Browse Issues:

HIGHLIGHTED ARTICLES

Spin-dependent force from an NV center ensemble on a microlever

Maxime Perdriat, Alrik Durand, Louis Chambard, Julien Voisin, and Gabriel Hétet

Phys. Rev. B 112, 094419 (2025) - Published 9 September, 2025

The authors demonstrate here that a micromechanical lever can be actuated using the electronic spin associated with defects in diamond. By exploiting the spin-dependent forces generated by optically and magnetically driven transitions, they convert spin dynamics into measurable mechanical motion. This coupling between solid-state spin systems and mechanical resonators opens new avenues for hybrid quantum technologies, enabling precision sensing, spin-based control of mechanical systems, and potentially the development of spin-mechanical interfaces for quantum information processing.

Dielectric softening in the halide double perovskites A2Au2X6 (A= Cs, Rb; X= Cl, Br, I) via a strain-mediated pseudotriggered mechanism

Urmimala Dey, Jordan A. R. Cowell, and Nicholas C. Bristowe

Phys. Rev. B 112, 094102 (2025) - Published 2 September, 2025

The authors uncover here a previously unreported polar phase in gold halide double perovskites, where the softening of a polar mode arises via an unconventional strain-mediated pseudo-triggered mechanism. This discovery reveals a new class of ferroelectric phase transition and suggests a broadly applicable route to enhance dielectric response in lead-free perovskites, with promising implications for photovoltaic and ultrafast device applications.

Tuning the quantum Mpemba effect in an isolated system by initial-state engineering

Yi-Han Yu, Tian-Ren Jin, Lv Zhang, Kai Xu, and Heng Fan

Phys. Rev. B 112, 094315 (2025) - Published 25 September, 2025

The authors report here a novel method to control the quantum Mpemba effect, where a system far from equilibrium relaxes faster than a closer one. By preparing specific initial states, they can trigger the effect on demand, dramatically speeding up relaxation. They also design a simple quantum circuit for experimental verification on current simulators, providing a practical tool for manipulating quantum dynamics and advancing quantum technologies.

Tunneling magnetoresistance effect in altermagnets

Yu-Fei Sun, Yue Mao, Yu-Chen Zhuang, and Qing-Feng Sun

Phys. Rev. B 112, 094411 (2025) - Published 5 September, 2025

Altermagnetism, as a newly identified unconventional magnetic phase, has attracted great interest in condensed matter physics and provides a novel research platform for spintronics. Here, the authors theoretically study the tunneling magnetoresistance (TMR) effect and its transport properties in a universal altermagnetic sandwich device. They systematically investigate how the altermagnetic orientations affect the conductance and TMR ratio, together with the rich and intriguing underlying symmetry relations. This work introduces a new design perspective for the next-generation information and paves the way for the advancement of spintronics technologies.

Directional entanglement of spin-orbit locked nitrogen-vacancy centers by magnons

Zhiping Xue, Ji Zou, Chengyuan Cai, Gerrit E. W. Bauer, and Tao Yu

Phys. Rev. B 112, 094438 (2025) - Published 19 September, 2025

Nitrogen vacancy (NV) centers in diamond may serve as qubits in quantum information processing. Two NV centers are indirectly coupled by the exchange of magnons in a magnetic substrate. The authors predict here that the chirality of this coupling leads to unidirectional quantum entanglement of the NV center spins, offering the new functionality of entanglement isolation.

Spontaneous magnon decays from nonrelativistic time-reversal symmetry breaking in altermagnets

Rintaro Eto, Matthias Gohlke, Jairo Sinova, Masahito Mochizuki, Alexander L. Chernyshev, and Alexander Mook

Phys. Rev. B 112, 094442 (2025) - Published 22 September, 2025

The authors report here the fundamental insight that magnons in altermagnets can spontaneously decay. Unconventional time-reversal symmetry breaking and spin splitting in altermagnets open decay channels absent in ferromagnets and antiferromagnets. Using kinematic analysis, nonlinear spin-wave theory, and quantum simulations, they show that even weak band splitting can destabilize quasiparticles. These findings establish a quasiparticle stability trichotomy in collinear Heisenberg magnets and highlight altermagnets as a promising platform for exploring unconventional spin dynamics.

Magnetic order and Li diffusion in the 13-filled kagome layers of the antiperovskite lithium-ion battery materials (Li2Fe)SO and (Li2Fe)SeO

F. Seewald, T. Schulze, N. Gräßler, F. L. Carstens, L. Singer, M. A. A. Mohamed, S. Hampel, B. Büchner, R. Klingeler, H.-H. Klauss, and H.-J. Grafe

Phys. Rev. B 112, 094443 (2025) - Published 22 September, 2025

The lithium-rich antiperovskites (Li2Fe)SeO and (Li2Fe)SO host nonmagnetic lithium and magnetic iron on the same atomic position. These sites form a 3-D network of triangles with geometric frustration in the diluted antiferromagnetic lattice. Here, the authors perform magnetization, Mössbauer, and NMR studies that reveal a long-range antiferromagnetically ordered ground state below T ≈ 50 K and a regime of short-range magnetic correlations up to 100 K. The results are consistent with a random Li-Fe distribtion on the shared lattice position. In addition, Li-hopping is observed above 200 K with an activation energy of Ea = 0.47 eV.

Magnetic structure and crystal field states of the heavy fermion system YbPt5B2

Leonid Salamakha, Oksana Sologub, Herwig Michor, Dmitry Khalyavin, Manh Duc Le, Devashibhai T. Adroja, and Ernst Bauer

Phys. Rev. B 112, 094453 (2025) - Published 26 September, 2025

By means of elastic (NPD) and inelastic neutron (INS) scattering experiments, the authors explore here the magnetic structure and the impact of crystalline electric field (CEF) effects in ternary YbPt5B2. A commensurate antiferromagnetic phase was derived below 4.7 K, separated by a first order phase transition from an incommensurate phase at 4.7T7.8 K. The CEF and coexisting Kondo interactions in this heavy fermion compound arrange a hierarchy of magnetic moments, from the free ion value (m(Yb3+)=4μB) to the CEF driven score, mYbCEF=3.55μB and finally to mYbNPD=3.04μB owing to the demagnifying impact of the Kondo effect.

