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HIGHLIGHTED ARTICLES

Lifetime of triplet excitons in organic LEDs based on thermally activated delayed fluorescence

G. A. H. Wetzelaer

Phys. Rev. B 111, L241201 (2025) - Published 11 June, 2025

In organic light-emitting diodes (OLEDs) based on thermally activated delayed fluorescence (TADF), the interactions between triplet excitons and other quasiparticles cause device degradation and a decreased efficiency at high brightness. Here, it is demonstrated that the lifetime of triplet excitons in a TADF OLED closely follows the delayed fluorescence lifetime of the TADF emitter. Therefore, the triplet concentration in a working OLED can be directly inferred from a photoluminescence experiment, enabling facile quantification of triplet-related interactions.

Light-induced anomalous Hall conductivity in the massive three-dimensional Dirac semimetal Co3Sn2S2

Naotaka Yoshikawa, Shun Okumura, Yoshua Hirai, Kazuma Ogawa, Kohei Fujiwara, Junya Ikeda, Akihiro Ozawa, Takashi Koretsune, Ryotaro Arita, Aditi Mitra, Atsushi Tsukazaki, Takashi Oka, and Ryo Shimano

Phys. Rev. B 111, 245104 (2025) - Published 2 June, 2025

The authors investigate here light-induced Dirac-to-Weyl conversion in the massive 3D Dirac semimetal Co3Sn2S2 via ultrafast mid-infrared pump–terahertz probe Faraday rotation spectroscopy. The observed anomalous Hall conductivity under circularly polarized light shows electric field and driving frequency dependence consistent with Floquet-induced Berry curvature from Dirac band splitting. The estimated splitting reaches ~60% of the mass gap, and a theoretical calculation based on Floquet theory quantitatively reproduces the experimental observation, highlighting a promising approach for realizing Floquet-Weyl states in gapped 3D Dirac systems.

Quantum dynamics in a spin-12 square lattice J1−J2−δ altermagnet

Yang Liu, Shiqi Shao, Saisai He, Z. Y. Xie, Jia-Wei Mei, Hong-Gang Luo, and Jize Zhao

Phys. Rev. B 111, 245117 (2025) - Published 5 June, 2025

The authors investigate here the spin-½ J-J′-δ Heisenberg model on the square lattice, which is a prototypical model hosting altermagnetism. In addition to the chirality splitting of the magnon modes, the longitudinal modes may also split in the presence of a finite δ. In particular, when δ≳0.5, the lowest longitudinal excitation mode may be lower than the upper magnon branch, demonstrating rich dynamical behaviors in altermagnets.

Origin of the insulating state in the honeycomb iridate Cu2IrO3

Ying Li, Roger D. Johnson, Yogesh Singh, Radu Coldea, and Roser Valentí

Phys. Rev. B 111, 245122 (2025) - Published 9 June, 2025

It is an unresolved challenge to reconcile the expected metallic state with the experimentally observed insulating behavior in the honeycomb Kitaev candidate Cu2IrO3. The authors unveil here a possible microscopic origin: an instability towards charge ordering of the Ir ions with alternating magnetic Ir4+ and nonmagnetic Ir3+ ions arranged on the honeycomb lattice. The interpenetrating Ir4+ and Cu2+ triangular lattices present a novel type of honeycomb Kitaev lattice, composed of two types of magnetic ion.

Chiral vortex-line liquid of three-dimensional interacting Bose systems with moat dispersion

Bahar Jafari-Zadeh, Chenan Wei, and Tigran A. Sedrakyan

Phys. Rev. B 111, 245130 (2025) - Published 12 June, 2025

The chiral vortex-line liquid (CVLL) is a newly predicted quantum phase in three-dimensional Bose systems with “moat” dispersion, where energy minima create continuous surfaces in momentum space. By generalizing Chern-Simons flux attachment to 3D-combining planar Chern-Simons phases with Jordan-Wigner strings along the vortex lines, the CVLL emerges as a noncondensed topologically ordered liquid that exhibits broken time-reversal symmetry, vortex-line excitations, and gapless surface states. Monte Carlo simulations confirm that, at low densities, the CVLL energetically outcompetes conventional condensates, making it a ground-state candidate for frustrated magnets, excitonic insulators, ultracold atoms, superfluid helium, and heavy-ion collision physics.

Oscillate and renormalize: Fast phonons reshape the Kondo effect in flat-band systems

Liam L. H. Lau, Andreas Gleis, Daniel Kaplan, Premala Chandra, and Piers Coleman

Phys. Rev. B 111, 245149 (2025) - Published 23 June, 2025

This paper revisits an age-old question: when are phonons important in strongly correlated materials? As you will see, the answer lies in in the frequency of the phonons compared to the electrons; slow phonons cannot respond to valence fluctuations and are irrelevant, whereas fast phonons always change the charge dynamics, irrespective of the strength of the coupling. This result may be particularly relevant for 2D moiré systems such as twisted bilayer graphene (TBG), where phonons are fast compared to the moiré energy scales.

Turning qubit noise into an advantage: Automatic state preparation and long-time dynamics for impurity models on quantum computers

Corentin Bertrand, Pauline Besserve, Michel Ferrero, and Thomas Ayral

Phys. Rev. B 111, 245159 (2025) - Published 27 June, 2025

Strongly correlated materials models are notoriously hard to solve. Even on quantum computers, qubit noise typically limits computation to small systems. The authors propose here a quantum algorithm to instead make noise useful for computing materials properties, by making it behave equivalently to the dissipative environment of electrons in solids. With qubit noise, the authors can obtain long time response functions that would require far more noiseless qubits.

