Wang, and Renchao Che

Phys. Rev. B 112, 134408 (2025) - Published 6 October, 2025

Monte Carlo study of the Heisenberg model with local dipolar interaction

Etsuko Itou, Akira Matsumoto, Yu Nakayama, and Toshiki Onagi

Phys. Rev. B 112, 134409 (2025) - Published 7 October, 2025

Relaxation pathways and emergence of domains in square artificial spin ice

Matteo Menniti, Naëmi Leo, Pedro Villalba-González, Matteo Pancaldi, and Paolo Vavassori

Phys. Rev. B 112, 134410 (2025) - Published 7 October, 2025

Anomalous Hall effect in A-type antiferromagnetic bilayers

Han-Zhong Liu, Ran He, Jia-Yue Zhan, Dan Wang, Meng-Dong He, Nannan Luo, Jiang Zeng, Ke-Qiu Chen, and Li-Ming Tang

Phys. Rev. B 112, 134411 (2025) - Published 7 October, 2025

Thermodynamic formulation of the spin magnetic octupole moment in bulk crystals

Jun Ōiké, Robert Peters, and Koki Shinada

Phys. Rev. B 112, 134412 (2025) - Published 8 October, 2025

Magnons, phonons, and thermal Hall effect in the candidate Kitaev magnet αRuCl3

Shuyi Li, Han Yan, and Andriy H. Nevidomskyy

Phys. Rev. B 112, 134413 (2025) - Published 8 October, 2025

Statics and dynamics of twisted skyrmion tubes in frustrated magnets

Carlos Saji, Eduardo Saavedra, Vagson L. Carvalho-Santos, Alvaro S. Nunez, and Roberto E. Troncoso

Phys. Rev. B 112, 134414 (2025) - Published 8 October, 2025

Spin Seebeck effect in two-sublattice ferrimagnets in the vicinity of TC

Hayato Fukushima, Masanori Ichioka, and Hiroto Adachi

Phys. Rev. B 112, 134415 (2025) - Published 8 October, 2025

The spin Seebeck effect is a thermal way of spin current injection from a magnet into the adjacent heavy metal. A decade-old mystery in the spin Seebeck effect is a convex downward temperature dependence near the magnetic transition found in a prototypical bilayer system of a ferrimagnet (Y3Fe5O12) and platinum. Here, the authors resolve this mystery by assuming unconventional interfacial exchange coupling. The finding highlights the importance of interface engineering in ferrimagnetic spintronics.

Non-Hermitian and Liouvillian skin effects in magnetic systems

Xin Li, Mohamed Al Begaowe, Shu Zhang, and Benedetta Flebus

Phys. Rev. B 112, 134416 (2025) - Published 8 October, 2025

Isotropic and anisotropic spin-dependent transport in epitaxial Fe3Si

Nozomi Soya, Michihiro Yamada, Kohei Hamaya, and Kazuya Ando

Phys. Rev. B 112, 134417 (2025) - Published 9 October, 2025

Long-range bipartite entanglement in XXZ spin chains with exponential and power-law long-range interactions

Na Li, Yang Zhao, Wen-Long Ma, Z. D. Wang, and Yan-Kui Bai

Phys. Rev. B 112, 134418 (2025) - Published 10 October, 2025

Design, synthesis, and physical properties of the intergrowth compound Eu2CuZn2As3

Xiyu Chen, Ziwen Wang, Wuzhang Yang, Jia-Yi Lu, Zhiyu Zhou, Shanshan Wang, Zhi Ren, Guang-Han Cao, Shuai Dong, and Zhi-Cheng Wang

Phys. Rev. B 112, 134419 (2025) - Published 14 October, 2025

The authors report here on the synthesis and properties of the intergrowth compound Eu2CuZn2As3, designed by structurally hybridizing two known magnetic topological materials, EuCuAs and EuZn2As2. It exhibits a complex antiferromagnetic ground state with multiple transitions, a significant negative magnetoresistance, and a nonlinear anomalous Hall effect. The work demonstrates structural hybridization as an effective strategy for discovering new magnetic topological materials with tailored properties.