Strain-controlled g- to d-wave transition in altermagnetic CrSb

Bennet Karetta, Xanthe H. Verbeek, Rodrigo Jaeschke-Ubiergo, Libor Šmejkal, and Jairo Sinova

Phys. Rev. B 112, 094454 (2025) - Published 26 September, 2025

d-wave altermagnets allow for the generation of pure spin currents, a process vital for spintronics, without the need for spin-orbit coupling. Here, the authors show that through strain manipulation, this functionality can be induced in g-wave altermagnets, where it is otherwise forbidden. Through symmetry analysis, minimal modeling, and first-principles calculations, the authors identify three strain directions producing d-wave spin splitting in g-wave CrSb, with significant spin-splitter currents as a consequence, highlighting strain as an effective tool to engineer altermagnetic properties.

EuAuSb: An odd-parity helical variation of altermagnetism

J. Sears, Juntao Yao, Zhixiang Hu, Wei Tian, Niraj Aryal, Weiguo Yin, A. M. Tsvelik, I. A. Zaliznyak, Qiang Li, and J. M. Tranquada

Phys. Rev. B 112, 094455 (2025) - Published 26 September, 2025

The authors present here neutron diffraction measurements identifying a helical magnetic order in the Dirac semimetal EuAuSb. In a magnetic field, the sample undergoes a first-order incommensurate to commensurate transition before entering the field polarized state. Electronic structure calculations show the importance of symmetry breaking by the magnetic order, as bands near the Fermi level lose their spin degeneracy via a mechanism similar to that in the collinear altermagnets. Unlike the even symmetry seen in the altermagnets, splitting in EuAuSb has odd-wave symmetry, similar to several other recently reported coplanar magnetic materials.

Josephson diode effect from nonequilibrium current in a superconducting interferometer

Daniel Shaffer, Songci Li, Jaglul Hasan, Mikhail Titov, and Alex Levchenko

Phys. Rev. B 112, 094509 (2025) - Published 11 September, 2025

This paper demonstrates a concept of nonequilibrium Josephson diode effect in a symmetric superconducting interferometer. Driven out of equilibrium by a dissipative current in the normal region, this system exhibits nonreciprocal supercurrents without needing broken inversion symmetry. The authors show this effect can exceed its ideal value, creating a “supra-perfect” diode that allows supercurrent to flow in only one direction above a certain threshold

Prediction and synthesis of Mg4Pt3H6: A superconducting complex transition metal hydride stabilized at ambient pressure

Wencheng Lu, Michael J. Hutcheon, Mads F. Hansen, Kapildeb Dolui, Shubham Sinha, Mihir R. Sahoo, Chris J. Pickard, Christoph Heil, Anna Pakhomova, Mohamed Mezouar, Dominik Daisenberger, Stella Chariton, Vitali Prakapenka, Matthew N. Julian, Rohit P. Prasankumar, and Timothy A. Strobel

Phys. Rev. B 112, 094513 (2025) - Published 18 September, 2025

Ternary transition-metal complex hydrides—traditionally regarded as hydrogen storage materials—provide a broad chemical space stabilized at low pressures. Here, a previously unknown complex hydride, Mg4Pt3H6, is synthesized under moderate pressures, based on high-throughput calculations. Structural analysis confirms the structure, and electrical transport measurements indicate ambient-pressure superconductivity with Tc 2.9 K, in agreement with predictions. These findings establish an emerging family of ambient-stable hydride superconductors, enriching ternary hydride chemistry and offering guidance for the design of hydrogen-rich superconductors.

ARTICLES

Structure, structural phase transitions, mechanical properties, defects

Effects of the compression rates on the lattice parameters in Zn investigated by dynamic diamond anvil cell

C. Plueckthun, J. M. Kaa, N. Giordano, R. Husband, M. Schoelmerich, S. Merkel, R. Redmer, and Z. Konopkova

Phys. Rev. B 112, 094101 (2025) - Published 2 September, 2025

Dielectric softening in the halide double perovskites A2Au2X6 (A= Cs, Rb; X= Cl, Br, I) via a strain-mediated pseudotriggered mechanism

Urmimala Dey, Jordan A. R. Cowell, and Nicholas C. Bristowe

Phys. Rev. B 112, 094102 (2025) - Published 2 September, 2025

The authors uncover here a previously unreported polar phase in gold halide double perovskites, where the softening of a polar mode arises via an unconventional strain-mediated pseudo-triggered mechanism. This discovery reveals a new class of ferroelectric phase transition and suggests a broadly applicable route to enhance dielectric response in lead-free perovskites, with promising implications for photovoltaic and ultrafast device applications.

Quantum Newman-Moore model in a longitudinal field

Konstantinos Sfairopoulos and Juan P. Garrahan

Phys. Rev. B 112, 094103 (2025) - Published 3 September, 2025

Tuned ionic mobility by ultrafast laser pulses in black silicon

Christelle Inès K. Mebou, Martin E. Garcia, and Tobias Zier

Phys. Rev. B 112, 094104 (2025) - Published 4 September, 2025

Subspace symmetry for Bloch electrons

Hai-Yang Ma, Shihao Zhang, Yuanyuan Zhao, Zhicheng Jiang, Hu Xu, and Jin-Feng Jia

Phys. Rev. B 112, 094105 (2025) - Published 10 September, 2025

Equation of state of boron carbide B4C

Joshua D. Coe, Ching-Fong Chen, Carl W. Greeff, Dana M. Dattelbaum, J. Tinka Gammel, Brianna L. Musicó, Chad A. McCoy, Pat Kalita, Brittany A. Branch, and John Carpenter

Phys. Rev. B 112, 094106 (2025) - Published 15 September, 2025

High-pressure melting and elastic behavior of vanadium and niobium based on ab initio calculations and machine learning molecular dynamics

Hao Wang, Dan Wang, Long Hao, Jun Li, and Hua Y. Geng

Phys. Rev. B 112, 094108 (2025) - Published 16 September, 2025

Electrically switchable ferrovalleytricity in multiferroic heterobilayers

Yangyang Feng, Xinru Li, Ying Dai, Baibiao Huang, and Yandong Ma

Phys. Rev. B 112, 094109 (2025) - Published 17 September, 2025

Large barocaloric effect in metal-organic frameworks driven by geometrical frustration

Chang Niu, Xiong Xu, Bingyuan Zhao, Min Li, and Hui Wang

Phys. Rev. B 112, 094110 (2025) - Published 18 September, 2025

Prediction of a two-dimensional anisotropic Dirac semimetal carbon allotrope with high strength and quasi-one-dimensional transport

