Browse Issues:

HIGHLIGHTED ARTICLES

Integrability from a single conservation law in quantum spin chains

Akihiro Hokkyo

Phys. Rev. B 114, 055108 (2026) - Published 8 July, 2026

Here, the author proves that, for translationally invariant spin chains with finite-range interactions, a single third-order conservation law is enough to guarantee infinitely many commuting local conserved quantities. This result turns the Reshetikhin condition from a widely used heuristic into a rigorous sufficient criterion for quantum integrability and helps clarify the divide between integrable and nonintegrable many-body systems.

Mott-Anderson crossover without metallization in pressurized Sr3Ir2O7

Xia Yin, Weicheng Guo, Miao Li, Chunlei Yang, Chengyu Li, Dong Wang, Jianbo Zhang, Yongjin Chen, Takeshi Nakagawa, Caoshun Zhang, Chunsheng Xia, Pengfei Shan, Xiaoping Yang, Sheng Meng, Jun Chang, Ho-kwang Mao, and Yang Ding

Phys. Rev. B 114, 055114 (2026) - Published 13 July, 2026

Here, the authors use high-pressure transport, low-temperature magnetoresistance, x-ray diffraction and transmission electron microscopy to show that Sr3Ir2O7 evolves, without metallization, from a Mott regime dominated by electronic correlations to an Anderson-like localized regime dominated by disorder. Pressure collapses the activation gap near 12–17 GPa, yet low-temperature conduction remains nonmetallic and follows three-dimensional variable-range hopping, highlighting how localization can preempt metallization in bandwidth-tuned correlated materials.

Effect of modest hydrostatic pressure on low-temperature transport behavior in La3Ni2O7 thin films

Deepak Kumar, Jared Z. Dans, Keenan E. Avers, Ryan Paxson, Ichiro Takeuchi, and Johnpierre Paglione

Phys. Rev. B 114, 055128 (2026) - Published 24 July, 2026

How do La3Ni2O7 thin films behaves under modest hydrostatic pressure? The authors here investigate epitaxial thin films under substrate selection, oxygen treatment, and hydrostatic pressure, and reveal tunable transport behavior, where modest pressure drives a transition from Fermi liquid-like metallicity toward non-Fermi liquid response. These findings highlight strain- and pressure-enabled control of bilayer nickelate thin films, offering a concise pathway to explore exotic low-temperature electronic states.

Cooper condensation and pair wave functions in systems of strongly correlated electrons

Hannes Karlsson, Johannes S. Hofmann, and Alexander Wietek

Phys. Rev. B 114, 055133 (2026) - Published 30 July, 2026

Here, the authors present a framework for identifying superconducting order directly from the two-particle reduced density matrix, via the Penrose-Onsager criterion. Beyond detecting a condensate, the method reconstructs the Cooper pair wave function and resolves its symmetry without prior assumptions. Applied to the Hubbard model, it characterizes uniform s-wave, finite-momentum FFLO, and fragmented supersolid states — the last revealing an unexpected triplet p-wave component alongside the dominant d wave.

Microscopic quantum description of surface plasmon polaritons: Revealing intrinsic ultrastrong light-matter coupling

Florian Maurer, Thomas F. Allard, Yanko Todorov, Guillaume Weick, and David Hagenmüller

Phys. Rev. B 114, 055421 (2026) - Published 27 July, 2026

Surface plasmon polaritons are a cornerstone of nanophotonics, yet an effective quantum model with a clear microscopic foundation has remained elusive. Here, the authors develop a microscopic quantum theory valid for arbitrary metal-dielectric geometries. In particular, they show that these excitations arise from the nonperturbative coupling of bulk plasmons to the electromagnetic vacuum. Their theory reveals that metal-dielectric interfaces naturally realize ultrastrong light-matter coupling, giving rise to unconventional ground-state quantum fluctuations controlled by geometry and refractive index.