Topological tenfold classification and the entanglement of two qubits

Nadav Orion and Eric Akkermans

Phys. Rev. B 111, 245408 (2025) - Published 6 June, 2025

The authors reveal here a key link between quantum entanglement and the topology of Hilbert spaces in condensed matter physics. Antiunitary symmetries and the Cartan tenfold classification connect the entanglement of evolution operators with the topology of the Hamiltonian. The study is validated with two-qubit systems and establishes groundwork for expanding to complex systems. Direct mapping to quantum graphs enables computation of topological integers.

Possible unconventional surface superconductivity in the half-Heusler compound YPtBi

Eylon Persky, Alan Fang, Xinyang Zhang, Carolina Adamo, Phillip Wu, Eli Levenson-Falk, Chandra Shekhar, Claudia Felser, Binghai Yan, and Aharon Kapitulnik

Phys. Rev. B 111, 245417 (2025) - Published 13 June, 2025

The authors uncover here time-reversal symmetry breaking superconductivity at the (111) surface of the half-Heusler compound YPtBi. Scanning tunneling microscopy, mutual inductance, and polar Kerr effect measurements reveal that surface superconductivity and magnetism onset together at temperatures up to three times higher than the bulk. The results indicate distinct origins and order parameter symmetries for surface and bulk superconductivity.

Signatures of valley drift in the diversified band dispersions of bright, gray, and dark excitons in MoS2 monolayers under uniaxial strains

Ching-Hung Shih, Guan-Hao Peng, Ping-Yuan Lo, Wei-Hua Li, Mei-Ling Xu, Chao-Hsin Chien, and Shun-Jen Cheng

Phys. Rev. B 111, 245422 (2025) - Published 18 June, 2025

The authors present here a comprehensive theoretical investigation of the excitonic band dispersions in uniaxially strained MoS2 monolayers by solving the Bethe-Salpeter equation within a first-principles based Wannier tight-binding framework. As a consequence of strain-induced valley drift, applying uniaxial strain to a MoS2 monolayer is found to lead to diversified exciton band dispersions, diffusive transport properties, and angle-resolved optical patterns of bright, gray, and dark excitons. Interestingly, the band dispersion of the dark exciton undergoes the most significant reshaping, accompanied by an unusual sign reversal of the exciton effective mass.

Photoassisted shot noise probes multiple charge carriers in quantum Hall edges

Kishore Iyer, F. Ronetti, B. Grémaud, T. Martin, T. Jonckheere, and J. Rech

Phys. Rev. B 111, 245433 (2025) - Published 25 June, 2025

Abelian fractional quantum Hall (FQH) states host anyons with different charges that can tunnel simultaneously across constrictions. Conventional methods often detect only one charge, possibly due to low tunneling amplitudes of others. The authors propose here photoassisted shot noise (PASN), DC shot noise combined with incident photons, as a compelling probe. When the photon frequency matches the anyon’s Josephson frequency, a resonance occurs in PASN, even for weakly tunneling anyons. By sweeping the frequency, all anyon types can distinctly be identified. These resonances remain robust under realistic experimental conditions, offering direct access to the rich topological order of Abelian FQH states.

Linear scaling relation between two-dimensional massless Dirac fermion Fermi velocity and Fe-As bond length in iron arsenide superconductor systems

Chengpu Lv, Jianzhou Zhao, Yueshan Xu, Yu Song, Chenglin Zhang, Mykhaylo Ozerov, Pengcheng Dai, Nan-Lin Wang, and Zhi-Guo Chen (谌志国)

Phys. Rev. B 111, L241110 (2025) - Published 12 June, 2025

Using magneto-infrared spectroscopy, the authors identify here the existence of topologically nontrivial 2D massless Dirac fermions in the superconducting and antiferromagnetic bulk state of NaFeAs. Also, the Fermi velocity of 2D massless Dirac fermions in NaFeAs and AFe2As2 (A=Ca, Ba) exhibits a linear relationship with the Fe-As bond length. This work opens up new avenues for exploring and tuning novel quantum phenomena based on topologically nontrivial 2D massless Dirac fermions in the superconducting bulk states of 3D materials.

Emergence of aligned nontopological and crossed topological spin helices with unconventional spin-orbit manipulation

Hao Yang, Xue Li, Wei Wang, Ning Hao, Ping Zhang, and Jiyong Fu

Phys. Rev. B 111, L241403 (2025) - Published 4 June, 2025

Multisubband spin-orbit (SO) quantum systems with additional orbital degrees of freedom offer a new avenue for pursuing advanced functionalities in spintronics. The authors unlock here the usual one-way bottleneck in multisubband SO control, uncover the emergence of aligned nontopological and crossed topological (TP) spin helices, and achieve the interconversion between two the distinct phases via in situ electrical means. This opens up new possibilities for exploiting robust, electrically switchable spin phases—whether TP or non-TP—for next-generation spintronic applications.

