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HIGHLIGHTED ARTICLES

Nuclear magnetic resonance far off the Larmor frequency: Nonsecular resonances in CaF2

Michael Jurkutat, Kajum Safiullin, Pooja Singh, Stephan L. Grage, Jürgen Haase, Boris V. Fine, and Benno Meier

Phys. Rev. B 112, L060302 (2025) - Published 11 August, 2025

The canonical treatment of spins in high-field magnetic resonance considers the Zeeman transition that occurs at the Larmor frequency, and includes only secular spin-spin interaction terms, which are those terms that commute with the Zeeman interaction. Here, the authors show that nonsecular terms give rise to resonances far off the Larmor frequency even at high field, provided that the applied B1 field is sufficiently strong.

Insight into spin-to-charge conversion in rutile RuO2

Yanzhang Cao, Da Tian, Lin Huang, Hua Bai, Shixuan Liang, Lei Han, Chong Chen, Yichi Zhang, Lei Wang, Caihong Zhang, Feng Pan, Biaobing Jin, and Cheng Song

Phys. Rev. B 112, 064415 (2025) - Published 7 August, 2025

Spin-to-charge conversion is at the center of spintronics. Here, the authors provide an insight into the dynamical process of spin-to-charge conversion in RuO2 via terahertz emission spectroscopy technique. The dependence of terahertz emission signal on the RuO2 film thickness reveals that the conversion of out-of-plane spin polarization, induced by circularly polarized lasers, occurs simultaneously with the propagation within the film. This study helps advance the understanding of spin-to-charge conversion and the development of z-spin-based ultrafast devices.

Altermagnetic splitting of magnons in hematite αFe2O3

Rhea Hoyer, P. Peter Stavropoulos, Aleksandar Razpopov, Roser Valentí, Libor Šmejkal, and Alexander Mook

Phys. Rev. B 112, 064425 (2025) - Published 15 August, 2025

The authors investigate here the influence of spin-orbit coupling corrections on the magnon dispersion relation of the g-wave altermagnet candidate hematite (α-Fe2O3). They show that for both the easy-axis phase below and the weak ferromagnetic phase above the Morin transition temperature, the corrections are concentrated at the Brillouin zone center at low magnon energies, leaving intact the altermagnetic splitting of the magnon modes at higher energies and nonzero crystal momentum. The authors discuss implications for inelastic neutron scattering and magnon transport.

Quantum geometry and magnon Hall transport in an altermagnet

Erlend Syljuåsen, Alireza Qaiumzadeh, and Asle Sudbø

Phys. Rev. B 112, 064429 (2025) - Published 19 August, 2025

The authors derive here an analytic expression for the relevant quantum geometric tensor in systems described by two-band bosonic Bogoliubov Hamiltonians. They apply it to compute magnon Hall conductivities in a two-dimensional altermagnet model. Both the magnon thermal Hall and spin Nernst conductivities are shown to depend directly on the altermagnetic parameter, offering a potential experimental signature of altermagnetism in this setting.

Temperature-dependent study of the spin dynamics of coupled Y3Fe5O12/Gd3Fe5O12/Pt trilayers

Felix Fuhrmann, Sven Becker, Akashdeep Akashdeep, Gerhard Jakob, Qianqian Lan, Nan Wang, Rafal E. Dunin-Borkowski, Romain Lebrun, Mathias Weiler, and Mathias Kläui

Phys. Rev. B 112, 064432 (2025) - Published 22 August, 2025

The authors unravel here the coupled spin dynamics in Y3Fe5O12/Gd3Fe5O12/Pt trilayers by combining broadband ferromagnetic resonance and spin pumping measurements, supported by micromagnetic simulations. Their work demonstrates strong interlayer coupling, revealing that the GdIG layer governs spin current generation, near its compensation temperature. The system’s highly tunable spin current and coherent dynamics establish a robust platform for investigating magnonic transport and designing complex spintronic devices, such as all-insulating magnon spin valves, across broad temperature and field regimes.

Coexistence of superconductivity and topological band in a van der Waals Sn1xInxBi2Te4 crystal

Hoyeon Jeon, Saban Hus, Jewook Park, Qiangsheng Lu, Seoung-Hun Kang, Mina Yoon, Robert G. Moore, Jiaqiang Yan, Michael A. McGuire, and An-Ping Li

Phys. Rev. B 112, 064505 (2025) - Published 4 August, 2025

The authors demonstrate here the coexistence of superconductivity and topological surface states in the van der Waals single crystals Sn1xInxBi2Te4. Indium doping provides tunability of the superconducting gap size and the Dirac point position. These findings establish the material as a promising platform for exploring topological superconductivity and potential Majorana modes, without the need for complex heterostructures.

Doping dependence of the low-temperature planar carrier density in overdoped YBa2Cu3O7δ

R. Nicholls, R. D. H. Hinlopen, J. Ayres, T. Kotte, T. Förster, J. Park, J. Sourd, A. Carrington, and N. E. Hussey

Phys. Rev. B 112, 064511 (2025) - Published 7 August, 2025

A sharp rise in the Hall number near the pseudogap critical point in YBa2Cu3O7δ has often been interpreted as evidence for a quantum critical point (QCP) at a singular doping level p*0.19. Here, the authors revisit this result using high-field transport measurements, revealing that once the chain-induced resistivity anisotropy is accounted for, there is no significant feature in the planar carrier density at p*. The observed gradual crossover from ”p” to ”1+p” carriers now aligns with previously conflicting observations of carrier evolution across the overdoped cuprate phase diagram, presenting a challenge to the conventional QCP scenario.