Kinetic magnetism and stripe order in the antiferromagnetic bosonic tJ model

Timothy J. Harris, Ulrich Schollwöck, Annabelle Bohrdt, and Fabian Grusdt

Phys. Rev. B 114, L051105 (2026) - Published 15 July, 2026

How can particle statistics influence the competition between charge motion and magnetic order in doped antiferromagnets? Here, the authors use large-scale numerical calculations to establish the T=0 phase diagram of the 2D antiferromagnetic bosonic t-J model. They show that mobile bosonic holes stabilize partially filled stripes at low doping, akin to those in high-Tc cuprate superconductors, and drive transitions to polarized ferromagnetic phases via Nagaoka polaron formation. These predictions provide clear targets for future experiments in ultracold-atom quantum simulators.

Ab initio study of Coulomb drag driven electron-hole bifluidity in doped graphene

Dwaipayan Paul, Elena Trukhan, and Nakib H. Protik

Phys. Rev. B 114, L051405 (2026) - Published 20 July, 2026

The Coulomb drag among charge carriers in doped graphene can be strong enough to induce hydrodynamics. Building in a Coulomb collision term within the ab initio 𝚎𝚕𝚙𝚑𝚋𝚘𝚕𝚝 transport code suite, the authors demonstrate here that this Coulomb drag can lead to the formation of an electron-hole bifluid. The same phenomenon leads to negative spectral conductivity and a strong violation of the Wiedemann-Franz law near charge neutrality. This work sets a new state-of-the-art in Boltzmann-based charge transport computations.

LETTERS

Electronic structure and strongly correlated systems

Error threshold of Sachdev-Ye-Kitaev models from strong-to-weak parity symmetry breaking

Jaewon Kim, Ehud Altman, and Jong Yeon Lee

Phys. Rev. B 114, L051101 (2026) - Published 6 July, 2026

Yamaji effect and quantum oscillation in the Yang-Rice-Zhang model of underdoped cuprates

Yicheng Zhong, Fu-Chun Zhang, and Kun Jiang

Phys. Rev. B 114, L051102 (2026) - Published 6 July, 2026

Strongly correlated model of acousticlike plasmons persisting across the phase diagram of cuprate superconductors

Luciano Zinni, Hiroyuki Yamase, Matthias Hepting, Matías Bejas, and Andrés Greco

Phys. Rev. B 114, L051103 (2026) - Published 8 July, 2026

Witnessing entanglement in mixed-particle quantum systems

Irma Avdic and David A. Mazziotti

Phys. Rev. B 114, L051104 (2026) - Published 13 July, 2026

Kinetic magnetism and stripe order in the antiferromagnetic bosonic tJ model

Timothy J. Harris, Ulrich Schollwöck, Annabelle Bohrdt, and Fabian Grusdt

Phys. Rev. B 114, L051105 (2026) - Published 15 July, 2026

How can particle statistics influence the competition between charge motion and magnetic order in doped antiferromagnets? Here, the authors use large-scale numerical calculations to establish the T=0 phase diagram of the 2D antiferromagnetic bosonic t-J model. They show that mobile bosonic holes stabilize partially filled stripes at low doping, akin to those in high-Tc cuprate superconductors, and drive transitions to polarized ferromagnetic phases via Nagaoka polaron formation. These predictions provide clear targets for future experiments in ultracold-atom quantum simulators.

Charged moiré phonons in twisted bilayer graphene

Alejandro Ramos-Alonso and Héctor Ochoa

Phys. Rev. B 114, L051106 (2026) - Published 15 July, 2026

Dissipation- versus chaos-induced relaxation in non-Markovian quantum many-body systems

Gabriel Almeida, Pedro Ribeiro, Masudul Haque, and Lucas Sá

Phys. Rev. B 114, L051107 (2026) - Published 20 July, 2026

Parity-dependent double degeneracy and spectral statistics in the projected dice lattice