Wei Ma, Zhao Yang, Dengpang Ma, Zhiheng Lv, and Zhifeng Liu

Phys. Rev. B 112, 094111 (2025) - Published 18 September, 2025

Ferrimagnetism induced by thermal vibrations in oxygen-deficient manganite heterostructures

Moloud Kaviani, Chiara Ricca, and Ulrich Aschauer

Phys. Rev. B 112, 094113 (2025) - Published 23 September, 2025

Ambient pressure and size-tunable layered polynitride structures constructed from fourfold coordinated C2N8 cages

Dong-Xue Wang (王冬雪), Shuang Liu (刘爽), Zhen Yao (姚震), and Bing-Bing Liu (刘冰冰)

Phys. Rev. B 112, 094114 (2025) - Published 24 September, 2025

Optical control of the crystal structure in the bilayer nickelate superconductor La3Ni2O7 via nonlinear phononics

Shu Kamiyama, Tatsuya Kaneko, Kazuhiko Kuroki, and Masayuki Ochi

Phys. Rev. B 112, 094115 (2025) - Published 25 September, 2025

Distinction between ice phases VII, VIII, and X

Graeme J. Ackland, Andreas Hermann, Kazuki Komatsu, Keishiro Yamashita, and J. S. Loveday

Phys. Rev. B 112, 094116 (2025) - Published 25 September, 2025

Temperature anomaly of the VSi and VC vacancy spin coherence time in 4H-SiC

P. Chrostoski, Ifeanyi Innocent Onwosi, and D. H. Santamore

Phys. Rev. B 112, 094117 (2025) - Published 29 September, 2025

Inhomogeneous, disordered, and partially ordered systems

Symmetry- and energy-resolved entanglement dynamics in a disordered Bose-Hubbard model

Jie Chen, Chun Chen, and Xiaoqun Wang

Phys. Rev. B 112, 094201 (2025) - Published 2 September, 2025

Logarithmic light cone, slow entanglement growth, and quantum memory

Yu Zeng, Alioscia Hamma, Yu-Ran Zhang, Qiang Liu, Rengang Li, Heng Fan, and Wu-Ming Liu

Phys. Rev. B 112, 094202 (2025) - Published 12 September, 2025

Mechanism of defect formation in the quantum annealing of the random transverse-field Ising chain

Róbert Juhász

Phys. Rev. B 112, 094203 (2025) - Published 17 September, 2025

Global and local topological crystalline markers for rotation-symmetric insulators

Saavanth Velury, Yoonseok Hwang, and Taylor L. Hughes

Phys. Rev. B 112, 094204 (2025) - Published 17 September, 2025

Thermal transport in amorphous carbon nanotubes

Nianjie Liang, Alfredo Fiorentino, and Bai Song

Phys. Rev. B 112, 094205 (2025) - Published 22 September, 2025

Anomalous energy correlations and spectral form factor in the nonergodic phase of the β ensemble

Basudha Roy, Adway Kumar Das, Anandamohan Ghosh, and Ivan M. Khaymovich

Phys. Rev. B 112, 094206 (2025) - Published 23 September, 2025

On-the-fly machine learning augmented constrained ab initio molecular dynamics to design routes from glassy carbon to quenchable amorphous diamond

Mengqi Cheng, Weidong Luo, and Hong Sun

Phys. Rev. B 112, 094207 (2025) - Published 29 September, 2025

Dynamics, dynamical systems, lattice effects

Giant rotational speed induced by symmetry-selective focusing

Yiyun Chen, Dongyong Wang, Xixi Zhang, Xiao Li, Jun Chen, Zhifang Lin, and Jack Ng

Phys. Rev. B 112, 094301 (2025) - Published 2 September, 2025

Late-time ensembles of quantum states in quantum chaotic systems

Souradeep Ghosh, Christopher M. Langlett, Nicholas Hunter-Jones, and Joaquin F. Rodriguez-Nieva

Phys. Rev. B 112, 094302 (2025) - Published 2 September, 2025

How chiral vibrations drive molecular rotation

Ivan Pasqua, Gregorio Staffieri, and Michele Fabrizio

Phys. Rev. B 112, 094303 (2025) - Published 4 September, 2025

Integrals of motion as slow modes in dissipative many-body operator dynamics

Tian-Hua Yang and Dmitry A. Abanin

Phys. Rev. B 112, 094304 (2025) - Published 8 September, 2025

Non-Abelian geometry, topology, and dynamics of a nonreciprocal Su-Schrieffer-Heeger ladder

Ziyu Zhou, Zhi-Cong Xu, and Li-Jun Lang

Phys. Rev. B 112, 094305 (2025) - Published 9 September, 2025

Phonon thermal transport in strained monolayer graphene: Role of four-phonon and normal scattering

Cheng Xu, Kaile Chen, Xin Jin, Dengfeng Li, and Xiaolong Yang

Phys. Rev. B 112, 094306 (2025) - Published 9 September, 2025

Theory of infrared magneto-optical effects from chiral phonons in solids

Chiara Fiorazzo, Cheol-Hwan Park, Ivo Souza, and Matteo Calandra

Phys. Rev. B 112, 094307 (2025) - Published 9 September, 2025

Photoinduced directional propagation of a local structural transition along the dimer chains in NbO2

Feng-Wu Guo, Wen-Hao Liu, Zhi Wang, Shu-Shen Li, Lin-Wang Wang, and Jun-Wei Luo

Phys. Rev. B 112, 094308 (2025) - Published 10 September, 2025

Error bounds on the universal Lindblad equation in the thermodynamic limit

Teruhiro Ikeuchi and Takashi Mori

Phys. Rev. B 112, 094309 (2025) - Published 12 September, 2025

First-principles study on anomalously high thermal conductivities in trirutile ternary oxides

XiaoYun Guo, BoCheng Lei, LiLi Zhang, YiNeng Huang, and Jian Zhou

Phys. Rev. B 112, 094310 (2025) - Published 15 September, 2025

Engineering harmonic emission through spatial modulation in a Kitaev chain

R. Nivash, S. Srinidhi, Jayendra N. Bandyopadhyay, and Amol R. Holkundkar

Phys. Rev. B 112, 094311 (2025) - Published 17 September, 2025

Theory of terahertz pulse transmission through ferroelectric nanomembranes

Yujie Zhu, Aiden Ross, Xiangwei Guo, Venkatraman Gopalan, Long-Qing Chen, and Jia-Mian Hu