Spectroscopic visualization of hard quasi-one-dimensional superconductivity induced in nanowires deposited on a quasi-two-dimensional indium film

Ambikesh Gupta, Pranab Kumar Nag, Shai Kiriati, Samuel D. Escribano, Man Suk Song, Hadas Shtrikman, Yuval Oreg, Nurit Avraham, and Haim Beidenkopf

Phys. Rev. B 112, 064513 (2025) - Published 11 August, 2025

Superconductivity is typically induced in semiconductors through high-quality epitaxial interfaces. However, the authors demonstrate here that a robust superconducting state can be spectroscopically observed in semiconducting nanowires simply by mechanically placing them on an indium substrate. A hard superconducting gap is detected on the nanowire’s top facets, up to 100 nanometers from the physical contact with indium. The induced superconductivity exhibits an anisotropic critical field, characteristic of a one-dimensional superconducting state.

Selected magnetoelectrical phonon stiffening in Cr2O3

Qiyang Sun, Yaokun Su, Douglas L. Abernathy, Wei Tian, and Chen Li

Phys. Rev. B 112, L060303 (2025) - Published 26 August, 2025

Using inelastic neutron scattering and first-principles calculations, the authors investigate here the origin of anomalous phonon stiffening in Cr₂O₃. They challenge the common belief that dynamic spin-phonon interactions are responsible for this behavior. The findings attribute the stiffening to a static effect—the renormalization of electron states owing to the magnetic transition. This work suggests that the proposed static origin may dominate phonon energy shifts, prompting a reevaluation of phonon stiffening in other magnetic materials.

Towards a global phase diagram of Ce-based dipolar-octupolar pyrochlore magnets under magnetic fields

Zhengbang Zhou (周政邦) and Yong Baek Kim

Phys. Rev. B 112, L060407 (2025) - Published 26 August, 2025

Ce-based dipolar-octupolar pyrochlores have emerged as leading candidates for realizing the elusive π-flux quantum spin ice, yet a definitive identification remains unsettled. The authors establish here a global magnetic field tuned phase diagram for Ce2(Zr,Sn,Hf)2O7, using gauge mean-field theory. Distinctive field direction dependent responses—ranging from critical fields differing by an order of magnitude, to split multi-peak dynamical spectra, to contrasting magnetostriction profiles—reveal powerful probes of the system’s underlying multipolar nature. These predictions provide a concrete roadmap for neutron scattering and thermodynamic experiments.

Intrinsic superconducting diode effect and nonreciprocal superconductivity in rhombohedral graphene multilayers

Yinqi Chen, Mathias S. Scheurer, and Constantin Schrade

Phys. Rev. B 112, L060505 (2025) - Published 18 August, 2025

Recent experiments found superconductivity in a four-layer graphene stack where electrons pair chirally in a single momentum-space valley. This spin- and valley-polarized pairing challenges conventional theory and suggests new superconducting orders. Here, the authors present a microscopic explanation for the emergence of such pairing. They show that the same broken symmetries produce an intrinsic superconducting diode effect with direction-dependent critical current. This nonreciprocity is inherent to the graphene stack, requiring no magnetic field. It offers a new platform for field-free, nonreciprocal superconducting transport.

LETTERS

Structure, structural phase transitions, mechanical properties, defects

Quasiaperiodic grain boundary phases of Σ5 tilt grain boundaries in refractory metals

Enze Chen and Timofey Frolov

Phys. Rev. B 112, L060101 (2025) - Published 18 August, 2025

Towards structural softness and enhanced electromechanical responses in HfO2 ferroelectrics

Binayak Mukherjee, Natalya S. Fedorova, and Jorge Íñiguez-González

Phys. Rev. B 112, L060102 (2025) - Published 21 August, 2025

Dynamics, dynamical systems, lattice effects

Nonequilibrium critical dynamics with emergent supersymmetry

Zhi Zeng, Yin-Kai Yu, Zi-Xiang Li, and Shuai Yin

Phys. Rev. B 112, L060301 (2025) - Published 5 August, 2025

Nuclear magnetic resonance far off the Larmor frequency: Nonsecular resonances in CaF2

Michael Jurkutat, Kajum Safiullin, Pooja Singh, Stephan L. Grage, Jürgen Haase, Boris V. Fine, and Benno Meier

Phys. Rev. B 112, L060302 (2025) - Published 11 August, 2025

The canonical treatment of spins in high-field magnetic resonance considers the Zeeman transition that occurs at the Larmor frequency, and includes only secular spin-spin interaction terms, which are those terms that commute with the Zeeman interaction. Here, the authors show that nonsecular terms give rise to resonances far off the Larmor frequency even at high field, provided that the applied B1 field is sufficiently strong.

Selected magnetoelectrical phonon stiffening in Cr2O3

Qiyang Sun, Yaokun Su, Douglas L. Abernathy, Wei Tian, and Chen Li

Phys. Rev. B 112, L060303 (2025) - Published 26 August, 2025

Using inelastic neutron scattering and first-principles calculations, the authors investigate here the origin of anomalous phonon stiffening in Cr₂O₃. They challenge the common belief that dynamic spin-phonon interactions are responsible for this behavior. The findings attribute the stiffening to a static effect—the renormalization of electron states owing to the magnetic transition. This work suggests that the proposed static origin may dominate phonon energy shifts, prompting a reevaluation of phonon stiffening in other magnetic materials.