Koushik Swaminathan, Anouar Moustaj, Jose L. Lado, and Sebastiano Peotta

Phys. Rev. B 114, L051108 (2026) - Published 20 July, 2026

Ground state properties of the doped Kitaev-Heisenberg chain: Topological superconducting and Mott-insulating phases driven by magnetic frustration

Cliò Efthimia Agrapidis and Satoshi Nishimoto

Phys. Rev. B 114, L051109 (2026) - Published 21 July, 2026

Decomposing fractional quantum Hall wave functions via operator contraction multiplication

Dong-Hao Guan, Licheng Wang, Yuan Zhou, Ai-Lei He, and Yi-Fei Wang

Phys. Rev. B 114, L051110 (2026) - Published 27 July, 2026

Dirac topology, anomalous Hall response, and giant magnetoresistance in the carrier-compensated altermagnetic semimetal NiS

Shovan Gayen, Sk. Soyeb Ali, and S. K. Panda

Phys. Rev. B 114, L051111 (2026) - Published 28 July, 2026

Magnetocubic and magnetolinear dependence observed in the in-plane anomalous Hall magnet EuCd2Sb2

Ayano Nakamura, Shinichi Nishihaya, Mitsuru Akaki, Motoi Kimata, Kenta Sudo, Yuki Deguchi, Hsiang Lee, Tadashi Yoneda, Markus Kriener, Masaki Kondo, Hiroaki Ishizuka, Masashi Tokunaga, and Masaki Uchida

Phys. Rev. B 114, L051112 (2026) - Published 29 July, 2026

Emergent interacting phases in the strong-coupling limit of twisted M-valley moiré systems: Application to SnSe2

Ming-Rui Li, Dumitru Calugaru, Yi Jiang, Hanqi Pi, Ammon Fischer, Henning Schlömer, Lennart Klebl, Zhengchao Xia, Maia G. Vergniory, Dante M. Kennes, Kin Fai Mak, Jie Shan, Siddharth A. Parameswaran, Hong Yao, B. Andrei Bernevig, and Haoyu Hu

Phys. Rev. B 114, L051113 (2026) - Published 31 July, 2026

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

Transport detection of whirlpools in a GaAs electron liquid

Dmitry A. Egorov, Dmitriy A. Pokhabov, Evgeny Yu. Zhdanov, Andrey A. Shevyrin, Askhat K. Bakarov, and Arthur G. Pogosov

Phys. Rev. B 114, L051301 (2026) - Published 23 July, 2026

Topological dislocation response in elementary semiconductors

Yuteng Zhou, Alexandre Chaduteau, and Frank Schindler

Phys. Rev. B 114, L051302 (2026) - Published 29 July, 2026

Surface physics, nanoscale physics, low-dimensional systems

Intersubband Dresselhaus spin-orbit contribution of even order in quantum wells

Hao Yang, Wei Wang, Gerson J. Ferreira, Ning Hao, Ping Zhang, and Jiyong Fu

Phys. Rev. B 114, L051401 (2026) - Published 6 July, 2026

Cavity-assisted spin selection in one-dimensional conductors

Vivek Kumar, Joshua Coop, Yingshi Duo, Ian Farrer, David A. Ritchie, and Sanjeev Kumar

Phys. Rev. B 114, L051402 (2026) - Published 7 July, 2026

Fine structure of the cyclotron resonance in heterobilayers of proximitized graphene and transition metal dichalcogenides

M. A. Rakitskii, K. S. Denisov, and N. S. Averkiev

Phys. Rev. B 114, L051403 (2026) - Published 8 July, 2026

Optical probing of Wigner crystallization in monolayer WSe2 via diffraction of longitudinal excitons

Artem N. Abramov, Emil Chiglintsev, Tatiana Oskolkova, Maria Titova, Mikhail Kashchenko, Alexander Chernov, Vasily Kravtsov, and Ivan V. Iorsh

Phys. Rev. B 114, L051404 (2026) - Published 15 July, 2026

Ab initio study of Coulomb drag driven electron-hole bifluidity in doped graphene