Phys. Rev. B 112, 094312 (2025) - Published 18 September, 2025

Damping variation of the magnetic resonances in CrSBr induced by magnetization states

Jianshu Xue, Bingbing Lyu, Yitong Sun, Jinwei Rao, Shishen Yan, and Lihui Bai

Phys. Rev. B 112, 094313 (2025) - Published 19 September, 2025

Nonequilibrium dynamics in a quantum spin chain with pump-probe resonant inelastic x-ray scattering

Menglian Shi, Zhengzhong Du, and Yi Lu

Phys. Rev. B 112, 094314 (2025) - Published 23 September, 2025

Tuning the quantum Mpemba effect in an isolated system by initial-state engineering

Yi-Han Yu, Tian-Ren Jin, Lv Zhang, Kai Xu, and Heng Fan

Phys. Rev. B 112, 094315 (2025) - Published 25 September, 2025

The authors report here a novel method to control the quantum Mpemba effect, where a system far from equilibrium relaxes faster than a closer one. By preparing specific initial states, they can trigger the effect on demand, dramatically speeding up relaxation. They also design a simple quantum circuit for experimental verification on current simulators, providing a practical tool for manipulating quantum dynamics and advancing quantum technologies.

Interaction-induced flat-band localization transition in a nonreciprocal rhombic lattice

Lei Wang, Chaohua Wu, Xuewei Zhang, Juan Kang, and Gang Chen

Phys. Rev. B 112, 094316 (2025) - Published 26 September, 2025

Magnetism

Variational simulation of quantum phase transitions induced by boundary fields

Alan Duriez, Andreia Saguia, and Marcelo S. Sarandy

Phys. Rev. B 112, 094401 (2025) - Published 2 September, 2025

Spin dynamics in natural multiferroic pyroxene NaFeSi2O6

Oleksandr Prokhnenko, Stanislav E. Nikitin, Koji Kaneko, Chihiro Tabata, Yusuke Hirose, Yoshifumi Tokiwa, Yoshinori Haga, Masaki Fujita, Hiroyuki Nojiri, Lawrence M. Anovitz, and Andrey Podlesnyak

Phys. Rev. B 112, 094402 (2025) - Published 2 September, 2025

Direct probe of magnetic field effects on phonons by ultrasound propagation in the quasi-two-dimensional honeycomb magnet Na2Co2TeO6

Xiaochen Hong, Maximilian Schiffer, Beat Valentin Schwarze, Marc Uhlarz, Xianghong Jin, Weiliang Yao, Lukas Janssen, Sergei Zherlitsyn, Bernd Büchner, Yuan Li, Young Sun, and Christian Hess

Phys. Rev. B 112, 094403 (2025) - Published 2 September, 2025

Unified bonding entropy model to determine magnetic properties in graphene nanoflakes

Chang-Chun He, Jiarui Zeng, Yu-Jun Zhao, and Xiao-Bao Yang

Phys. Rev. B 112, 094404 (2025) - Published 2 September, 2025

High-field NMR study of field-induced states in Pb(TiO)Cu4(PO4)4

Y. Ihara, T. Kanda, K. Matsui, K. Kindo, Y. Kohama, Y. Kato, Y. Motome, T. Kimura, and K. Kimura

Phys. Rev. B 112, 094405 (2025) - Published 3 September, 2025

Interacting Dirac magnons in the van der Waals ferromagnet CrBr3

Saikat Banerjee and Stephan Humeniuk

Phys. Rev. B 112, 094407 (2025) - Published 4 September, 2025

Reciprocal exchange bias and exchange spring effects in the Heisenberg antiferromagnet RbMnF3 interfaced with a permalloy film

J. D. M. de Lima, E. C. Souza, F. L. A. Machado, and S. M. Rezende

Phys. Rev. B 112, 094408 (2025) - Published 4 September, 2025

Out-of-equilibrium microstates but effective thermodynamics in artificial kagome ice networks

Breno Malvezzi Cecchi, Sébastien Lacaze, Ondřej Brunn, Stanislav Krátký, Petr Meluzín, Johann Coraux, Kleber Roberto Pirota, and Nicolas Rougemaille

Phys. Rev. B 112, 094409 (2025) - Published 5 September, 2025

Interplay between trimer structure and magnetic ground state in Ba5Ru3O12 probed by neutron and μSR techniques

E. Kushwaha, S. Ghosh, J. Sannigrahi, G. Roy, M. Kumar, S. Cottrell, M. B. Stone, Y. Fang, D. T. Adroja, X. Ke, and T. Basu

Phys. Rev. B 112, 094410 (2025) - Published 5 September, 2025

Tunneling magnetoresistance effect in altermagnets

Yu-Fei Sun, Yue Mao, Yu-Chen Zhuang, and Qing-Feng Sun

Phys. Rev. B 112, 094411 (2025) - Published 5 September, 2025

Altermagnetism, as a newly identified unconventional magnetic phase, has attracted great interest in condensed matter physics and provides a novel research platform for spintronics. Here, the authors theoretically study the tunneling magnetoresistance (TMR) effect and its transport properties in a universal altermagnetic sandwich device. They systematically investigate how the altermagnetic orientations affect the conductance and TMR ratio, together with the rich and intriguing underlying symmetry relations. This work introduces a new design perspective for the next-generation information and paves the way for the advancement of spintronics technologies.

Piezomagnetism-driven magnetoelectric coupling in altermagnetic multiferroic K3Cr2F7

Ying Zhou, Hui-Min Zhang, Cheng-Ao Ji, Hongjun Xiang, Shuai Dong, James M. Rondinelli, and Xue-Zeng Lu

Phys. Rev. B 112, 094412 (2025) - Published 5 September, 2025

Microwave-to-optical quantum transduction with antiferromagnets

Akihiko Sekine, Ryo Murakami, and Yoshiyasu Doi

Phys. Rev. B 112, 094413 (2025) - Published 5 September, 2025

Prediction of pulsed laser control of sliding tunneling magnetoresistance in bilayer VCl2

Xiaolin Zhang, Ruiqing Cheng, Sicong Zhu, Bin Liu, Yao Wen, Lei Yin, and Jun He

Phys. Rev. B 112, 094414 (2025) - Published 8 September, 2025

Real space imaging of dipole-stabilized hybrid skyrmions in magnetic multilayer thin films