Persistent topological negativity in a high-temperature mixed state

Yonna Kim, Ali Lavasani, and Sagar Vijay

Phys. Rev. B 112, L060304 (2025) - Published 28 August, 2025

Magnetism

Two-dimensional antiferromagnets with nonrelativistic spin splitting switchable by electric polarization

Himanshu Mavani, Kai Huang, Kartik Samanta, and Evgeny Y. Tsymbal

Phys. Rev. B 112, L060401 (2025) - Published 4 August, 2025

Spin Seebeck effect of interacting spinons

Ren-Bo Wang, Naveen Nishad, Anna Keselman, Leon Balents, and Oleg A. Starykh

Phys. Rev. B 112, L060402 (2025) - Published 4 August, 2025

Thermal Hall effect and gauge-field picture of magnons in antiferromagnetic skyrmion crystals

Masataka Kawano

Phys. Rev. B 112, L060403 (2025) - Published 6 August, 2025

Magnetic tuning of the tunnel coupling in an optically active quantum dot molecule

Frederik Bopp, Charlotte Cullip, Christopher Thalacker, Michelle Lienhart, Johannes Schall, Nikolai Bart, Friedrich Sbresny, Katarina Boos, Sven Rodt, Dirk Reuter, Arne Ludwig, Andreas D. Wieck, Stephan Reitzenstein, Filippo Troiani, Guido Goldoni, Elisa Molinari, Kai Müller, and Jonathan J. Finley

Phys. Rev. B 112, L060404 (2025) - Published 8 August, 2025

Frequency dependence of temporal spin stiffness and short-range magnetic order in the doped two-dimensional Hubbard model

I. A. Goremykin and A. A. Katanin

Phys. Rev. B 112, L060405 (2025) - Published 13 August, 2025

Transient selection of competing order in frustrated spin-Peierls systems after a quench

Jing Zhou and Yuan Wan

Phys. Rev. B 112, L060406 (2025) - Published 19 August, 2025

Towards a global phase diagram of Ce-based dipolar-octupolar pyrochlore magnets under magnetic fields

Zhengbang Zhou (周政邦) and Yong Baek Kim

Phys. Rev. B 112, L060407 (2025) - Published 26 August, 2025

Ce-based dipolar-octupolar pyrochlores have emerged as leading candidates for realizing the elusive π-flux quantum spin ice, yet a definitive identification remains unsettled. The authors establish here a global magnetic field tuned phase diagram for Ce2(Zr,Sn,Hf)2O7, using gauge mean-field theory. Distinctive field direction dependent responses—ranging from critical fields differing by an order of magnitude, to split multi-peak dynamical spectra, to contrasting magnetostriction profiles—reveal powerful probes of the system’s underlying multipolar nature. These predictions provide a concrete roadmap for neutron scattering and thermodynamic experiments.

Multiferroicity in the incommensurate magnetic phase of Yb2BaCuO5

Premakumar Yanda, N. Boudjada, Juan Rodríguez-Carvajal, and A. Sundaresan

Phys. Rev. B 112, L060408 (2025) - Published 26 August, 2025

Integrability of the Kondo model with time-dependent interaction strength

Parameshwar R. Pasnoori

Phys. Rev. B 112, L060409 (2025) - Published 26 August, 2025

Superfluidity and superconductivity

Phase diagram of CeRh2As2 for out-of-plane magnetic field

P. Khanenko, J. F. Landaeta, S. Ruet, T. Lühmann, K. Semeniuk, M. Pelly, A. W. Rost, G. Chajewski, D. Kaczorowski, C. Geibel, S. Khim, E. Hassinger, and M. Brando

Phys. Rev. B 112, L060501 (2025) - Published 8 August, 2025

Non-Hermitian superconducting diode effect

Junjie Qi, Ming Lu, Jie Liu, Chui-Zhen Chen, and X. C. Xie

Phys. Rev. B 112, L060502 (2025) - Published 13 August, 2025

Unidirectional charge and pair density waves in topological monolayer 1TMoTe2

Li-Xuan Wei, Peng-Cheng Xiao, Fangsen Li, Li Wang, Bo-Yuan Deng, Fang-Jun Cheng, Fa-Wei Zheng, Ning Hao, Ping Zhang, Xu-Cun Ma, Qi-Kun Xue, and Can-Li Song

Phys. Rev. B 112, L060503 (2025) - Published 13 August, 2025

Reconstructing critical current density in Josephson junctions with phase nonlinearity

A. Kudriashov, R. A. Hovhannisyan, X. Zhou, L. Elesin, L. V. Yashina, K. S. Novoselov, and D. A. Bandurin

Phys. Rev. B 112, L060504 (2025) - Published 15 August, 2025

Intrinsic superconducting diode effect and nonreciprocal superconductivity in rhombohedral graphene multilayers

Yinqi Chen, Mathias S. Scheurer, and Constantin Schrade

Phys. Rev. B 112, L060505 (2025) - Published 18 August, 2025

Recent experiments found superconductivity in a four-layer graphene stack where electrons pair chirally in a single momentum-space valley. This spin- and valley-polarized pairing challenges conventional theory and suggests new superconducting orders. Here, the authors present a microscopic explanation for the emergence of such pairing. They show that the same broken symmetries produce an intrinsic superconducting diode effect with direction-dependent critical current. This nonreciprocity is inherent to the graphene stack, requiring no magnetic field. It offers a new platform for field-free, nonreciprocal superconducting transport.