Kibble-Zurek dynamical scaling hypothesis in the Google analog-digital quantum simulator of the XX model

Yintai Zhang, Francis A. Bayocboc, Jr., and Jacek Dziarmaga

Phys. Rev. B 112, 134420 (2025) - Published 14 October, 2025

Layer Hall and layer spin Hall effects in two-dimensional altermagnets induced by spin-layer coupling

Xiangju Wang, Siyuan Liu, Ling Bai, Run-Wu Zhang, Yugui Yao, and Wanxiang Feng

Phys. Rev. B 112, 134421 (2025) - Published 14 October, 2025

Possible Bose-Einstein condensation of magnons in an S=52 honeycomb lattice

J. Khatua, S. M. Kumawat, G. Senthil Murugan, C.-L. Huang, Heung-Sik Kim, K. Sritharan, R. Sankar, and Kwang-Yong Choi

Phys. Rev. B 112, 134422 (2025) - Published 14 October, 2025

Tunneling spectroscopy of n-type ferromagnetic semiconductor (In,Fe)Sb using single-barrier heterostructures

Akhil Pillai, Le Duc Anh, and Masaaki Tanaka

Phys. Rev. B 112, 134423 (2025) - Published 14 October, 2025

Diagonal superexchange in a simple square CuO2 lattice

V. A. Gavrichkov, S. I. Polukeev, and S. G. Ovchinnikov

Phys. Rev. B 112, 134424 (2025) - Published 15 October, 2025

Micromagnons and long-range entanglement in ferrimagnetic ground states

Marcin Wieśniak, Ankit Kumar, and Idriss Hank Nkouatchoua Ngueya

Phys. Rev. B 112, 134425 (2025) - Published 15 October, 2025

Three-dimensional topological orbital Hall effect caused by magnetic hopfions

Börge Göbel and Samir Lounis

Phys. Rev. B 112, 134426 (2025) - Published 15 October, 2025

Hopfions are three-dimensional topological spin textures characterized by an integer topological invariant known as the Hopf index. The authors reveal here that magnetic hopfions give rise to a unique orbital Hall effect, producing transverse currents of orbital angular momentum in three dimensions. This response provides a clear electronic hallmark of hopfions, allowing them to be distinguished from related textures such as skyrmions. The three-dimensional transport behavior of hopfions originates from their noncollinear emergent field and underlying topology.

Improving the accuracy of the tree-tensor network approach by optimization of network structure

Toshiya Hikihara, Hiroshi Ueda, Kouichi Okunishi, Kenji Harada, and Tomotoshi Nishino

Phys. Rev. B 112, 134427 (2025) - Published 16 October, 2025

Electric field modulation of sublattice exchange coupling and anisotropic magnon in a CrOCl monolayer

Jinghua Liang

Phys. Rev. B 112, 134428 (2025) - Published 16 October, 2025

Toroidal ordering of artificial magnetic systems by spontaneous symmetry breaking

Jaroslav Tóbik, Peter Bokes, Serban Lepadatu, Iuliia Vetrova, Tomáš Ščepka, and Ján Šoltýs

Phys. Rev. B 112, 134429 (2025) - Published 17 October, 2025

Spin ordering induced fully compensated ferrimagnetism achieved in bilayers of Cr2C2S6

San-Dong Guo, Shaobo Chen, and Guangzhao Wang

Phys. Rev. B 112, 134430 (2025) - Published 17 October, 2025

Anomalous magnetotransport in the single-crystalline half-Heusler antiferromagnet ErPdSb

Abhinav Agarwal, Shovan Dan, Maciej J. Winiarski, Orest Pavlosiuk, Piotr Wiśniewski, and Dariusz Kaczorowski