W. S. Parker, J. Reddinger, R. Moraski, E. E. Fullerton, S. A. Montoya, and B. J. McMorran

Phys. Rev. B 112, 094415 (2025) - Published 8 September, 2025

Scaling of disorder operator and entanglement entropy at easy-plane deconfined quantum criticalities

Jiarui Zhao, Zi Yang Meng, Yan-Cheng Wang, and Nvsen Ma

Phys. Rev. B 112, 094416 (2025) - Published 8 September, 2025

Scattering theory of chiral edge modes in topological magnon insulators

Stefan Birnkammer, Michael Knap, Johannes Knolle, Alexander Mook, and Alvise Bastianello

Phys. Rev. B 112, 094417 (2025) - Published 9 September, 2025

Intrinsic Berry phase contribution to Hall conductivity in CoS2

Tamal Kumar Dalui, Hari Paudyal, Durga Paudyal, and Ramesh C Budhani

Phys. Rev. B 112, 094418 (2025) - Published 9 September, 2025

Spin-dependent force from an NV center ensemble on a microlever

Maxime Perdriat, Alrik Durand, Louis Chambard, Julien Voisin, and Gabriel Hétet

Phys. Rev. B 112, 094419 (2025) - Published 9 September, 2025

The authors demonstrate here that a micromechanical lever can be actuated using the electronic spin associated with defects in diamond. By exploiting the spin-dependent forces generated by optically and magnetically driven transitions, they convert spin dynamics into measurable mechanical motion. This coupling between solid-state spin systems and mechanical resonators opens new avenues for hybrid quantum technologies, enabling precision sensing, spin-based control of mechanical systems, and potentially the development of spin-mechanical interfaces for quantum information processing.

Quantum phase with spontaneous translational symmetry breaking in an extended diamond chain

H. Yamaguchi, S. C. Furuya, Y. Tominaga, A. Matsuo, and K. Kindo

Phys. Rev. B 112, 094420 (2025) - Published 9 September, 2025

TbPt6Al3: A rare-earth based g-wave altermagnet with a honeycomb structure

R. Oishi, T. Taniguchi, D. T. Adroja, M. D. Le, M. Aouane, T. Onimaru, K. Umeo, I. Ishii, and T. Takabatake

Phys. Rev. B 112, 094421 (2025) - Published 10 September, 2025

Magnon and photon blockade in a hybrid antiferromagnet-cavity quantum system

Vemund Falch, Arne Brataas, and Alireza Qaiumzadeh

Phys. Rev. B 112, 094422 (2025) - Published 11 September, 2025

Two-channel multi-impurity Kondo model: RKKY-induced criticality

A. M. Tsvelik and G. Kotliar

Phys. Rev. B 112, 094423 (2025) - Published 11 September, 2025

Spin-orbit torque driven motion of chiral domain walls induced by radial magnetization in nanotube geometry

Nobuyuki Umetsu, Hiroki Tokuhira, Michael Quinsat, Hideto Horii, Tsuyoshi Kondo, and Masaki Kado

Phys. Rev. B 112, 094425 (2025) - Published 11 September, 2025

Macroscopic ground state degeneracy of the Heisenberg model with ferromagnetic and antiferromagnetic interactions on diamond-decorated lattices

D. V. Dmitriev, V. Ya. Krivnov, and O. A. Vasilyev

Phys. Rev. B 112, 094426 (2025) - Published 12 September, 2025

Origin of ferromagnetism and trends in Berry curvature driven anomalous Hall conductivity in the metallic rare-earth antimonides RCrSb3 (R = La, Ce, Nd)

Arnab Paul, Samir Rom, Prabuddha Sanyal, and Tanusri Saha Dasgupta

Phys. Rev. B 112, 094427 (2025) - Published 12 September, 2025

Clocking emergent magnetic monopoles in square artificial spin ice

Dheerendra S. Bhandari, Anders Strømberg, Ida Breivik, Arthur Penty, Johannes H. Jensen, Michael Foerster, Gunnar Tufte, and Erik Folven

Phys. Rev. B 112, 094428 (2025) - Published 16 September, 2025

Micromagnetic study of subterahertz oscillations in easy-plane antiferromagnets driven by spin Hall effect

Anastasia Petrova, Artem Matveev, Ansar Safin, and Sergey Nikitov

Phys. Rev. B 112, 094429 (2025) - Published 16 September, 2025

Bilayer triple-Q state driven by interlayer higher-order exchange interactions

Bjarne Beyer, Mara Gutzeit, Tim Drevelow, Isabel Schwermer, Soumyajyoti Haldar, and Stefan Heinze

Phys. Rev. B 112, 094430 (2025) - Published 16 September, 2025

Low-temperature state of the spin-ice material Dy2Ti2O7: Reverse Monte Carlo investigation

M. Marziali Bermúdez, R. A. Borzi, D. A. Tennant, and S. A. Grigera

Phys. Rev. B 112, 094431 (2025) - Published 16 September, 2025

Single-laser pulse toggle switching in CoHo and CoDy single-layer alloys: When domain wall motion matters

B. Kunyangyuen, G. Malinowski, D. Lacour, J.-X. Lin, Y. Le Guen, L. D. Buda-Prejbeanu, S. Mangin, J. Gorchon, J. Hohlfeld, and M. Hehn

Phys. Rev. B 112, 094432 (2025) - Published 16 September, 2025

High-frequency susceptibility tensor in the inertial regime: Prediction for subterahertz magnonics in ferromagnets

Jonas Wiemeler, Michael Farle, and Anna S. Semisalova

Phys. Rev. B 112, 094433 (2025) - Published 17 September, 2025

Comparative study of terbium tellurides Tb2Te5 and TbTe3

I. Shamova, J.-Y. Sun, X.-Y. Chang, V. Popova, D. Chareev, L. Shvanskaya, D. Ksenofontov, A. Vorobyova, K. Lyssenko, A. Demidov, H.-Y. Yeh, W.-Y. Tzeng, J.-Y. Lin, C.-W. Luo, P. Monceau, E. Pachaud, E. Lorenzo, A. Sinchenko, A. Vasiliev, and O. Volkova