LETTERS

Electronic structure and strongly correlated systems

Open system dynamics in linear time beyond the wide-band limit

Y. Pavlyukh and R. Tuovinen

Phys. Rev. B 111, L241101 (2025) - Published 2 June, 2025

Strong pairing and symmetric pseudogap metal in a double Kondo lattice model: From a nickelate superconductor to a tetralayer optical lattice

Hui Yang, Hanbit Oh, and Ya-Hui Zhang

Phys. Rev. B 111, L241102 (2025) - Published 2 June, 2025

Weak localization as a probe of intervalley coherence in graphene multilayers

Nemin Wei, Yongxin Zeng, and A. H. MacDonald

Phys. Rev. B 111, L241103 (2025) - Published 2 June, 2025

Engineering miniband topology via band folding in moiré superlattice materials

Kaijie Yang, Yunzhe Liu, Frank Schindler, and Chao-Xing Liu

Phys. Rev. B 111, L241104 (2025) - Published 4 June, 2025

Thermally activated detection of dark particles in a weakly coupled quantum Ising ladder

Yunjing Gao, Jiahao Yang, Huihang Lin, Rong Yu, and Jianda Wu

Phys. Rev. B 111, L241105 (2025) - Published 5 June, 2025

Difference in the in-plane anomalous Hall response in thin films of the Zintl compound EuA2Sb2 (A=Zn,Cd)

Hsiang Lee, Shinichi Nishihaya, Markus Kriener, Jun Fujioka, Ayano Nakamura, Yuto Watanabe, Hiroaki Ishizuka, and Masaki Uchida

Phys. Rev. B 111, L241106 (2025) - Published 6 June, 2025

Spectral signatures of residual electron pairing in the extended Hubbard Su-Schrieffer-Heeger model

Debshikha Banerjee, Alberto Nocera, George A. Sawatzky, Mona Berciu, and Steven Johnston

Phys. Rev. B 111, L241107 (2025) - Published 9 June, 2025

Tracking the variation of entanglement Rényi negativity: A quantum Monte Carlo study

Yi-Ming Ding, Yin Tang, Zhe Wang, Zhiyan Wang, Bin-Bin Mao, and Zheng Yan

Phys. Rev. B 111, L241108 (2025) - Published 10 June, 2025

Non-Bloch Dirac points and phase diagram in the stacked non-Hermitian Su-Schrieffer-Heeger model

Megan Schoenzeit, Chang Shu, Kai Zhang, and Kai Sun

Phys. Rev. B 111, L241109 (2025) - Published 11 June, 2025

Linear scaling relation between two-dimensional massless Dirac fermion Fermi velocity and Fe-As bond length in iron arsenide superconductor systems

Chengpu Lv, Jianzhou Zhao, Yueshan Xu, Yu Song, Chenglin Zhang, Mykhaylo Ozerov, Pengcheng Dai, Nan-Lin Wang, and Zhi-Guo Chen (谌志国)

Phys. Rev. B 111, L241110 (2025) - Published 12 June, 2025

Using magneto-infrared spectroscopy, the authors identify here the existence of topologically nontrivial 2D massless Dirac fermions in the superconducting and antiferromagnetic bulk state of NaFeAs. Also, the Fermi velocity of 2D massless Dirac fermions in NaFeAs and AFe2As2 (A=Ca, Ba) exhibits a linear relationship with the Fe-As bond length. This work opens up new avenues for exploring and tuning novel quantum phenomena based on topologically nontrivial 2D massless Dirac fermions in the superconducting bulk states of 3D materials.

Bounds on entanglement entropy from quantum geometry

Alexander Kruchkov and Shinsei Ryu

Phys. Rev. B 111, L241111 (2025) - Published 16 June, 2025

Intrinsic perturbation induced anomalous higher-order boundary states in non-Hermitian systems

Hui-Qiang Liang, Zuxuan Ou, Linhu Li, and Guo-Fu Xu

Phys. Rev. B 111, L241112 (2025) - Published 16 June, 2025

From the Shastry-Sutherland model to the J1−J2 Heisenberg model

Xiangjian Qian, Rongyi Lv, Jong Yeon Lee, and Mingpu Qin

Phys. Rev. B 111, L241113 (2025) - Published 26 June, 2025

Evidence of a Kondo lattice quantum critical point and of non-Fermi liquid behavior in the intercalated layered system V5S8

Hancheng Yang, Hicham Moutaabbid, Benoît Baptiste, David Hrabovsky, Andrea Gauzzi, and Yannick Klein

Phys. Rev. B 111, L241115 (2025) - Published 30 June, 2025

Stokes flow in an electronic fluid with odd viscosity

Yonatan Messica, Alex Levchenko, and Dmitri B. Gutman

Phys. Rev. B 111, L241116 (2025) - Published 30 June, 2025

Diffusive charge transport in the gapped one-dimensional Hubbard model at all finite temperatures

J. M. P. Carmelo and P. D. Sacramento

Phys. Rev. B 111, L241117 (2025) - Published 30 June, 2025

Semiconductors I: bulk

Lifetime of triplet excitons in organic LEDs based on thermally activated delayed fluorescence

G. A. H. Wetzelaer

Phys. Rev. B 111, L241201 (2025) - Published 11 June, 2025

In organic light-emitting diodes (OLEDs) based on thermally activated delayed fluorescence (TADF), the interactions between triplet excitons and other quasiparticles cause device degradation and a decreased efficiency at high brightness. Here, it is demonstrated that the lifetime of triplet excitons in a TADF OLED closely follows the delayed fluorescence lifetime of the TADF emitter. Therefore, the triplet concentration in a working OLED can be directly inferred from a photoluminescence experiment, enabling facile quantification of triplet-related interactions.