Quantum hydrodynamics of a polariton fluid: Pure energy relaxation terms

D. A. Saltykova, A. V. Yulin, and I. A. Shelykh

Phys. Rev. B 112, L060506 (2025) - Published 26 August, 2025

ARTICLES

Structure, structural phase transitions, mechanical properties, defects

Raman signatures of cation vacancies in rare earth nitrides

M. Markwitz, K. Van Koughnet, K. Kneisel, W. F. Holmes-Hewett, F. Natali, E. X. M. Trewick, L. Porteous, B. J. Ruck, and H. J. Trodahl

Phys. Rev. B 112, 064101 (2025) - Published 1 August, 2025

Grüneisen parameter, sound velocity, and shock-induced melting of a Ce-5 wt.% La alloy under dynamic compression up to 100 GPa

Yun-Jun Gu, Jian-Zhou Zhao, Kai Zhao, Guo-Jun Li, Zhao-Qi Wang, Jia-Xing Gu, and Qi-Feng Chen

Phys. Rev. B 112, 064102 (2025) - Published 4 August, 2025

High-pressure polymerization of cisN2F2 chains

Guo Chen, Lin Ling, Chengfeng Zhang, Jie Zhang, Gilles Frapper, and Xianlong Wang

Phys. Rev. B 112, 064103 (2025) - Published 4 August, 2025

First-principles effective Hamiltonian for finite-temperature modeling of nonperovskite ferroelectrics

Maggie Kingsland, J. Townsend, Sina Najmaei, S. Lisenkov, and I. Ponomareva

Phys. Rev. B 112, 064104 (2025) - Published 5 August, 2025

Strain-independent negative Poisson's ratio in layered transition metal borides

Haojie Hu, Qiong Peng, Junfei Ding, Jian Zhou, Xiaosi Qi, and Zhimei Sun

Phys. Rev. B 112, 064105 (2025) - Published 11 August, 2025

Melting behavior of aluminum up to 160 GPa: Consistency between dynamic and hydrostatic compression experiments

Haidong Jin, Shijia Ye, Long Hao, Youjun Zhang, Jian Wu, Tao Xue, Hongxing Song, Ke Jin, Qiang Wu, Lixin Liu, and Jun Li

Phys. Rev. B 112, 064106 (2025) - Published 11 August, 2025

Orbital degree of freedom induced non-Hermitian skin effect in acoustic crystals

Yu-qi Chen, Bing-bing Wang, Hong-yu Zou, and Hong-xiang Sun

Phys. Rev. B 112, 064107 (2025) - Published 12 August, 2025

Enhanced damping capacity of graphene origami reinforced metal matrix nanocomposites

Pan Shi, Yao Chen, Haodong Zhou, Jian Feng, and Pooya Sareh

Phys. Rev. B 112, 064108 (2025) - Published 20 August, 2025

Elongation and compression of Fe-Fe atomic pairs in Fe-Ni invar alloys: Microscopic observations of the magnetovolume effect in ferromagnetic Fe-Ni fcc-based alloys

Naoki Ishimatsu, Yusuke Kubo, Naoto Kitamura, Naomi Kawamura, Saori Kawaguchi-Imada, and Tetsuo Irifune

Phys. Rev. B 112, 064109 (2025) - Published 20 August, 2025

Fractional Fermi numbers in Dirac systems with topological point defects

L. B. Shao

Phys. Rev. B 112, 064110 (2025) - Published 25 August, 2025

Multishock compression of dense deuterium-helium mixtures with varying helium abundance up to megabar pressures: Assessing the role of the nonideal mixing effect

Lei Liu, Zhi-Guo Li, Qi-Feng Chen, Yun-Jun Gu, Guo-Jun Li, Zhao-Qi Wang, Yang-shun Lan, Zhi-Jun Shen, and Hua-Zhong Guo

Phys. Rev. B 112, 064111 (2025) - Published 25 August, 2025

Local structural distortion with a ferroic interaction in 1TTaTe2

D. Ito, K. Kimura, T. Ohashi, H. Tajiri, K. Hayashi, and N. Katayama

Phys. Rev. B 112, 064112 (2025) - Published 25 August, 2025

Broken inversion symmetry in the charge density wave phase in EuAl4

Surya Rohith Kotla, Leila Noohinejad, Preeti Pokhriyal, Martin Tolkiehn, Harshit Agarwal, Sitaram Ramakrishnan, and Sander van Smaalen

Phys. Rev. B 112, 064113 (2025) - Published 28 August, 2025

Inhomogeneous, disordered, and partially ordered systems

Orbital and spin bilinear magnetotransport effect in Weyl/Dirac semimetals

Zhanyunxin Du, Yue-Xin Huang, and Xiao Li

Phys. Rev. B 112, 064201 (2025) - Published 1 August, 2025

A tale of two localizations: Coexistence of flat bands and Anderson localization in a photonics-inspired amorphous system

Elizabeth J. Dresselhaus, Alexander Avdoshkin, Zhetao Jia, Matteo Seclí, Boubacar Kanté, and Joel E. Moore

Phys. Rev. B 112, 064202 (2025) - Published 7 August, 2025

Scaling of many-body localization transitions: Quantum dynamics in Fock space and real space

Thibault Scoquart, Igor V. Gornyi, and Alexander D. Mirlin

Phys. Rev. B 112, 064203 (2025) - Published 7 August, 2025

Disordered transition metal dichalcogenides: A coherent potential approximation study

Pedro L. Alcázar Ruano, Dunkan Martínez, Olga Arroyo-Gascón, Yuriko Baba, Jorge Quereda, and Francisco Domínguez-Adame

Phys. Rev. B 112, 064204 (2025) - Published 8 August, 2025

Nonlocal far-field modeling of multichannel metastructures

Peyman Abdipour and George V. Eleftheriades

Phys. Rev. B 112, 064205 (2025) - Published 15 August, 2025

Anderson localization of light by impurities in a solid transparent matrix

S. E. Skipetrov and I. M. Sokolov

Phys. Rev. B 112, 064206 (2025) - Published 22 August, 2025

Significance of the structural configuration of B2 disorder in Co and Ti based Heusler alloys