Phys. Rev. B 112, 094434 (2025) - Published 17 September, 2025

Magnetic monopole relaxation effects in spin ice Dy2Ti2O7

R. Edberg, A. Khansili, I. M. Fjellvåg, L. Ørduk Sandberg, P. P. Deen, K. Lefmann, P. Henelius, and A. Rydh

Phys. Rev. B 112, 094435 (2025) - Published 17 September, 2025

Emergent quasiparticles of the spin1 trimer chain

Manodip Routh, Anutosh Biswas, and Manoranjan Kumar

Phys. Rev. B 112, 094436 (2025) - Published 17 September, 2025

Origin of ferromagnetism in a two-dimensional dilute magnetic semiconductor hCoxZn1xO

Shashank Chaturvedi and Umesh V. Waghmare

Phys. Rev. B 112, 094437 (2025) - Published 18 September, 2025

Directional entanglement of spin-orbit locked nitrogen-vacancy centers by magnons

Zhiping Xue, Ji Zou, Chengyuan Cai, Gerrit E. W. Bauer, and Tao Yu

Phys. Rev. B 112, 094438 (2025) - Published 19 September, 2025

Nitrogen vacancy (NV) centers in diamond may serve as qubits in quantum information processing. Two NV centers are indirectly coupled by the exchange of magnons in a magnetic substrate. The authors predict here that the chirality of this coupling leads to unidirectional quantum entanglement of the NV center spins, offering the new functionality of entanglement isolation.

Critical phenomenon and two-dimensional Ising magnetic coupling in the chiral magnetic soliton host Mn1/3TaS2

Jingjing Ma, Fanying Meng, Wei Liu, Min Ge, Aina Wang, Langsheng Ling, Jiyu Fan, Chunlan Ma, Li Pi, Zhe Qu, and Lei Zhang

Phys. Rev. B 112, 094439 (2025) - Published 19 September, 2025

Differentiating anomalous and topological Hall effects using first-order reversal curve measurements

Gregory M. Stephen, Ryan T. Van Haren, Vinay Sharma, Lixuan Tai, Bingqian Dai, Hang Chi, Kang L. Wang, Aubrey T. Hanbicki, and Adam L. Friedman

Phys. Rev. B 112, 094440 (2025) - Published 22 September, 2025

Twisted surface magnons induced by magnon spin-orbit coupling

Zhi-ming Yan, Zhi-xiong Li, Xi-guang Wang, Xiufeng Han, and Guang-hua Guo

Phys. Rev. B 112, 094441 (2025) - Published 22 September, 2025

Spontaneous magnon decays from nonrelativistic time-reversal symmetry breaking in altermagnets

Rintaro Eto, Matthias Gohlke, Jairo Sinova, Masahito Mochizuki, Alexander L. Chernyshev, and Alexander Mook

Phys. Rev. B 112, 094442 (2025) - Published 22 September, 2025

The authors report here the fundamental insight that magnons in altermagnets can spontaneously decay. Unconventional time-reversal symmetry breaking and spin splitting in altermagnets open decay channels absent in ferromagnets and antiferromagnets. Using kinematic analysis, nonlinear spin-wave theory, and quantum simulations, they show that even weak band splitting can destabilize quasiparticles. These findings establish a quasiparticle stability trichotomy in collinear Heisenberg magnets and highlight altermagnets as a promising platform for exploring unconventional spin dynamics.

Magnetic order and Li diffusion in the 13-filled kagome layers of the antiperovskite lithium-ion battery materials (Li2Fe)SO and (Li2Fe)SeO

F. Seewald, T. Schulze, N. Gräßler, F. L. Carstens, L. Singer, M. A. A. Mohamed, S. Hampel, B. Büchner, R. Klingeler, H.-H. Klauss, and H.-J. Grafe

Phys. Rev. B 112, 094443 (2025) - Published 22 September, 2025

The lithium-rich antiperovskites (Li2Fe)SeO and (Li2Fe)SO host nonmagnetic lithium and magnetic iron on the same atomic position. These sites form a 3-D network of triangles with geometric frustration in the diluted antiferromagnetic lattice. Here, the authors perform magnetization, Mössbauer, and NMR studies that reveal a long-range antiferromagnetically ordered ground state below T ≈ 50 K and a regime of short-range magnetic correlations up to 100 K. The results are consistent with a random Li-Fe distribtion on the shared lattice position. In addition, Li-hopping is observed above 200 K with an activation energy of Ea = 0.47 eV.

Exchange interactions, anisotropy, and low-temperature magnetization reversal in NdFeO3

Amit Kumar, A. K. Bera, Christian Balz, Ivan da Silva, and S. M. Yusuf

Phys. Rev. B 112, 094444 (2025) - Published 22 September, 2025

Cavity-assisted magnetization switching in a quantum spin-phonon chain

Mohsen Yarmohammadi, Peter M. Oppeneer, and James K. Freericks

Phys. Rev. B 112, 094445 (2025) - Published 23 September, 2025

Origin of anomalous Raman relaxation in [Gd(H2O)6Cl2]Cl

M. Orendáč, H. Titikov, R. Tarasenko, E. Čižmár, A. Orendáčová, L. Krešáková, and J. Černák

Phys. Rev. B 112, 094446 (2025) - Published 24 September, 2025

Field-free perpendicular magnetization switching by altermagnets with collinear spin current

M. Q. Dong, Zhi-Xin Guo, and Xin-Gao Gong

Phys. Rev. B 112, 094447 (2025) - Published 24 September, 2025

Highly tunable Gilbert damping in the two-dimensional van der Waals ferromagnet Fe3GaTe2: From bilayer to twisted bilayer

Jie Wang, Shi-Bo Zhao, Jia-wan Li, Lin Zhuang, and Yusheng Hou

Phys. Rev. B 112, 094448 (2025) - Published 25 September, 2025

Magnetic properties of metastable honeycomb KCoAsO4

C. L. Sarkis, L. A. Pressley, V. O. Garlea, C. dela Cruz, M. B. Stone, A. A. Aczel, C. A. Bridges, D. A. Tennant, and S. E. Nagler

Phys. Rev. B 112, 094449 (2025) - Published 25 September, 2025

Field-induced magnetization plateau and high-field phase diagram of the multiferroic manganite ErMn2O5: An analogy to YMn2O5

Yinfa Feng, Haowen Wang, Shuhan Zheng, Meifeng Liu, Leili Tan, Chao Dong, Chengliang Lu, and Junfeng Wang

Phys. Rev. B 112, 094450 (2025) - Published 25 September, 2025

Unified theory of anisotropic magnetoresistance and unidirectional magnetoresistance in nanoscale bilayers