Phys. Rev. B 112, 134431 (2025) - Published 17 October, 2025

Renormalized classical theory of quantum magnets

David A. Dahlbom, Hao Zhang, Zoha Laraib, Daniel M. Pajerowski, Kipton Barros, and Cristian D. Batista

Phys. Rev. B 112, 134432 (2025) - Published 17 October, 2025

Incommensurate magnetic order arising from frustrated interchain interactions in the spin-12 chain compound AgCuVO4

A. Hromov, A. Zorko, M. Gomilšek, I. Puente Orench, L. Keller, T. Shiroka, A. Prokofiev, and M. Pregelj

Phys. Rev. B 112, 134433 (2025) - Published 20 October, 2025

Asymmetric absorption at custom wavelengths via a layered magnetoelectric window

Artem M. Kuzmenko, Alexander A. Mukhin, Alexey Shuvaev, Andrei Pimenov, and Dávid Szaller

Phys. Rev. B 112, 134434 (2025) - Published 20 October, 2025

Spin Nernst and thermal Hall effects of topological triplons in quantum dimer magnets on the maple-leaf and star lattices

Nanse Esaki, Yutaka Akagi, Karlo Penc, and Hosho Katsura

Phys. Rev. B 112, 134435 (2025) - Published 20 October, 2025

Spin-flop-like transition as quantum critical point in Cs2RuO4

S. D. Nabi, M. Zhu, K. Yu. Povarov, D. G. Mazzone, J. Lass, Y. Wu, Z. Yan, S. Gvasaliya, and A. Zheludev

Phys. Rev. B 112, 134436 (2025) - Published 21 October, 2025

Cs2RuO4 expands the celebrated family of frustrated magnets Cs2MX4 (M=Cu, Co; X=Br, Cl) into the realm of 4d transition metal ions. This study uncovers an unconventional spin-flop-like transition tied to a quantum critical point, hidden inside the antiferromagnetically ordered phase. Inelastic neutron scattering reveals the magnetic Hamiltonian, which shows that the origin of this peculiar transition lies in geometric frustration of single-ion anisotropy.

Observation of a gapped phase in the one-dimensional S=12 Heisenberg antiferromagnetic chain Cu(Ampy)ClBr

Saikat Nandi, Monika Jawale, Sanjay Bachhar, Rahul Kumar, Marlis Schuller, Rabindranath Bag, J. M. Wilkinson, Jörg Sichelschmidt, A. Sundaresan, Sara Haravifard, N. Büttgen, and A. V. Mahajan

Phys. Rev. B 112, 134437 (2025) - Published 22 October, 2025

Multimagnon and multispinon L3-edge RIXS spectra of an effective J̃1J̃2J̃3 square-lattice Heisenberg model

Kai-Yuan Qi (祁开元), Shangjian Jin, Trinanjan Datta, and Dao-Xin Yao (姚道新)

Phys. Rev. B 112, 134438 (2025) - Published 23 October, 2025

High-resolution neutron diffraction determination of noncollinear antiferromagnetic order in the honeycomb magnetoelectric Fe4Nb2O9

Raktim Datta, Kapil Kumar, Dong Gun Oh, Dongwook Kim, Rahul Goel, Nara Lee, Ara Go, Young Jai Choi, Valery Kiryukhin, and Sungkyun Choi

Phys. Rev. B 112, 134439 (2025) - Published 23 October, 2025

Nature of field-induced transitions and hysteretic magnetoresistance in the noncollinear antiferromagnet EuIn2As2

Karan Singh, Jan Skolimowski, Giuseppe Cuono, Raghottam M. Sattigeri, Andrzej Ptok, Orest Pavlosiuk, Tetiana Romanova, Tomasz Toliński, Piotr Wiśniewski, Carmine Autieri, and Dariusz Kaczorowski

Phys. Rev. B 112, 134440 (2025) - Published 24 October, 2025

Highly tunable magnetism and giant electrical control in VSeTe lateral heterostructures