Swati Pathak, S. Khalid, and R. Bindu

Phys. Rev. B 112, 064207 (2025) - Published 29 August, 2025

Topological amplification of the bosonic Kitaev chain with nonuniform loss

Clément Fortin, Kai Wang, and T. Pereg-Barnea

Phys. Rev. B 112, 064208 (2025) - Published 29 August, 2025

Dynamics, dynamical systems, lattice effects

Spacetime picture for entanglement generation in noisy fermion chains

Tobias Swann, Denis Bernard, and Adam Nahum

Phys. Rev. B 112, 064301 (2025) - Published 1 August, 2025

Manipulating topological chiral phonons with a magnetic field

Xiaozhe Li, Yang Long, Yan Zhou, Hao Chen, and Lifa Zhang

Phys. Rev. B 112, 064302 (2025) - Published 4 August, 2025

Variational transformer ansatz for the density operator of steady states in dissipative quantum many-body systems

Lu Wei, Zhian Jia, Yufeng Wang, Dagomir Kaszlikowski, and Haibin Ling

Phys. Rev. B 112, 064303 (2025) - Published 6 August, 2025

Field theory of monitored interacting fermion dynamics with charge conservation

Haoyu Guo, Matthew S. Foster, Chao-Ming Jian, and Andreas W. W. Ludwig

Phys. Rev. B 112, 064304 (2025) - Published 12 August, 2025

Entanglement in dual unitary quantum circuits with impurities

Shachar Fraenkel and Colin Rylands

Phys. Rev. B 112, 064305 (2025) - Published 13 August, 2025

Local atomic energy regularization with posterior information optimization in machine-learning interatomic potentials

Yanxiao Hu, Ye Sheng, Jing Huang, Xiaoxin Xu, Yabei Wu, Caichao Ye, Jiong Yang, and Wenqing Zhang

Phys. Rev. B 112, 064306 (2025) - Published 13 August, 2025

Relation between equilibrium quantum phase transitions and dynamical quantum phase transitions in two-band systems

Yumeng Zeng and Shu Chen

Phys. Rev. B 112, 064307 (2025) - Published 13 August, 2025

Nonlinear phononics in Bi2Te3 nanoscale thin films: A theoretical approach

A. Levchuk, R. Busselez, G. Vaudel, P. Ruello, V. Juvé, and B. Arnaud

Phys. Rev. B 112, 064308 (2025) - Published 14 August, 2025

Impact of high-order anharmonicity and nitrogen vacancy defects on the thermal conductivity of MoSi2N4

Zhendong Li, Tao Ouyang, Longwei Han, Zhunyun Tang, Xiaoxia Wang, Juexian Cao, Pei Zhang, Yongshen Yao, and Xiaolin Wei

Phys. Rev. B 112, 064309 (2025) - Published 18 August, 2025

Statistical prethermalization in a randomly kicked many-body classical rotor system

Aritra Kundu, Tanay Nag, and Atanu Rajak

Phys. Rev. B 112, 064310 (2025) - Published 18 August, 2025

Defect-engineering induced ultralow thermal conductivity in the diamondlike compound Cu2HgSnSe4

Peixin Ma, Mingqian Yuan, Yan-Jiong Zhang, Yuling Jin, Yonglong Xue, Yong Zhang, Jia-Zhen Chen, Yang-Yang Lv, Zhihuang Xu, Jianghe Feng, Xue-Jun Yan, Shu-Hua Yao, Jian Zhou, Y. B. Chen, Ming-Hui Lu, and Yan-Feng Chen

Phys. Rev. B 112, 064311 (2025) - Published 19 August, 2025

Nonstabilizerness in the unitary and monitored quantum dynamics of XXZ-staggered and Sachdev-Ye-Kitaev models

Angelo Russomanno, Gianluca Passarelli, Davide Rossini, and Procolo Lucignano

Phys. Rev. B 112, 064312 (2025) - Published 28 August, 2025

Magnetism

Above room temperature multiferroic tunnel junction with the altermagnetic metal CrSb

Long Zhang, Guangxin Ni, Junjie He, and Guoying Gao

Phys. Rev. B 112, 064401 (2025) - Published 1 August, 2025

Competition between terahertz magnetoelectric and Néel spin-orbit torque driven spin dynamics in metallic antiferromagnets

R. M. Dubrovin, A. V. Kimel, and A. K. Zvezdin

Phys. Rev. B 112, 064402 (2025) - Published 4 August, 2025

Determination of ligand field parameters of single-molecule magnets from magnetic susceptibility using deep learning based inverse models

Zayan A. Ali, Julius Mutschler, and Oliver Waldmann

Phys. Rev. B 112, 064403 (2025) - Published 4 August, 2025

Interplay between aging and rejuvenation in spin glasses

J. Freedberg, D. L. Schlagel, R. L. Orbach, and E. Dan Dahlberg

Phys. Rev. B 112, 064404 (2025) - Published 4 August, 2025

Designing nonrelativistic spin splitting in oxide perovskites

Subhadeep Bandyopadhyay, Silvia Picozzi, and Sayantika Bhowal

Phys. Rev. B 112, 064405 (2025) - Published 4 August, 2025

Temperature- and field-induced magnetic phase transitions in BaHoFeO4: A neutron diffraction study

C. H. Prashanth, D. Chandrasekhar Kakarla, Bikash Saha, Abhijit Nayak, C. W. Wang, Ajay Tiwari, H. D. Yang, Shiu-Ming Huang, Mitch M. C. Chou, Anup Kumar Bera, and Krishnamurthy Jyothinagaram