Dwaipayan Paul, Elena Trukhan, and Nakib H. Protik

Phys. Rev. B 114, L051405 (2026) - Published 20 July, 2026

The Coulomb drag among charge carriers in doped graphene can be strong enough to induce hydrodynamics. Building in a Coulomb collision term within the ab initio 𝚎𝚕𝚙𝚑𝚋𝚘𝚕𝚝 transport code suite, the authors demonstrate here that this Coulomb drag can lead to the formation of an electron-hole bifluid. The same phenomenon leads to negative spectral conductivity and a strong violation of the Wiedemann-Franz law near charge neutrality. This work sets a new state-of-the-art in Boltzmann-based charge transport computations.

Ultrafast charge transfer dynamics at the MoS2/Au interface observed via optical spectroscopy under ambient conditions

Tao Yang, Zhipeng Huang, Stephan Sleziona, Eckart Hasselbrink, Peter Kratzer, Marika Schleberger, R. Kramer Campen, and Yujin Tong

Phys. Rev. B 114, L051406 (2026) - Published 27 July, 2026

ARTICLES

Electronic structure and strongly correlated systems

Phaseless auxiliary-field quantum Monte Carlo method with spin-orbit coupling

Zheng Liu, Shiwei Zhang, and Fengjie Ma

Phys. Rev. B 114, 055101 (2026) - Published 6 July, 2026

Non-Hermitian chiral skin effect of topological edge states

Xiao-Meng Chu, Xiao-Ran Wang, Ying Liang, Jing He, and Su-Peng Kou

Phys. Rev. B 114, 055102 (2026) - Published 6 July, 2026

Proliferation transitions from a topological phase in 2+1 dimensions

Meng Cheng and Nathan Seiberg

Phys. Rev. B 114, 055103 (2026) - Published 6 July, 2026

Entanglement spectrum of gapless topological phases: A case study with topological superconductors

Archi Banerjee and Meng Zeng

Phys. Rev. B 114, 055104 (2026) - Published 6 July, 2026

Effects of long- and short-range correlated interactions in an anisotropic flat-band fermion system

Jing-Rong Wang and Chang-Jin Zhang

Phys. Rev. B 114, 055105 (2026) - Published 6 July, 2026

Hydrodynamic edge modes and fragile surface states of symmetry-protected integer quantum Hall effect of bosons

Dylan Reynolds, Gustavo M. Monteiro, and Sriram Ganeshan

Phys. Rev. B 114, 055106 (2026) - Published 6 July, 2026

Prediction of the Hubbard U parameter from scanning tunneling microscopy images of moiré systems using image recognition

Nachiket Tanksale and Tobias Stauber

Phys. Rev. B 114, 055107 (2026) - Published 7 July, 2026

Integrability from a single conservation law in quantum spin chains

Akihiro Hokkyo

Phys. Rev. B 114, 055108 (2026) - Published 8 July, 2026

Here, the author proves that, for translationally invariant spin chains with finite-range interactions, a single third-order conservation law is enough to guarantee infinitely many commuting local conserved quantities. This result turns the Reshetikhin condition from a widely used heuristic into a rigorous sufficient criterion for quantum integrability and helps clarify the divide between integrable and nonintegrable many-body systems.

Onset of spin-valley order and Stoner boundaries in twisted WSe2

Lauro B. Braz and Luis G. G. V. Dias da Silva

Phys. Rev. B 114, 055109 (2026) - Published 8 July, 2026

Correlation-driven phonon renormalization and the equation of state of γ-cerium

Yao Wei, Siyu Chen, Evgeny Plekhanov, Ivan Štich, Cedric Weber, and Jan M. Tomczak

Phys. Rev. B 114, 055110 (2026) - Published 10 July, 2026

Finite-element Delta-Sternheimer approach for computing accurate all-electron RPA correlation energies of polyatomic molecules