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

Two-level system nanomechanics in the blue-detuned regime

Guillaume Bertel, Clément Dutreix, and Fabio Pistolesi

Phys. Rev. B 111, L241301 (2025) - Published 5 June, 2025

Growth rate of hexagonal SiGe multi-quantum wells

Wouter H. J. Peeters, Marvin M. Jansen, Mette F. Schouten, Victor T. van Lange, Marco Vettori, Marcel A. Verheijen, Jos E. M. Haverkort, and Erik P. A. M. Bakkers

Phys. Rev. B 111, L241302 (2025) - Published 11 June, 2025

Surface physics, nanoscale physics, low-dimensional systems

Switchable non-Hermitian skin effect in Bogoliubov modes

Hsuan Lo, You Wang, Rimi Banerjee, Baile Zhang, and Y. D. Chong

Phys. Rev. B 111, L241401 (2025) - Published 2 June, 2025

Lorenz ratios of diagonal and Hall conductivities in a Dirac electron liquid

Alex Levchenko

Phys. Rev. B 111, L241402 (2025) - Published 2 June, 2025

Emergence of aligned nontopological and crossed topological spin helices with unconventional spin-orbit manipulation

Hao Yang, Xue Li, Wei Wang, Ning Hao, Ping Zhang, and Jiyong Fu

Phys. Rev. B 111, L241403 (2025) - Published 4 June, 2025

Multisubband spin-orbit (SO) quantum systems with additional orbital degrees of freedom offer a new avenue for pursuing advanced functionalities in spintronics. The authors unlock here the usual one-way bottleneck in multisubband SO control, uncover the emergence of aligned nontopological and crossed topological (TP) spin helices, and achieve the interconversion between two the distinct phases via in situ electrical means. This opens up new possibilities for exploiting robust, electrically switchable spin phases—whether TP or non-TP—for next-generation spintronic applications.

Intrinsic T-odd spin Hall effect in altermagnets and intrinsic-extrinsic classification in quantum transport

Miaomiao Wei, Longjun Xiang, Fuming Xu, Baigeng Wang, and Jian Wang

Phys. Rev. B 111, L241404 (2025) - Published 11 June, 2025

Super-Poissonian noise from quasiparticle poisoning in electron transport through a pair of Majorana bound states

Florinda Viñas Boström and Patrik Recher

Phys. Rev. B 111, L241405 (2025) - Published 27 June, 2025

All-electrical scheme for valley polarization in graphene

Sachchidanand Das and Abhiram Soori

Phys. Rev. B 111, L241406 (2025) - Published 27 June, 2025

Atomic collapse of high-order singular potentials in graphene

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

Phys. Rev. B 111, L241407 (2025) - Published 27 June, 2025

ARTICLES

Electronic structure and strongly correlated systems

Infinite symmetry prevents disorder-induced localization in two dimensions

C. A. Trugenberger

Phys. Rev. B 111, 245101 (2025) - Published 2 June, 2025

Unconventional excitonic insulators in two-dimensional topological materials

L. Maisel Licerán and H. T. C. Stoof

Phys. Rev. B 111, 245102 (2025) - Published 2 June, 2025

Hybridization-induced quantum phase transition in the bilayer Hubbard model

Xun Liu and Mi Jiang

Phys. Rev. B 111, 245103 (2025) - Published 2 June, 2025

Light-induced anomalous Hall conductivity in the massive three-dimensional Dirac semimetal Co3Sn2S2

Naotaka Yoshikawa, Shun Okumura, Yoshua Hirai, Kazuma Ogawa, Kohei Fujiwara, Junya Ikeda, Akihiro Ozawa, Takashi Koretsune, Ryotaro Arita, Aditi Mitra, Atsushi Tsukazaki, Takashi Oka, and Ryo Shimano

Phys. Rev. B 111, 245104 (2025) - Published 2 June, 2025

The authors investigate here light-induced Dirac-to-Weyl conversion in the massive 3D Dirac semimetal Co3Sn2S2 via ultrafast mid-infrared pump–terahertz probe Faraday rotation spectroscopy. The observed anomalous Hall conductivity under circularly polarized light shows electric field and driving frequency dependence consistent with Floquet-induced Berry curvature from Dirac band splitting. The estimated splitting reaches ~60% of the mass gap, and a theoretical calculation based on Floquet theory quantitatively reproduces the experimental observation, highlighting a promising approach for realizing Floquet-Weyl states in gapped 3D Dirac systems.