Phys. Rev. B 112, 064406 (2025) - Published 4 August, 2025

Magnetic interactions in (Mo2/3R1/3)2AlC rare-earth iMAX phases (R= Nd, Sm, Gd, Tb, Dy, Ho, and Er) from first principles and experiment

Daniel Potashnikov, El'ad Nisan Caspi, Quanzheng Tao, Johanna Rosen, Denis Cheptyakov, Clemens Ritter, and Oswaldo Diéguez

Phys. Rev. B 112, 064407 (2025) - Published 4 August, 2025

Effective field theory for anisotropic antiferromagnets: Gapped Goldstone bosons, pseudo-Goldstone excitations, and phase transitions

Pier Giuseppe Catinari, Angelo Esposito, and Shashin Pavaskar

Phys. Rev. B 112, 064408 (2025) - Published 5 August, 2025

Thermally quenched metastable phase in the Ising model with competing interactions

Hiroshi Oike, Hidemaro Suwa, Yasunori Takahashi, and Fumitaka Kagawa

Phys. Rev. B 112, 064409 (2025) - Published 6 August, 2025

Spin-wave vortex as a topological probe of magnetic textures

Hongbin Wu and Jin Lan

Phys. Rev. B 112, 064410 (2025) - Published 7 August, 2025

Ferroaxial phonons in chiral and polar NiCo2TeO6

V. A. Martinez, Y. Gao, J. Yang, F. Lyzwa, Z. Liu, C. J. Won, K. Du, V. Kiryukhin, S. W. Cheong, and A. A. Sirenko

Phys. Rev. B 112, 064411 (2025) - Published 7 August, 2025

Quantum wetting transition in the gapped antiferromagnetic XXZ chain

Tianhao He and Xintian Wu

Phys. Rev. B 112, 064412 (2025) - Published 7 August, 2025

Pathways to bubble and skyrmion lattice formation in Fe/Gd multilayers

Tim Titze, Sabri Koraltan, Mailin Matthies, Timo Schmidt, Dieter Suess, Manfred Albrecht, Stefan Mathias, and Daniel Steil

Phys. Rev. B 112, 064413 (2025) - Published 7 August, 2025

Lu/Se substitution effect on magnetic properties of the Yb-based zigzag-chain semiconductor YbCuS2

Fumiya Hori, Hiroyasu Matsudaira, Shunsaku Kitagawa, Kenji Ishida, Souichiro Mizutani, Hirotaka Shirai, and Takahiro Onimaru

Phys. Rev. B 112, 064414 (2025) - Published 7 August, 2025

Insight into spin-to-charge conversion in rutile RuO2

Yanzhang Cao, Da Tian, Lin Huang, Hua Bai, Shixuan Liang, Lei Han, Chong Chen, Yichi Zhang, Lei Wang, Caihong Zhang, Feng Pan, Biaobing Jin, and Cheng Song

Phys. Rev. B 112, 064415 (2025) - Published 7 August, 2025

Spin-to-charge conversion is at the center of spintronics. Here, the authors provide an insight into the dynamical process of spin-to-charge conversion in RuO2 via terahertz emission spectroscopy technique. The dependence of terahertz emission signal on the RuO2 film thickness reveals that the conversion of out-of-plane spin polarization, induced by circularly polarized lasers, occurs simultaneously with the propagation within the film. This study helps advance the understanding of spin-to-charge conversion and the development of z-spin-based ultrafast devices.

Selectively dissipative and coherent couplings mediated by the interaction between antiresonance and multiple magnons

Zhenhui Hao, Yuping Yao, Kang An, Xiling Li, Chi Zhang, and Guozhi Chai

Phys. Rev. B 112, 064416 (2025) - Published 8 August, 2025

Magnetic structure of high-order skyrmion number produced in a nanodisk via micromagnetic simulation with long-range dipole-dipole interaction

Syuta Honda, Hideto Tsuzuki, Hiroyoshi Itoh, and Tomokatsu Ohsawa

Phys. Rev. B 112, 064417 (2025) - Published 8 August, 2025

Anomalous magnetic transition in a disordered quasicrystal approximant with heavy-fermion nature

Takayuki Shiino, Farid Labib, Yuma Hirano, Kazuhiko Deguchi, Keiichiro Imura, Takanori Sugimoto, Satoshi Ohhashi, Nobuhisa Fujita, An-Pang Tsai, and Noriaki K. Sato

Phys. Rev. B 112, 064418 (2025) - Published 11 August, 2025

Tailoring the topological Hall effect in Pt/Co/X(X=Ta,Re) thin films

Brindaban Ojha, Shaktiranjan Mohanty, Bhuvneshwari Sharma, and Subhankar Bedanta

Phys. Rev. B 112, 064419 (2025) - Published 11 August, 2025

Step conductance and spin selectivity in a one-dimensional tailored conical magnet

X. Zotos

Phys. Rev. B 112, 064420 (2025) - Published 11 August, 2025

Magnetic octupole Hall effect in heavy transition metals

Insu Baek, Seungyun Han, and Hyun-Woo Lee

Phys. Rev. B 112, 064421 (2025) - Published 13 August, 2025

Domain wall networks as skyrmion crystals in chiral magnets

Seungho Lee, Toshiaki Fujimori, Muneto Nitta, and Se Kwon Kim

Phys. Rev. B 112, 064422 (2025) - Published 13 August, 2025

Crucial role of electron-phonon scattering in the spin-splitter effect

Ran He, Zhifu Duan, Binghua Lei, Nannan Luo, Jiang Zeng, Ke-Qiu Chen, and Li-Ming Tang