Hao Peng, Haochen Liu, Chuhao Li, Hehu Xie, and Xinguo Ren

Phys. Rev. B 114, 055111 (2026) - Published 9 July, 2026

Emergent surface resonance from charge density wave symmetry breaking in TiSe2

Turgut Yilmaz, Yi Sheng Ng, Muhammad Awais Fiaz, Anil Rajapitamahuni, Asish K. Kundu, Shawna M. Hollen, Polina M. Sheverdyaeva, Paolo Moras, Ivana Vobornik, Jun Fujii, Shinichiro Ideta, Kenya Shimada, Boris Sinkovic, Elio Vescovo, Hui-Qiong Wang, and Jin-Cheng Zheng

Phys. Rev. B 114, 055112 (2026) - Published 10 July, 2026

Many-body correlations in Floquet steady states: Frequency-resolved renormalization group of the driven Anderson impurity

Jan-Niklas Herre, Christoph Karrasch, and Dante M. Kennes

Phys. Rev. B 114, 055113 (2026) - Published 10 July, 2026

Mott-Anderson crossover without metallization in pressurized Sr3Ir2O7

Xia Yin, Weicheng Guo, Miao Li, Chunlei Yang, Chengyu Li, Dong Wang, Jianbo Zhang, Yongjin Chen, Takeshi Nakagawa, Caoshun Zhang, Chunsheng Xia, Pengfei Shan, Xiaoping Yang, Sheng Meng, Jun Chang, Ho-kwang Mao, and Yang Ding

Phys. Rev. B 114, 055114 (2026) - Published 13 July, 2026

Here, the authors use high-pressure transport, low-temperature magnetoresistance, x-ray diffraction and transmission electron microscopy to show that Sr3Ir2O7 evolves, without metallization, from a Mott regime dominated by electronic correlations to an Anderson-like localized regime dominated by disorder. Pressure collapses the activation gap near 12–17 GPa, yet low-temperature conduction remains nonmetallic and follows three-dimensional variable-range hopping, highlighting how localization can preempt metallization in bandwidth-tuned correlated materials.

Spin and valley coupled optical excitations in semihydrogenated bilayer graphene

Lei Hao and C. S. Ting

Phys. Rev. B 114, 055115 (2026) - Published 13 July, 2026

Design of nearly flat band models with arbitrary Chern numbers

Jing-Min Fan, Fan-Di Sun, Ai-Lei He, Wei-Wei Luo, and Yi-Fei Wang

Phys. Rev. B 114, 055116 (2026) - Published 14 July, 2026

Sound of electrons shattering: Current noise composition laws for electron fractionalization

Adarsh S. Patri, Josephine J. Yu, Yi-Ming Wu, T. Senthil, and Hart Goldman

Phys. Rev. B 114, 055117 (2026) - Published 14 July, 2026

Pressure-driven vibrational and structural peculiarities in the honeycomb layered magnetoelectrics Mn4B2O9 (B=Nb,Ta)

Rajesh Jana, Afsal S. Shajahan, Boby Joseph, Brahmananda Chakraborty, K. A. Irshad, Anuj Upadhyay, Alka Garg, Rekha Rao, and Thomas Meier

Phys. Rev. B 114, 055118 (2026) - Published 15 July, 2026

Effect of applied pressure on the nonrelativistic spin splitting of the altermagnet FeSb2: A first-principles study

Shalika R. Bhandari, R. Tamang, Keshav Shrestha, Samy Brahimi, Samir Lounis, and D. P. Rai

Phys. Rev. B 114, 055119 (2026) - Published 15 July, 2026

Reverse design of topological metamaterials based on tight-binding models

Mingze Weng, Maopeng Wu, Siyong Zheng, Fubei Liu, Qian Zhao, Yonggang Meng, and Ji Zhou