Cuiru Sun (孙翠茹), Ruishan Tan (谭瑞山), Tao Jing (荆涛), and Qilong Sun (孙启龙)

Phys. Rev. B 112, 134442 (2025) - Published 27 October, 2025

Evolution of magnetoresistance in the magnetic topological semimetals NdSbxTe2x

Santosh Karki Chhetri, Rabindra Basnet, Krishna Pandey, Gokul Acharya, Sumaya Rahman, Md Rafique Un Nabi, Dinesh Upreti, Hugh O. H. Churchill, and Jin Hu

Phys. Rev. B 112, 134443 (2025) - Published 24 October, 2025

Electrical side-gate control of anisotropic magnetoresistance and magnetic anisotropy in a composite multiferroic

Katherine Johnson, Michael Newburger, Michael Page, and Roland K. Kawakami

Phys. Rev. B 112, 134444 (2025) - Published 27 October, 2025

Magnetoelastic coupling and magnetic anisotropy in Sm2CoFeO6 thin films

Wakeel Ahmad, Amitava Ghosh, Digbijaya Palai, Shwetha G. Bhat, Ram Janay Choudhary, P. S. Anil Kumar, D. Samal, and Chanchal Sow

Phys. Rev. B 112, 134446 (2025) - Published 27 October, 2025

Tunable spin-wave nonreciprocity in ferrimagnetic domain-wall channels

Tingting Liu, Shuhong Li, Yunlong Liu, Shuchao Qin, Yang Liu, Wenjun Wang, and Minghui Qin

Phys. Rev. B 112, 134447 (2025) - Published 27 October, 2025

Anomalous enhancement of magnetism by nonmagnetic doping in the honeycomb-lattice antiferromagnet ErOCl

Yanzhen Cai, Mingtai Xie, Jing Kang, Weizhen Zhuo, Wei Ren, Xijing Dai, Anmin Zhang, Jianting Ji, Feng Jin, Zheng Zhang, and Qingming Zhang

Phys. Rev. B 112, 134448 (2025) - Published 27 October, 2025

Leveraging recurrence in neural network wavefunctions for large-scale simulations of Heisenberg antiferromagnets on the triangular lattice

M. Schuyler Moss, Roeland Wiersema, Mohamed Hibat-Allah, Juan Carrasquilla, and Roger G. Melko

Phys. Rev. B 112, 134449 (2025) - Published 28 October, 2025

Leveraging recurrence in neural network wavefunctions for large-scale simulations of Heisenberg antiferromagnets on the square lattice

M. Schuyler Moss, Roeland Wiersema, Mohamed Hibat-Allah, Juan Carrasquilla, and Roger G. Melko

Phys. Rev. B 112, 134450 (2025) - Published 28 October, 2025

Heterogeneous dynamic behavior of skyrmions on a periodic substrate under dc and ac drives

Chen Yang, Long Xiong, Chunhua Zeng, and Bo Zheng

Phys. Rev. B 112, 134451 (2025) - Published 29 October, 2025

Temperature dependence of coercivity for isolated Ni nanowires unraveled by high-sensitivity micromagnetometry

E. A. Escudero Bruna, F. Romá, F. Meneses, P. G. Bercoff, and M. I. Dolz

Phys. Rev. B 112, 134452 (2025) - Published 29 October, 2025

Magnetism in M1/3NbS2 (M=Fe, V, Mn): Insight into intercalated transition metal dichalcogenides using μSR

N. P. Bentley, T. L. Breeze, A. Hernández-Melián, T. J. Hicken, B. M. Huddart, F. L. Pratt, A. E. Hall, D. A. Mayoh, G. Balakrishnan, S. J. Clark, and T. Lancaster

Phys. Rev. B 112, 134453 (2025) - Published 29 October, 2025

Magnetic properties of RRh6Ge4 (R=Pr, Nd, Sm, Gd–Er) single crystals

Jiawen Zhang, Yongjun Zhang, Yuxin Chen, Zhaoyang Shan, Jin Zhan, Mingyi Wang, Yu Liu, Michael Smidman, and Huiqiu Yuan