Phys. Rev. B 112, 064423 (2025) - Published 13 August, 2025

Anisotropy of exchange interactions and spin reversal in the compensated ferrimagnet Ni4Nb2O9

E. E. Zubov, I. Fita, R. Puzniak, and A. Wisniewski

Phys. Rev. B 112, 064424 (2025) - Published 14 August, 2025

Altermagnetic splitting of magnons in hematite αFe2O3

Rhea Hoyer, P. Peter Stavropoulos, Aleksandar Razpopov, Roser Valentí, Libor Šmejkal, and Alexander Mook

Phys. Rev. B 112, 064425 (2025) - Published 15 August, 2025

The authors investigate here the influence of spin-orbit coupling corrections on the magnon dispersion relation of the g-wave altermagnet candidate hematite (α-Fe2O3). They show that for both the easy-axis phase below and the weak ferromagnetic phase above the Morin transition temperature, the corrections are concentrated at the Brillouin zone center at low magnon energies, leaving intact the altermagnetic splitting of the magnon modes at higher energies and nonzero crystal momentum. The authors discuss implications for inelastic neutron scattering and magnon transport.

Enhanced low-field anisotropic magnetoresistance in the lightly hole-doped Jeff=1/2 antiferromagnet Sr2IrO4

Bin You, Ni Hu, Honggang Zhu, Yong Liu, and Chengliang Lu

Phys. Rev. B 112, 064426 (2025) - Published 18 August, 2025

Fast magnetization precession and strong perpendicular magnetic anisotropy in ferrimagnetic Mn4N thin films improved by a Pd buffer layer

Yao Zhang, Yun Kim, Peter P. Murmu, Dingbin Huang, Deyuan Lyu, Jian-Ping Wang, Xiaojia Wang, and Simon Granville

Phys. Rev. B 112, 064427 (2025) - Published 18 August, 2025

Tuning the band topology and topological Hall effect in skyrmion crystals via the spin-orbit coupling

Arijit Mandal, S. Satpathy, and B. R. K. Nanda

Phys. Rev. B 112, 064428 (2025) - Published 18 August, 2025

Quantum geometry and magnon Hall transport in an altermagnet

Erlend Syljuåsen, Alireza Qaiumzadeh, and Asle Sudbø

Phys. Rev. B 112, 064429 (2025) - Published 19 August, 2025

The authors derive here an analytic expression for the relevant quantum geometric tensor in systems described by two-band bosonic Bogoliubov Hamiltonians. They apply it to compute magnon Hall conductivities in a two-dimensional altermagnet model. Both the magnon thermal Hall and spin Nernst conductivities are shown to depend directly on the altermagnetic parameter, offering a potential experimental signature of altermagnetism in this setting.

Coexistence of anomalous spin dynamics and weak magnetic order in the chiral trillium lattice K2FeSn(PO4)3

J. Khatua, S. Krishnamoorthi, Changhyun Koo, Gyungbin Ban, Taeyun Kim, Suyoung Kim, Yugo Oshima, Jonas A. Krieger, Thomas J. Hicken, Hubertus Luetkens, Marc Uhlarz, Eundeok Mun, Kyeong Jun Lee, Seo Hyoung Chang, R. Sankar, and Kwang-Yong Choi

Phys. Rev. B 112, 064430 (2025) - Published 20 August, 2025

Elastic quantum criticality in nematics and altermagnets via the elastocaloric effect

Charles R. W. Steward, Grgur Palle, Markus Garst, Jörg Schmalian, and Iksu Jang

Phys. Rev. B 112, 064431 (2025) - Published 21 August, 2025

Temperature-dependent study of the spin dynamics of coupled Y3Fe5O12/Gd3Fe5O12/Pt trilayers

Felix Fuhrmann, Sven Becker, Akashdeep Akashdeep, Gerhard Jakob, Qianqian Lan, Nan Wang, Rafal E. Dunin-Borkowski, Romain Lebrun, Mathias Weiler, and Mathias Kläui

Phys. Rev. B 112, 064432 (2025) - Published 22 August, 2025

The authors unravel here the coupled spin dynamics in Y3Fe5O12/Gd3Fe5O12/Pt trilayers by combining broadband ferromagnetic resonance and spin pumping measurements, supported by micromagnetic simulations. Their work demonstrates strong interlayer coupling, revealing that the GdIG layer governs spin current generation, near its compensation temperature. The system’s highly tunable spin current and coherent dynamics establish a robust platform for investigating magnonic transport and designing complex spintronic devices, such as all-insulating magnon spin valves, across broad temperature and field regimes.

Influence of the Fe/Co ratio on the structural and magnetic properties of FeCoMnAlSi high-entropy alloys with varied Mn content

Z. X. Chen, C. Wang, Z. B. Song, Aditya Jain, H. Z. Zhou, and Y. G. Wang

Phys. Rev. B 112, 064433 (2025) - Published 26 August, 2025

Crystal fields, exchange and dipolar interactions, and noncollinear magnons of erbium oxide

Kian Maleki and Michael E. Flatté

Phys. Rev. B 112, 064434 (2025) - Published 27 August, 2025

Superfluidity and superconductivity

Topological in-gap chiral edge states in the superconducting Haldane model with spin-orbit coupling

Sajid Sekh and Andrzej Ptok

Phys. Rev. B 112, 064501 (2025) - Published 1 August, 2025

Evidence of pair density waves pinned by Zn impurities in Bi2Sr2Ca(Cu1xZnx)2O8+δ

Zhaohui Wang, Jiasen Xu, Han Li, Shengtai Fan, Huan Yang, and Hai-Hu Wen

Phys. Rev. B 112, 064502 (2025) - Published 1 August, 2025

Converting KTeO3 into high-temperature topological superconductors via carrier-doped suppression of Te multivalency