Phys. Rev. B 114, 055120 (2026) - Published 16 July, 2026

Topological phases of bosons with local parity coupling on a dimerized lattice

Ashirbad Padhan and Harsh Nigam

Phys. Rev. B 114, 055121 (2026) - Published 17 July, 2026

Noninteracting tight-binding models for Fock parafermions

Edward McCann

Phys. Rev. B 114, 055122 (2026) - Published 17 July, 2026

Functional renormalization group for extremely correlated electrons

Jonas Arnold, Peter Kopietz, and Andreas Rückriegel

Phys. Rev. B 114, 055123 (2026) - Published 20 July, 2026

Pressure tuning of electronic correlations and flat bands in CsCr3Sb5

Maria Chatzieleftheriou, Jonas B. Profe, Ying Li, and Roser Valentí

Phys. Rev. B 114, 055124 (2026) - Published 20 July, 2026

Bipolarized Weyl semimetals and quantum crystal valley Hall effect in two-dimensional altermagnetic materials

Chao-Yang Tan, Ze-Feng Gao, Huan-Cheng Yang, Kai Liu, Peng-Jie Guo, and Zhong-Yi Lu

Phys. Rev. B 114, 055125 (2026) - Published 21 July, 2026

Coupled-cluster approach to vibronic effects in resonant inelastic x-ray scattering of quantum materials: Application to a 5d1 rhenium oxide

Teruki Matsuzaki, Liviu F. Chibotaru, Maristella Alessio, and Naoya Iwahara

Phys. Rev. B 114, 055126 (2026) - Published 23 July, 2026

Spontaneous symmetry breaking in chiral current-carrying high-energy eigenstates

Tigran A. Sedrakyan, Jun-Jun Pang, Chenan Wei, and Baigeng Wang

Phys. Rev. B 114, 055127 (2026) - Published 23 July, 2026

Effect of modest hydrostatic pressure on low-temperature transport behavior in La3Ni2O7 thin films

Deepak Kumar, Jared Z. Dans, Keenan E. Avers, Ryan Paxson, Ichiro Takeuchi, and Johnpierre Paglione

Phys. Rev. B 114, 055128 (2026) - Published 24 July, 2026

How do La3Ni2O7 thin films behaves under modest hydrostatic pressure? The authors here investigate epitaxial thin films under substrate selection, oxygen treatment, and hydrostatic pressure, and reveal tunable transport behavior, where modest pressure drives a transition from Fermi liquid-like metallicity toward non-Fermi liquid response. These findings highlight strain- and pressure-enabled control of bilayer nickelate thin films, offering a concise pathway to explore exotic low-temperature electronic states.

Two-parameter Family-Vicsek scaling in a dissipative XXZ spin chain

Cătălin Paşcu Moca, Doru Sticlet, Tamás Vicsek, and Balázs Dóra

Phys. Rev. B 114, 055129 (2026) - Published 24 July, 2026

Pressure-induced redistribution of oxygen hole states in La4Ni3O10

Guiwen Jiang, Liang Si, George A. Sawatzky, and Mi Jiang

Phys. Rev. B 114, 055130 (2026) - Published 27 July, 2026

Extended Kohn-Sham and quasiparticle theories: Applicability of GW(Γ) methods to initially excited eigenstates

Kaoru Ohno, Takeru Nakashima, and Hannes Raebiger

Phys. Rev. B 114, 055131 (2026) - Published 27 July, 2026

Single-hole spectral functions in one-dimensional quantum magnets with different ground states

Sibin Yang, Gabe Schumm, Bowen Zhao, and Anders W. Sandvik

Phys. Rev. B 114, 055132 (2026) - Published 29 July, 2026

Cooper condensation and pair wave functions in systems of strongly correlated electrons

Hannes Karlsson, Johannes S. Hofmann, and Alexander Wietek

Phys. Rev. B 114, 055133 (2026) - Published 30 July, 2026

Here, the authors present a framework for identifying superconducting order directly from the two-particle reduced density matrix, via the Penrose-Onsager criterion. Beyond detecting a condensate, the method reconstructs the Cooper pair wave function and resolves its symmetry without prior assumptions. Applied to the Hubbard model, it characterizes uniform s-wave, finite-momentum FFLO, and fragmented supersolid states — the last revealing an unexpected triplet p-wave component alongside the dominant d wave.