X. R. Wang

Phys. Rev. B 112, 094451 (2025) - Published 26 September, 2025

Manifold role of a Ta adhesion layer in pressure-tuned Co/Pt multilayers

Rico Ehrler, Tino Uhlig, René Hübner, Fabian Samad, Peter Heinig, and Olav Hellwig

Phys. Rev. B 112, 094452 (2025) - Published 26 September, 2025

Magnetic structure and crystal field states of the heavy fermion system YbPt5B2

Leonid Salamakha, Oksana Sologub, Herwig Michor, Dmitry Khalyavin, Manh Duc Le, Devashibhai T. Adroja, and Ernst Bauer

Phys. Rev. B 112, 094453 (2025) - Published 26 September, 2025

By means of elastic (NPD) and inelastic neutron (INS) scattering experiments, the authors explore here the magnetic structure and the impact of crystalline electric field (CEF) effects in ternary YbPt5B2. A commensurate antiferromagnetic phase was derived below 4.7 K, separated by a first order phase transition from an incommensurate phase at 4.7T7.8 K. The CEF and coexisting Kondo interactions in this heavy fermion compound arrange a hierarchy of magnetic moments, from the free ion value (m(Yb3+)=4μB) to the CEF driven score, mYbCEF=3.55μB and finally to mYbNPD=3.04μB owing to the demagnifying impact of the Kondo effect.

Strain-controlled g- to d-wave transition in altermagnetic CrSb

Bennet Karetta, Xanthe H. Verbeek, Rodrigo Jaeschke-Ubiergo, Libor Šmejkal, and Jairo Sinova

Phys. Rev. B 112, 094454 (2025) - Published 26 September, 2025

d-wave altermagnets allow for the generation of pure spin currents, a process vital for spintronics, without the need for spin-orbit coupling. Here, the authors show that through strain manipulation, this functionality can be induced in g-wave altermagnets, where it is otherwise forbidden. Through symmetry analysis, minimal modeling, and first-principles calculations, the authors identify three strain directions producing d-wave spin splitting in g-wave CrSb, with significant spin-splitter currents as a consequence, highlighting strain as an effective tool to engineer altermagnetic properties.

EuAuSb: An odd-parity helical variation of altermagnetism

J. Sears, Juntao Yao, Zhixiang Hu, Wei Tian, Niraj Aryal, Weiguo Yin, A. M. Tsvelik, I. A. Zaliznyak, Qiang Li, and J. M. Tranquada

Phys. Rev. B 112, 094455 (2025) - Published 26 September, 2025

The authors present here neutron diffraction measurements identifying a helical magnetic order in the Dirac semimetal EuAuSb. In a magnetic field, the sample undergoes a first-order incommensurate to commensurate transition before entering the field polarized state. Electronic structure calculations show the importance of symmetry breaking by the magnetic order, as bands near the Fermi level lose their spin degeneracy via a mechanism similar to that in the collinear altermagnets. Unlike the even symmetry seen in the altermagnets, splitting in EuAuSb has odd-wave symmetry, similar to several other recently reported coplanar magnetic materials.

Differences in magnetic properties between the triangular-dimer-lattice antiferromagnets Rb2Ni2(SeO3)3 and K2Co2(SeO3)3

Z. R. Li, L. Wang, J. J. Cao, C. Dong, Z. M. Tian, Z. X. Wang, Z. C. Xia, H. Nojiri, and Z. W. Ouyang

Phys. Rev. B 112, 094456 (2025) - Published 29 September, 2025

Magnetic contribution of itinerant electrons to neutron diffraction in the topological antiferromagnet CeAlGe

V. Pomjakushin, A. Podlesnyak, P. Puphal, S. Shin, J. S. White, and E. Pomjakushina

Phys. Rev. B 112, 094457 (2025) - Published 29 September, 2025

Room-temperature ferromagnetism and doping-controllable spin transport in hydrogenated CrS2 monolayer

Shasha Li, Chang Liu, Xiangyan Bo, Ping Liu, Feng Li, and Yong Pu

Phys. Rev. B 112, 094458 (2025) - Published 29 September, 2025

Superfluidity and superconductivity

Disorder and robustness of superconductivity on the quasi-one-dimensional flat-band Creutz lattice

Si Min Chan, B. Grémaud, and G. George Batrouni

Phys. Rev. B 112, 094501 (2025) - Published 2 September, 2025

Pressure-induced anomalous enhancement in the superconducting critical temperature of the transition metal chalcogenides Ta2PdS6 and Ta2PdSe6

Ryo Matsumoto, Akitoshi Nakano, Takafumi D. Yamamoto, Kensei Terashima, Kazuki Yamane, Masahiro Ohkuma, Ichiro Terasaki, and Yoshihiko Takano

Phys. Rev. B 112, 094502 (2025) - Published 2 September, 2025

Vertex correction for the linear and nonlinear optical responses in superconductors: Multiband effect and topological superconductivity

Hiroto Tanaka and Youichi Yanase

Phys. Rev. B 112, 094503 (2025) - Published 2 September, 2025

Optimizing proximitized magnetic topological insulator nanoribbons for Majorana bound states

Eduárd Zsurka, Daniele Di Miceli, Julian Legendre, Llorenç Serra, Detlev Grützmacher, Thomas L. Schmidt, and Kristof Moors

Phys. Rev. B 112, 094504 (2025) - Published 4 September, 2025

Axionic p+is superconductivity from two pairing channels

Maitê Kessler de Azambuja and David Möckli

Phys. Rev. B 112, 094505 (2025) - Published 8 September, 2025

Oscillating-charged Andreev bound states and their appearance in UTe2

Satoshi Ando, Shingo Kobayashi, Andreas P. Schnyder, Yasuhiro Asano, and Satoshi Ikegaya

Phys. Rev. B 112, 094506 (2025) - Published 8 September, 2025

Tunable Majorana corner states driven by superconducting phase bias in a vertical Josephson junction

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

Phys. Rev. B 112, 094507 (2025) - Published 8 September, 2025

Surface superconductivity and topological band in the strong-coupling superconductor SrSn3

Jiangpeng Song, Xiaobin Lan, Yuyan Han, Chuanying Xi, Lei Zhang, Peng Wu, Liang Cao, Dayong Liu, and Yimin Xiong