Phys. Rev. B 112, 134454 (2025) - Published 30 October, 2025

Multiscale magnetic correlations in La2Mn2xNixO6: Role of crystal structure in double perovskites

A. K. Bera, K. S. Chikara, B. Saha, S. M. Yusuf, Mohd. Nasir, and S. Sen

Phys. Rev. B 112, 134455 (2025) - Published 31 October, 2025

Superfluidity and superconductivity

Multiple Majorana bound states and their resilience against disorder in planar Josephson junctions

Pankaj Sharma and Narayan Mohanta

Phys. Rev. B 112, 134501 (2025) - Published 1 October, 2025

Ductile Al7MgH2 superconductors with Tc up to 64 K at ambient pressure

Chong Tian, Juan Du, Hong-xia Zhong, Yao-hui Zhu, Xinqiang Wang, and Jun-jie Shi

Phys. Rev. B 112, 134502 (2025) - Published 1 October, 2025

Superconducting properties of Fibonacci chains with enhanced superconducting pairing at the boundaries

Quanyong Zhu, Guo-Qiao Zha, A. A. Shanenko, and Yajiang Chen

Phys. Rev. B 112, 134503 (2025) - Published 1 October, 2025

Gapfull and gapless one-dimensional topological superconductivity in spin-orbit-coupled bilayer graphene

Daniel Skliannyi, Yuval Oreg, and Ady Stern

Phys. Rev. B 112, 134504 (2025) - Published 2 October, 2025

Temperature dependent energy gap for Yu-Shiba-Rusinov states at the quantum phase transition

Andreas Theiler, Christian R. Ast, and Annica M. Black-Schaffer

Phys. Rev. B 112, 134505 (2025) - Published 6 October, 2025

Vortex flow anisotropy in nematic superconductors

F. Castillo Menegotto, R. S. Severino, P. D. Mininni, E. Fradkin, V. Bekeris, G. Pasquini, and G. S. Lozano

Phys. Rev. B 112, 134506 (2025) - Published 6 October, 2025

Vortex structure and intervortex interaction in superconducting structures with intrinsic diode effect

A. V. Putilov, D. V. Zakharov, A. Kudlis, A. S. Mel'nikov, and A. I. Buzdin

Phys. Rev. B 112, 134507 (2025) - Published 6 October, 2025

Making s-wave superconductors topological with magnetic field

Daniil S. Antonenko, Liang Fu, and Leonid I. Glazman

Phys. Rev. B 112, 134508 (2025) - Published 7 October, 2025

Superconducting spin valve effect in Fe/Si3N4/Pb/Si3N4/Fe heterostructures

A. A. Kamashev, N. N. Garif'yanov, A. A. Validov, A. S. Osin, Ya. V. Fominov, and I. A. Garifullin

Phys. Rev. B 112, 134509 (2025) - Published 8 October, 2025

Inhomogeneous phase stiffness in two-dimensional s-wave disordered superconductors

Sudipta Biswas, A. Taraphder, and Sudhansu S. Mandal

Phys. Rev. B 112, 134510 (2025) - Published 10 October, 2025

Possible frustrated superconductivity in kagome superconductors

Hong-Min Jiang, Wen-Qian Dong, Shun-Li Yu, and Z. D. Wang

Phys. Rev. B 112, 134512 (2025) - Published 14 October, 2025

Vertex corrections to nonlinear photoinduced currents in two-dimensional superconductors

A. V. Parafilo, V. M. Kovalev, and I. G. Savenko

Phys. Rev. B 112, 134513 (2025) - Published 14 October, 2025

Native three-body interactions in a superconducting lattice gauge quantum simulator