Condensate states in Fermi and Bose-Hubbard ladders

F. X. Liu, E. S. Ma, and Z. Song

Phys. Rev. B 114, 055134 (2026) - Published 31 July, 2026

Semiconductors I: bulk

Two-component nuclear spin relaxation dynamics in GaAs:Mn

P. S. Bazhin, V. S. Berdnikov, M. S. Kuznetsova, V. M. Litvyak, R. I. Dzhioev, and K. V. Kavokin

Phys. Rev. B 114, 055201 (2026) - Published 17 July, 2026

Conventional and practical metallic superconductivity arising from repulsive Coulomb coupling

Sankar Das Sarma, Jay D. Sau, Yi-Ting Tu, and Shuyang Wang

Phys. Rev. B 114, 055202 (2026) - Published 28 July, 2026

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

Triplet-assisted leakage during singlet-triplet qubit readout with a quantum point contact

Karol Kawa

Phys. Rev. B 114, 055302 (2026) - Published 28 July, 2026

Surface physics, nanoscale physics, low-dimensional systems

Nitrogen-intercalated twisted bilayer graphene nanoribbons: Electronic, magnetic, and transport properties

Fatemeh Mazhari Mousavi and Rouhollah Farghadan

Phys. Rev. B 114, 055401 (2026) - Published 6 July, 2026

Stress-induced buckling transition of thermalized graphene membranes

Enzo Granato, K. R. Elder, S. C. Ying, and T. Ala-Nissila

Phys. Rev. B 114, 055402 (2026) - Published 6 July, 2026

Quantifying dimensionality-dependent heating using in situ optical tweezer Raman thermometry

Hongkai Zhang (张宏凯), Zian Yue (岳子安), Mohan Liang (梁沫寒), Xiaona Huang (黄小娜), Nan Zhang (张楠), Linji Xu (许林季), Kunlun Bai (白昆仑), Changzhu Yang (杨长柱), Danmei Xie (谢诞梅), Shijing Wu (巫世晶), Yanan Yue (岳亚楠), and Dezhao Huang (黄德钊)

Phys. Rev. B 114, 055403 (2026) - Published 6 July, 2026

Polar magneto-optical Kerr effect of CoPt/AlN multilayer structures: Quantitative determination of the off-diagonal dielectric permittivity tensor of CoPt

Kejia Zhang, Kai Chen, Zihao Song, Haoyuan Deng, Yi Sun, Jundong Song, Takumi Sannomiya, Zhengjun Zhang, Takashi Harumoto, and Ji Shi

Phys. Rev. B 114, 055404 (2026) - Published 7 July, 2026

Discrete holography and density of states in the crossover from hyperbolic to Euclidean lattices

Mireia Tolosa-Simeón and Igor Boettcher

Phys. Rev. B 114, 055405 (2026) - Published 8 July, 2026

Probing imbalanced Weyl nodes in a two-dimensional anisotropic semimetal via optical conductivity

Suheel Ahmad Malik, M. A. H. Ahsan, and SK Firoz Islam

Phys. Rev. B 114, 055406 (2026) - Published 8 July, 2026

Shot noise signatures identifying non-Abelian properties of Jackiw-Rebbi zero modes

Haoran Ge, Zhen Chen, Yijia Wu, and X. C. Xie

Phys. Rev. B 114, 055407 (2026) - Published 9 July, 2026

Antihyperbolic surface waves with topological reconfiguration on twisted bilayer hyperbolic metasurfaces

Chenxu Bian, Xinyan Zhang, Wenbo Ma, Ao Li, Hongsheng Chen, and Xiao Lin

Phys. Rev. B 114, 055408 (2026) - Published 10 July, 2026

Velocity-induced nonreciprocal thermal radiation in moving graphene

Yong Zhang, Yi-Xu Wang, Cheng-Long Zhou, and Hong-Liang Yi

Phys. Rev. B 114, 055409 (2026) - Published 10 July, 2026

Full counting statistics for boundary driven transport in the presence of correlated gain and loss channels