Phys. Rev. B 112, 094508 (2025) - Published 9 September, 2025

Josephson diode effect from nonequilibrium current in a superconducting interferometer

Daniel Shaffer, Songci Li, Jaglul Hasan, Mikhail Titov, and Alex Levchenko

Phys. Rev. B 112, 094509 (2025) - Published 11 September, 2025

This paper demonstrates a concept of nonequilibrium Josephson diode effect in a symmetric superconducting interferometer. Driven out of equilibrium by a dissipative current in the normal region, this system exhibits nonreciprocal supercurrents without needing broken inversion symmetry. The authors show this effect can exceed its ideal value, creating a “supra-perfect” diode that allows supercurrent to flow in only one direction above a certain threshold

Superfluid density in quasi-one-dimensional boson systems

D. S. Hirashima

Phys. Rev. B 112, 094510 (2025) - Published 12 September, 2025

Charge and magnetic orders in a two-band model with long-range interactions for infinite-layer nickelates NdNiO2

Tharathep Plienbumrung, Jean-Baptiste Morée, Andrzej M. Oleś, and Maria Daghofer

Phys. Rev. B 112, 094511 (2025) - Published 15 September, 2025

Deeper insight into the terahertz response of conventional superconductors under magnetic field

M. Šindler, F. Herman, F. Kadlec, and C. Kadlec

Phys. Rev. B 112, 094512 (2025) - Published 15 September, 2025

Prediction and synthesis of Mg4Pt3H6: A superconducting complex transition metal hydride stabilized at ambient pressure

Wencheng Lu, Michael J. Hutcheon, Mads F. Hansen, Kapildeb Dolui, Shubham Sinha, Mihir R. Sahoo, Chris J. Pickard, Christoph Heil, Anna Pakhomova, Mohamed Mezouar, Dominik Daisenberger, Stella Chariton, Vitali Prakapenka, Matthew N. Julian, Rohit P. Prasankumar, and Timothy A. Strobel

Phys. Rev. B 112, 094513 (2025) - Published 18 September, 2025

Ternary transition-metal complex hydrides—traditionally regarded as hydrogen storage materials—provide a broad chemical space stabilized at low pressures. Here, a previously unknown complex hydride, Mg4Pt3H6, is synthesized under moderate pressures, based on high-throughput calculations. Structural analysis confirms the structure, and electrical transport measurements indicate ambient-pressure superconductivity with Tc 2.9 K, in agreement with predictions. These findings establish an emerging family of ambient-stable hydride superconductors, enriching ternary hydride chemistry and offering guidance for the design of hydrogen-rich superconductors.

Evolution of pairing symmetry in FeSe1xSx as probed by in-plane strain tuning of Tc

Ruixian Liu, Qi Tang, Chang Liu, Wenting Zhang, Chunyi Li, Kaijuan Zhou, Qiaoyu Wang, and Xingye Lu

Phys. Rev. B 112, 094514 (2025) - Published 18 September, 2025

Electronic structure, and magnetic and superconducting pairing tendencies of the alternating single layer–bilayer stacking nickelate La5Ni3O11 under pressure

Yang Zhang, Ling-Fang Lin, Adriana Moreo, Satoshi Okamoto, Thomas A. Maier, and Elbio Dagotto

Phys. Rev. B 112, 094515 (2025) - Published 22 September, 2025

AC Josephson signatures of the superconducting Higgs mode

Aritra Lahiri, Sang-Jun Choi, and Björn Trauzettel

Phys. Rev. B 112, 094516 (2025) - Published 22 September, 2025

General trends of superconducting pairing and magnetic correlations in the Ruddlesden-Popper nickelate m-layered superconductors Lam+1NimO3m+1

Yang Zhang, Ling-Fang Lin, Adriana Moreo, Satoshi Okamoto, Thomas A. Maier, and Elbio Dagotto

Phys. Rev. B 112, 094517 (2025) - Published 23 September, 2025

Time-dependent Ginzburg-Landau framework for sample-specific simulation of superconductors for radio-frequency applications

Aiden V. Harbick and Mark K. Transtrum

Phys. Rev. B 112, 094518 (2025) - Published 23 September, 2025

Manipulation of Majorana wave packets at surfaces of nodal noncentrosymmetric superconductors

Clara J. Lapp, Julia M. Link, and Carsten Timm

Phys. Rev. B 112, 094519 (2025) - Published 24 September, 2025

Chirality-selective proximity effect between chiral p-wave superconductors and quantum Hall insulators

Ryota Nakai, Koji Kudo, Hiroki Isobe, and Kentaro Nomura

Phys. Rev. B 112, 094520 (2025) - Published 25 September, 2025

Exploring functionalized Zr2N and Sc2N MXenes as superconducting candidates with ab initio calculations

Alpin N. Tatan and Osamu Sugino

Phys. Rev. B 112, 094521 (2025) - Published 26 September, 2025

Anisotropic superconductivity in metal-intercalated layered borocarbides induced by σ electrons coupling with soft phonon modes

Haoqi Chen, Haowen Jiang, Xuehui Jiang, Jialin Wang, Jing Dong, Defang Duan, and Yanbin Ma

Phys. Rev. B 112, 094522 (2025) - Published 29 September, 2025

Pressure-driven charge redistribution and superconductivity enhancement in host-guest Ca4Li electride

Tingwei An, Xiaohua Zhang, Shicong Ding, Shuai Han, Fei Li, and Guochun Yang

Phys. Rev. B 112, 094523 (2025) - Published 29 September, 2025

Vortices in two-dimensional chiral superfluids

Yan He and Wenxing Nie

Phys. Rev. B 112, 094524 (2025) - Published 29 September, 2025

Fluctuations of interface-enhanced superconductivity in ultrathin FeSe/SrTiO3 studied by the Nernst effect

Tomoki Kobayashi, Ryo Ogawa, and Atsutaka Maeda

Phys. Rev. B 112, 094525 (2025) - Published 30 September, 2025

Superinsulatinglike behavior in granular Pb film on gated few-layer MoS2

Suraina Gupta, Santu Prasad Jana, Pawan Kumar Gupta, and Anjan K. Gupta

Phys. Rev. B 112, 094526 (2025) - Published 30 September, 2025

ERRATA

Erratum: Theory of difference-frequency quantum oscillations [Phys. Rev. B 108, 054202 (2023)]

V. Leeb and J. Knolle

Phys. Rev. B 112, 099901 (2025) - Published 11 September, 2025

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