Spin state of iron in I4¯2d-type Mg2SiO4 at ultrahigh pressures

Tianqi Wan, Yang Sun, and Renata M. Wentzcovitch

Phys. Rev. B 111, 245105 (2025) - Published 2 June, 2025

Latent Haldane models

Anouar Moustaj, Lumen Eek, Malte Röntgen, and Cristiane Morais Smith

Phys. Rev. B 111, 245106 (2025) - Published 2 June, 2025

Comparing quantum complexity and quantum fidelity

Nadir Samos Sáenz de Buruaga

Phys. Rev. B 111, 245107 (2025) - Published 3 June, 2025

Multiparty entanglement microscopy of quantum Ising models in one, two, and three dimensions

Liuke Lyu, Menghan Song, Ting-Tung Wang, Zi Yang Meng, and William Witczak-Krempa

Phys. Rev. B 111, 245108 (2025) - Published 3 June, 2025

Entanglement scaling and criticality of infinite-size quantum many-body systems in continuous space addressed by a tensor network approach

Rui Hong, Hao-Wei Cui, An-Chun Ji, and Shi-Ju Ran

Phys. Rev. B 111, 245109 (2025) - Published 3 June, 2025

Duality-preserving deformation of 3+1d lattice Z2 gauge theory with exact gapped ground states

Pranay Gorantla and Tzu-Chen Huang

Phys. Rev. B 111, 245110 (2025) - Published 3 June, 2025

Quantum coherent states of mass-imbalanced electron-hole system within optical microcavities

Thi-Hau Nguyen, Thi-Hong-Hai Do, and Van-Nham Phan

Phys. Rev. B 111, 245111 (2025) - Published 4 June, 2025

Room-temperature low-field magnetoelectric effects in hexaferrite Ba0.5Sr2.5Co2Fe24O41

J. C. Huang, Y. H. Ding, X. Q. Liu, and X. M. Chen

Phys. Rev. B 111, 245112 (2025) - Published 4 June, 2025

Electronic structure and quasiparticle state character in the ferromagnetic Kondo lattice CeNiSb2

Bo Wang, Xuwen He, Wei Feng, Dengpeng Yuan, Yi Liu, Xiangfei Yang, Yulu He, Qin Liu, Qunqing Hao, Jian Wu, Yun Zhang, Zhengtai Liu, Mao Ye, Jishan Liu, Shiyong Tan, Qiuyun Chen, and Xinchun Lai

Phys. Rev. B 111, 245113 (2025) - Published 4 June, 2025

Valley- and spin-polarized states in Bernal bilayer graphene

R. David Mayrhofer and Andrey V. Chubukov

Phys. Rev. B 111, 245114 (2025) - Published 4 June, 2025

Tensorized orbitals for computational chemistry

Nicolas Jolly, Yuriel Núñez Fernández, and Xavier Waintal

Phys. Rev. B 111, 245115 (2025) - Published 5 June, 2025

Coexistence of charge density wave and field-tuned magnetic states in TmNiC2

Kamil K. Kolincio, Marta Roman, Valerio Tammurello, Simone Di Cataldo, Daniel Matulka, Sonia Francoual, Berthold Stöger, and Herwig Michor

Phys. Rev. B 111, 245116 (2025) - Published 5 June, 2025

Quantum dynamics in a spin-12 square lattice J1−J2−δ altermagnet

Yang Liu, Shiqi Shao, Saisai He, Z. Y. Xie, Jia-Wei Mei, Hong-Gang Luo, and Jize Zhao

Phys. Rev. B 111, 245117 (2025) - Published 5 June, 2025

The authors investigate here the spin-½ J-J′-δ Heisenberg model on the square lattice, which is a prototypical model hosting altermagnetism. In addition to the chirality splitting of the magnon modes, the longitudinal modes may also split in the presence of a finite δ. In particular, when δ≳0.5, the lowest longitudinal excitation mode may be lower than the upper magnon branch, demonstrating rich dynamical behaviors in altermagnets.

DC electric field driven discretization of single-particle excitation spectra in a Mott insulator

Koudai Sugimoto

Phys. Rev. B 111, 245118 (2025) - Published 5 June, 2025

Vortex molecules in exciton-polariton condensates formed by uniform nonresonant pumping

Junwei Hu, Muhammad Idrees, Kun Zhang, Ji Lin, Hui-jun Li, and Alexey Kavokin

Phys. Rev. B 111, 245119 (2025) - Published 5 June, 2025

Finite-temperature kinetic ferromagnetism in the square-lattice Hubbard model

Robin C. Newby and Ehsan Khatami

Phys. Rev. B 111, 245120 (2025) - Published 6 June, 2025

Sr2NbO4: A 4d analog of the layered perovskite Sr2VO4

Leonid S. Taran, Anastasia E. Lebedeva, and Sergey V. Streltsov

Phys. Rev. B 111, 245121 (2025) - Published 6 June, 2025

Origin of the insulating state in the honeycomb iridate Cu2IrO3

Ying Li, Roger D. Johnson, Yogesh Singh, Radu Coldea, and Roser Valentí

Phys. Rev. B 111, 245122 (2025) - Published 9 June, 2025

It is an unresolved challenge to reconcile the expected metallic state with the experimentally observed insulating behavior in the honeycomb Kitaev candidate Cu2IrO3. The authors unveil here a possible microscopic origin: an instability towards charge ordering of the Ir ions with alternating magnetic Ir4+ and nonmagnetic Ir3+ ions arranged on the honeycomb lattice. The interpenetrating Ir4+ and Cu2+ triangular lattices present a novel type of honeycomb Kitaev lattice, composed of two types of magnetic ion.