J. H. Busnaina, Z. Shi, Jesús M. Alcaine-Cuervo, Cindy X. Yang, I. Nsanzineza, E. Rico, and C. M. Wilson

Phys. Rev. B 112, 134514 (2025) - Published 14 October, 2025

Hidden chiral topological superconductivity in two-dimensional centrosymmetric materials and Majorana mode braiding

Xiaoming Zhang and Feng Liu

Phys. Rev. B 112, 134515 (2025) - Published 14 October, 2025

Enhanced superconductivity in bilayer kagome borophene by alkali and alkaline earth metal deposition

Ying-Jie Chen, Meng-Meng Zheng, Ping Zhang, and Hong-Yan Lu

Phys. Rev. B 112, 134516 (2025) - Published 14 October, 2025

Order by projection in the single-band Hubbard model: A density matrix renormalization group study

Shuyi Li, Cheng Peng, Yue Yu, B. Sriram Shastry, and Chunjing Jia

Phys. Rev. B 112, 134517 (2025) - Published 16 October, 2025

Impact of deviatoric stress on the stability and superconductivity of H3S

Han Liu, Chang Liu, Yanming Ma, and Changfeng Chen

Phys. Rev. B 112, 134518 (2025) - Published 16 October, 2025

Near room temperature superconductivity in superhydrides is an exemplary case of theory-driven discovery of novel physics. There are, however, crucial discrepancies, ranging from subtle to prominent, between theory and experiment. Taking H3S as a model system, the authors show here that deviatoric stress, prevalent in high-pressure experiments yet unrecognized in prevailing theories, have a major impact on key structural and superconducting properties, reconciling theoretical and experimental results. These findings highlight significant influence of deviatoric stress on material behaviors under extreme compression.

Superconductivity with repulsion: A variational approach

Laura Fanfarillo, Yifu Cao, Chandan Setty, Sergio Caprara, and P. J. Hirschfeld

Phys. Rev. B 112, 134519 (2025) - Published 17 October, 2025

In the presence of repulsive interactions, the BCS state appears unstable, showing up as a saddle point of the mean-field free energy. This apparent paradox has sparked recent proposals to restore stability by projecting out repulsive modes, effectively restricting the problem to the attractive sector. The authors show here that a Bogoliubov variational construction yields a bounded free energy and stabilizes the BCS state, without constraining the energy landscape. Simple models highlight the role of the full BCS kernel in correctly identifying collective modes, offering a robust framework for multichannel superconductors.

Fluxoid valve effect in full-shell nanowire Josephson junctions

Carlos Payá, F. J. Matute-Cañadas, A. Levy Yeyati, Ramón Aguado, Pablo San-Jose, and Elsa Prada

Phys. Rev. B 112, 134520 (2025) - Published 17 October, 2025

Noncommutative effective field theory of the lowest Landau level superfluid

Nandagopal Manoj

Phys. Rev. B 112, 134521 (2025) - Published 23 October, 2025

Planar Josephson junction devices with narrow superconducting strips: Topological properties and optimization

Purna P. Paudel, Javad Shabani, and Tudor D. Stanescu

Phys. Rev. B 112, 134522 (2025) - Published 23 October, 2025

Measuring the Debye energy in superconductors via two-electron photoemission spectroscopy

Ka Ho Wong, Jack Zwettler, Henry Amir, Peter Abbamonte, Fahad Mahmood, and Dirk K. Morr

Phys. Rev. B 112, 134523 (2025) - Published 24 October, 2025

Interplay of tilt and axion fields in topological superconductors: Anisotropy in the Meissner effect

Mojtaba Hassani and Zahra Faraei

Phys. Rev. B 112, 134524 (2025) - Published 27 October, 2025

ERRATA

Erratum: Theory of terahertz-driven magnetic switching in rare-earth orthoferrites: The case of TmFeO3 [Phys. Rev. B 111, 064411 (2025)]

N. R. Vovk, E. V. Ezerskaya, and R. V. Mikhaylovskiy

Phys. Rev. B 112, 139901 (2025) - Published 17 October, 2025

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