Katha Ganguly and Bijay Kumar Agarwalla

Phys. Rev. B 114, 055410 (2026) - Published 13 July, 2026

Designing multiple multiferroic orders in altermagnetic transition metal oxytrihalides

Chao Yang, Tao Li, Chenqiang Hua, Yao Wang, Yin Wang, and Tai Min

Phys. Rev. B 114, 055411 (2026) - Published 13 July, 2026

Parity anomaly and its transport signatures in three-dimensional chiral topological phases

Yu-Hao Wan, Yanmiao Han, Rundong Zhao, and Qing-Feng Sun

Phys. Rev. B 114, 055412 (2026) - Published 13 July, 2026

Interlayer coupling driven stabilization and superconductivity in bilayer CoTe2

Wenping Chen, Ziyun Zhang, and Feipeng Zheng

Phys. Rev. B 114, 055413 (2026) - Published 13 July, 2026

Deep learning approach for ARPES and time-resolved ARPES: Gradient attention U-net for denoising and reconstruction

Gongyi Cheng, Ziyang Guo, Zhengcong Yan, Xiaochuan Ma, Yichen Qiu, Guangzhen Shen, Xintong Li, Shijing Tan, and Bing Wang

Phys. Rev. B 114, 055414 (2026) - Published 14 July, 2026

Real-space Wigner transport for ballistic phonons

D. Mai and D. Schulz

Phys. Rev. B 114, 055415 (2026) - Published 17 July, 2026

Topological pseudospin Hall effect and multifrequency corner modes in kagome-based lattices

Shenglong Guo, Qinhui Jiang, Yuma Kawaguchi, Bo Li, and Mengyao Li

Phys. Rev. B 114, 055417 (2026) - Published 22 July, 2026

Role of defect-induced thermal resistance in the photoluminescence intensity of CVD-grown monolayer MoS2: Short-term aging effects

Akhil R Warrier, Kishore K. Madapu, and K. Prabakar

Phys. Rev. B 114, 055418 (2026) - Published 24 July, 2026

Voltage characteristics of hydrodynamic Dirac electron nozzles with supersonic flow

Kristof Moors, Oleksiy Kashuba, and Thomas L. Schmidt

Phys. Rev. B 114, 055419 (2026) - Published 24 July, 2026

Width- and edge-dependent characteristics in MnPS3 nanoribbons

Kadir Can Dogan, Maria Ramos, Mehmet Yagmurcukardes, Marco Gobbi, and Hasan Sahin

Phys. Rev. B 114, 055420 (2026) - Published 27 July, 2026

Microscopic quantum description of surface plasmon polaritons: Revealing intrinsic ultrastrong light-matter coupling

Florian Maurer, Thomas F. Allard, Yanko Todorov, Guillaume Weick, and David Hagenmüller

Phys. Rev. B 114, 055421 (2026) - Published 27 July, 2026

Surface plasmon polaritons are a cornerstone of nanophotonics, yet an effective quantum model with a clear microscopic foundation has remained elusive. Here, the authors develop a microscopic quantum theory valid for arbitrary metal-dielectric geometries. In particular, they show that these excitations arise from the nonperturbative coupling of bulk plasmons to the electromagnetic vacuum. Their theory reveals that metal-dielectric interfaces naturally realize ultrastrong light-matter coupling, giving rise to unconventional ground-state quantum fluctuations controlled by geometry and refractive index.

Anisotropic transport of Josephson vortices in atomic-layer superconductors on vicinal surfaces

Wenxuan Qian, Yash Chauhan, Ryohei Nemoto, Keisuke Sagisaka, Shunsuke Yoshizawa, and Takashi Uchihashi

Phys. Rev. B 114, 055422 (2026) - Published 30 July, 2026

Sign In to Your Journals Account

Filter

Filter

Article Lookup

Enter a citation