Linear magnetoresistance, anomalous Hall effect, and de Haas–van Alphen oscillations in antiferromagnetic SmAg2Ge2 single crystals

Kanchan Bala, Rahul Verma, Shovan Dan, Suman Nandi, Ruta Kulkarni, Bahadur Singh, and A. Thamizhavel

Phys. Rev. B 111, 245123 (2025) - Published 9 June, 2025

Chaotic-integrable transition for the disordered orbital Hatsugai-Kohmoto model

Ying-Lin Li, Chen-Te Ma, and Po-Yao Chang

Phys. Rev. B 111, 245124 (2025) - Published 9 June, 2025

Band structure reconstruction in the topological semimetal PrAlSi

B. X. Gao, M. Lyu, L. Y. Cao, L. Wang, X. T. Zhang, X. Y. Zhang, P. J. Sun, and R. Y. Chen

Phys. Rev. B 111, 245125 (2025) - Published 9 June, 2025

Sudden change in the entanglement Hamiltonian: Phase diagram of an Ising entanglement Hamiltonian

Zhe Wang, Siyi Yang, Bin-Bin Mao, Meng Cheng, and Zheng Yan

Phys. Rev. B 111, 245126 (2025) - Published 10 June, 2025

Euler band topology in spin-orbit coupled magnetic systems

Seung Hun Lee, Yuting Qian, and Bohm-Jung Yang

Phys. Rev. B 111, 245127 (2025) - Published 11 June, 2025

Image of helical local moment magnetic order in the STM spectrum

Alireza Akbari and Peter Thalmeier

Phys. Rev. B 111, 245129 (2025) - Published 12 June, 2025

Chiral vortex-line liquid of three-dimensional interacting Bose systems with moat dispersion

Bahar Jafari-Zadeh, Chenan Wei, and Tigran A. Sedrakyan

Phys. Rev. B 111, 245130 (2025) - Published 12 June, 2025

The chiral vortex-line liquid (CVLL) is a newly predicted quantum phase in three-dimensional Bose systems with “moat” dispersion, where energy minima create continuous surfaces in momentum space. By generalizing Chern-Simons flux attachment to 3D-combining planar Chern-Simons phases with Jordan-Wigner strings along the vortex lines, the CVLL emerges as a noncondensed topologically ordered liquid that exhibits broken time-reversal symmetry, vortex-line excitations, and gapless surface states. Monte Carlo simulations confirm that, at low densities, the CVLL energetically outcompetes conventional condensates, making it a ground-state candidate for frustrated magnets, excitonic insulators, ultracold atoms, superfluid helium, and heavy-ion collision physics.

Intrinsic spin Nernst effect in topological Dirac and magnetic Weyl semimetals

Taiki Matsushita, Akihiro Ozawa, Yasufumi Araki, Junji Fujimoto, and Masatoshi Sato

Phys. Rev. B 111, 245131 (2025) - Published 12 June, 2025

Interplay between electron localization, magnetic order, and Jahn-Teller distortion dictates LiMnO2 phase stability

Ronald L. Kam, Luca Binci, Aaron D. Kaplan, Kristin A. Persson, Nicola Marzari, and Gerbrand Ceder

Phys. Rev. B 111, 245132 (2025) - Published 13 June, 2025

Classical fractons: Local chaos, global broken ergodicity, and an arrow of time

Aryaman Babbar, Ylias Sadki, Abhishodh Prakash, and S. L. Sondhi

Phys. Rev. B 111, 245134 (2025) - Published 16 June, 2025

Real-space representation of the second Chern number

Tsuyoshi Shiina, Fumina Hamano, and Takahiro Fukui

Phys. Rev. B 111, 245135 (2025) - Published 17 June, 2025

Higher Hall conductivity from a single wave function: Obstructions to symmetry-preserving gapped edge of (2+1)-dimensional topological order

Ryohei Kobayashi, Taige Wang, Tomohiro Soejima (副島智大), Roger S. K. Mong (蒙紹璣), and Shinsei Ryu

Phys. Rev. B 111, 245136 (2025) - Published 17 June, 2025

Magnetochiral anisotropy on a quantum spin Hall edge

Youjian Chen, Gary Quaresima, Wenjin Zhao, Elliott Runburg, David Cobden, and D. A. Pesin

Phys. Rev. B 111, 245137 (2025) - Published 17 June, 2025

Antiferromagnetic and bond-order-wave phases in the half-filled two-dimensional optical Su-Schrieffer-Heeger-Hubbard model

Andy Tanjaroon Ly, Benjamin Cohen-Stead, and Steven Johnston

Phys. Rev. B 111, 245138 (2025) - Published 18 June, 2025

Electronic similarities between two-dimensional α-PbO structured ruthenium chalcogenides and the 11-family iron-based superconductors

Yang Yang, Shi-quan Feng, Hong-Yan Lu, and Qiang-Hua Wang

Phys. Rev. B 111, 245139 (2025) - Published 20 June, 2025

Anyon polarons as a window into competing phases of the Kitaev honeycomb model under a Zeeman field

Chuan Chen and Inti Sodemann Villadiego

Phys. Rev. B 111, 245140 (2025) - Published 20 June, 2025

Analytical modeling of time-varying and dispersive metasurfaces with surface susceptibility operators

Suat Barış İplikçioğlu and M. I. Aksun

Phys. Rev. B 111, 245141 (2025) - Published 20 June, 2025

Lattice-driven magnetic and topological phase transitions in monolayer 1T−CrTe2: Role of structural dimerization

Haojie Sun, Jiali Chen, and Wei Jiang

Phys. Rev. B 111, 245142 (2025) - Published 20 June, 2025

Boundary topological insulators and superconductors of Altland-Zirnbauer tenfold classes