Ze Huang, Zhenyu Zhang, and Ping Cui

Phys. Rev. B 112, 064503 (2025) - Published 4 August, 2025

Voltage-tunable spin supercurrent nonreciprocity reaching 100% efficiency

Chi Sun, Johanne Bratland Tjernshaugen, and Jacob Linder

Phys. Rev. B 112, 064504 (2025) - Published 4 August, 2025

Coexistence of superconductivity and topological band in a van der Waals Sn1xInxBi2Te4 crystal

Hoyeon Jeon, Saban Hus, Jewook Park, Qiangsheng Lu, Seoung-Hun Kang, Mina Yoon, Robert G. Moore, Jiaqiang Yan, Michael A. McGuire, and An-Ping Li

Phys. Rev. B 112, 064505 (2025) - Published 4 August, 2025

The authors demonstrate here the coexistence of superconductivity and topological surface states in the van der Waals single crystals Sn1xInxBi2Te4. Indium doping provides tunability of the superconducting gap size and the Dirac point position. These findings establish the material as a promising platform for exploring topological superconductivity and potential Majorana modes, without the need for complex heterostructures.

Largely enhanced electron-phonon coupling in the superconductors HfRuP and ZrRuAs

Wei Ren, Helin Mei, Zhongchen Xu, Xiang Li, Shaoshuai Hou, Xueying Ma, Mingshu Tan, Shiyu Wang, Jianting Ji, Feng Jin, Youguo Shi, Anmin Zhang, and Qingming Zhang

Phys. Rev. B 112, 064506 (2025) - Published 4 August, 2025

Phonon-mediated superconductivity in magic-strain bilayer graphene

Qingxiang Ji, Bohan Li, Johan Christensen, Changguo Wang, and Muamer Kadic

Phys. Rev. B 112, 064507 (2025) - Published 4 August, 2025

Supermodulation-driven evolution of the nodal structure of bismuth-based cuprate superconductors

M. R. Norman

Phys. Rev. B 112, 064508 (2025) - Published 4 August, 2025

Application of many-body nonperturbative theories to the three-dimensional attractive Hubbard model

Junnian Xiong, Hui Li, Yingze Su, and Dingping Li

Phys. Rev. B 112, 064509 (2025) - Published 4 August, 2025

Optimizing the critical temperature and superfluid density of a metal-superconductor bilayer

Yutan Zhang, Philip M. Dee, Benjamin Cohen-Stead, Thomas A. Maier, Steven Johnston, and Richard Scalettar

Phys. Rev. B 112, 064510 (2025) - Published 5 August, 2025

Doping dependence of the low-temperature planar carrier density in overdoped YBa2Cu3O7δ

R. Nicholls, R. D. H. Hinlopen, J. Ayres, T. Kotte, T. Förster, J. Park, J. Sourd, A. Carrington, and N. E. Hussey

Phys. Rev. B 112, 064511 (2025) - Published 7 August, 2025

A sharp rise in the Hall number near the pseudogap critical point in YBa2Cu3O7δ has often been interpreted as evidence for a quantum critical point (QCP) at a singular doping level p*0.19. Here, the authors revisit this result using high-field transport measurements, revealing that once the chain-induced resistivity anisotropy is accounted for, there is no significant feature in the planar carrier density at p*. The observed gradual crossover from ”p” to ”1+p” carriers now aligns with previously conflicting observations of carrier evolution across the overdoped cuprate phase diagram, presenting a challenge to the conventional QCP scenario.

Optical signatures of Euler superconductors

Chun Wang Chau, Wojciech J. Jankowski, and Robert-Jan Slager

Phys. Rev. B 112, 064512 (2025) - Published 11 August, 2025

Spectroscopic visualization of hard quasi-one-dimensional superconductivity induced in nanowires deposited on a quasi-two-dimensional indium film

Ambikesh Gupta, Pranab Kumar Nag, Shai Kiriati, Samuel D. Escribano, Man Suk Song, Hadas Shtrikman, Yuval Oreg, Nurit Avraham, and Haim Beidenkopf

Phys. Rev. B 112, 064513 (2025) - Published 11 August, 2025

Superconductivity is typically induced in semiconductors through high-quality epitaxial interfaces. However, the authors demonstrate here that a robust superconducting state can be spectroscopically observed in semiconducting nanowires simply by mechanically placing them on an indium substrate. A hard superconducting gap is detected on the nanowire’s top facets, up to 100 nanometers from the physical contact with indium. The induced superconductivity exhibits an anisotropic critical field, characteristic of a one-dimensional superconducting state.

Self-consistent surface superconductivity in time-reversal symmetric Weyl semimetals

Mattia Trama, Viktor Könye, Ion Cosma Fulga, and Jeroen van den Brink

Phys. Rev. B 112, 064514 (2025) - Published 18 August, 2025

High-pressure superconducting phases in quasi-one-dimensional (TaSe4)3I

Yang Zhang, Hongze Zhao, Jie Li, Rucheng Dai, Ziqi Wang, Zhongping Wang, and Zengming Zhang

Phys. Rev. B 112, 064515 (2025) - Published 20 August, 2025

Deep learning assisted exploration of superionic states and melting temperatures in Li-Sn superconductors

Xinwei Wang, Bohan Cao, Mengxin Yang, Haobo Li, Xiaohan Wang, Defang Duan, Liang Li, Fubo Tian, and Tian Cui

Phys. Rev. B 112, 064516 (2025) - Published 28 August, 2025

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