Xun-Jiang Luo and Fengcheng Wu

Phys. Rev. B 111, 245143 (2025) - Published 20 June, 2025

Bang-bang preparation of a quantum many-body ground state in a finite lattice: Optimization of the algorithm with a tensor network

Ihor Sokolov and Jacek Dziarmaga

Phys. Rev. B 111, 245144 (2025) - Published 20 June, 2025

Majorana Kramers pairs in synthetic high-spin Chern insulators

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

Phys. Rev. B 111, 245145 (2025) - Published 20 June, 2025

Aspects of normal-state resistivity of the cuprate superconductors Bi2Sr2CuO6+x,Tl2Ba2CuO6+x, and HgBa2CuO4+x

Samantha Shears, Michael Arciniaga, and B. Sriram Shastry

Phys. Rev. B 111, 245146 (2025) - Published 20 June, 2025

Electron transport in a moiré superlattice ribbon structure

Han-Lin Liu, J. Wang, and Jun-Feng Liu

Phys. Rev. B 111, 245147 (2025) - Published 23 June, 2025

Nonstabilizerness in kinetically constrained Rydberg atom arrays

Ryan Smith, Zlatko Papić, and Andrew Hallam

Phys. Rev. B 111, 245148 (2025) - Published 23 June, 2025

Oscillate and renormalize: Fast phonons reshape the Kondo effect in flat-band systems

Liam L. H. Lau, Andreas Gleis, Daniel Kaplan, Premala Chandra, and Piers Coleman

Phys. Rev. B 111, 245149 (2025) - Published 23 June, 2025

This paper revisits an age-old question: when are phonons important in strongly correlated materials? As you will see, the answer lies in in the frequency of the phonons compared to the electrons; slow phonons cannot respond to valence fluctuations and are irrelevant, whereas fast phonons always change the charge dynamics, irrespective of the strength of the coupling. This result may be particularly relevant for 2D moiré systems such as twisted bilayer graphene (TBG), where phonons are fast compared to the moiré energy scales.

Kondo screening cloud in d-wave altermagnetic metal with cubic Rashba spin-orbit effect

Hao-Ran Li, Fang Lin, Lin Li, Dong-Hui Xu, and Jin-Hua Sun

Phys. Rev. B 111, 245150 (2025) - Published 23 June, 2025

Thermopower across Fermi-volume-changing quantum phase transitions without translational symmetry breaking

Peter Lunts, Aavishkar A. Patel, and Subir Sachdev

Phys. Rev. B 111, 245151 (2025) - Published 24 June, 2025

Probing the quantum critical phase with neural network wavefunctions

Haoxiang Chen, Weiluo Ren, Xiang Li, and Ji Chen

Phys. Rev. B 111, 245152 (2025) - Published 24 June, 2025

Superconductivity in doped planar Dirac insulators: A renormalization group study

Sk Asrap Murshed, Sanjib Kumar Das, and Bitan Roy

Phys. Rev. B 111, 245153 (2025) - Published 25 June, 2025

Stability of quasiparticle creation and multiband quantum geometry in fractional Chern insulators under magnetic fields

Nozomi Higashino and Yasuhiro Tada

Phys. Rev. B 111, 245154 (2025) - Published 25 June, 2025

Theory of interaction-induced charge order in CrSBr

Zhi-Hao Cui, Andrew J. Millis, and David R. Reichman

Phys. Rev. B 111, 245155 (2025) - Published 25 June, 2025

Squeezing quantum states in three-dimensional twisted crystals

Võ Tiến Phong, Kason Kunkelmann, Christophe De Beule, Mohammed M. Al Ezzi, Robert-Jan Slager, Shaffique Adam, and E. J. Mele

Phys. Rev. B 111, 245156 (2025) - Published 25 June, 2025

Strongly correlated topological surface states in the type-II Dirac semimetal NiTe2

Neeraj Bhatt, Asif Ali, Deepali Sharma, Sakshi Bansal, Manasi Mandal, Ravi Prakash Singh, and Ravi Shankar Singh

Phys. Rev. B 111, 245157 (2025) - Published 25 June, 2025

Quantum many-body scars as remnants of stable many-body periodic orbits

Keita Omiya

Phys. Rev. B 111, 245158 (2025) - Published 26 June, 2025

Turning qubit noise into an advantage: Automatic state preparation and long-time dynamics for impurity models on quantum computers

Corentin Bertrand, Pauline Besserve, Michel Ferrero, and Thomas Ayral

Phys. Rev. B 111, 245159 (2025) - Published 27 June, 2025

Strongly correlated materials models are notoriously hard to solve. Even on quantum computers, qubit noise typically limits computation to small systems. The authors propose here a quantum algorithm to instead make noise useful for computing materials properties, by making it behave equivalently to the dissipative environment of electrons in solids. With qubit noise, the authors can obtain long time response functions that would require far more noiseless qubits.

Physical properties of RCo2Al8 single crystals (R=La,Ce,Pr,Nd, and Sm): An emerging structure-type for anisotropic Kondo-lattice studies

Fernando A. Garcia, Sushma Kumari, Juan Schmidt, Cris Adriano, Aashish Sapkota, Paul C. Canfield, Rebecca Flint, and Raquel A. Ribeiro

Phys. Rev. B 111, 245160 (2025) - Published 27 June, 2025

Correlation between magnetism and the Verwey transition in magnetite

Karolina Podgórska, Mateusz A. Gala, Kamila Komędera, N. K. Chogondahalli Muniraju, Serena Nasrallah, Zbigniew Kąkol, Joseph Sabol, Christophe Marin, Adam Włodek, Andrzej Kozłowski, J. Emilio Lorenzo, Neven Barišić, Damian Rybicki, and Wojciech Tabiś

Phys. Rev. B 111, 245161 (2025) - Published 30 June, 2025

Semiconductors I: bulk

Conductivity of high-mobility epitaxial GdN

Edward X. M. Trewick, B. J. Ruck, W. F. Holmes-Hewett, and H. J. Trodahl

Phys. Rev. B 111, 245201 (2025) - Published 10 June, 2025

Enhancing thermoelectric performance across the electronic phase transition in Yb0.3Co4Sb12

Hong-Jie Pang, Hao Yu, Lan Yu, Feng-Xian Bai, Wei-Jian Li, Liu-Cheng Chen, Peng-Fei Qiu, Qing Peng, and Xiao-Jia Chen

Phys. Rev. B 111, 245202 (2025) - Published 23 June, 2025

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

Anisotropic supercurrent suppression and revivals in a graphene-based Josephson junction under in-plane magnetic fields

Philipp Schmidt, Katarina Stanojević, Kenji Watanabe, Takashi Taniguchi, Bernd Beschoten, Vincent Mourik, and Christoph Stampfer

Phys. Rev. B 111, 245301 (2025) - Published 6 June, 2025

Transport anisotropy in semimetallic and stoichiometric wurtzite inversion domain boundaries

Lipin Chen, Laurent Pedesseau, Jinshi Zhao, and Charles Cornet

Phys. Rev. B 111, 245302 (2025) - Published 17 June, 2025

Designing flat bands and pseudo-Landau levels in GaAs with patterned gates

Pierre A. Pantaleón, Zhen Zhan, Siddhartha E. Morales, and Gerardo G. Naumis

Phys. Rev. B 111, 245303 (2025) - Published 18 June, 2025

Temperature-dependent ultrafast carrier and lattice dynamics in Dirac semimetals NiTe2 and PdTe2

Prince Sharma, Saurabh K. Saini, Kapil Kumar, and Mahesh Kumar

Phys. Rev. B 111, 245304 (2025) - Published 24 June, 2025

Surface physics, nanoscale physics, low-dimensional systems

Tunneling optoresistance effect and magneto-optoresistance effect in planar heterostructures

Yong Guo, Sheng-Xiang Wang, Jing-Wen Huang, and Hai-Feng Lü

Phys. Rev. B 111, 245401 (2025) - Published 2 June, 2025

Atomic collapse in gapped graphene: Lattice and valley effects

Jing Wang, Xiaotai Wu, Wen-Sheng Zhao, Yuhua Cheng, Yue Hu, and François M. Peeters

Phys. Rev. B 111, 245402 (2025) - Published 2 June, 2025

Wrinkles in graphene suspended on flat substrates: Structure and collapse under hydrostatic pressure

Alexander V. Savin and Artem P. Klinov

Phys. Rev. B 111, 245403 (2025) - Published 3 June, 2025

Ferroelectric MBi2Te4 (M=Ge,Sn,Pb) bilayers with giant Rashba spin splitting and tunable first- or second-order topological states

Chao Yang, Menghao Wu, Tao Li, Chenqiang Hua, Wang Yao, Yadong Liu, Yin Wang, and Tai Min

Phys. Rev. B 111, 245405 (2025) - Published 4 June, 2025

Interfacial exciton vapor-liquid phase separation: Classical and quantum finite-lattice predictions

Dor Ben-Amotz

Phys. Rev. B 111, 245406 (2025) - Published 5 June, 2025

Floquet engineering of strongly driven inelastic heat engines

Jincheng Lu, Junjie Liu, Jian-Hua Jiang, and Chen Wang

Phys. Rev. B 111, 245407 (2025) - Published 5 June, 2025

Topological tenfold classification and the entanglement of two qubits

Nadav Orion and Eric Akkermans

Phys. Rev. B 111, 245408 (2025) - Published 6 June, 2025

The authors reveal here a key link between quantum entanglement and the topology of Hilbert spaces in condensed matter physics. Antiunitary symmetries and the Cartan tenfold classification connect the entanglement of evolution operators with the topology of the Hamiltonian. The study is validated with two-qubit systems and establishes groundwork for expanding to complex systems. Direct mapping to quantum graphs enables computation of topological integers.

Thermoelastic damping across the phase transition in van der Waals magnets

Alvaro Bermejillo-Seco, Xiang Zhang, Maurits J. A. Houmes, Makars Šiškins, Herre S. J. van der Zant, Peter G. Steeneken, and Yaroslav M. Blanter

Phys. Rev. B 111, 245409 (2025) - Published 6 June, 2025

Real-space imaging of Bose-Einstein condensation behavior in infinite-layer cuprates

Qun Zhu, Jia-Qi Fan, Xue-Qing Yu, Yan-Ling Xiong, Hang Yan, Rui-Feng Wang, Can-Li Song, Xu-Cun Ma, and Qi-Kun Xue

Phys. Rev. B 111, 245410 (2025) - Published 9 June, 2025

Theory of polar skyrmions in layered structures of ferroelectric perovskites

Snehasish Sen and Sudhansu S. Mandal

Phys. Rev. B 111, 245411 (2025) - Published 10 June, 2025

Thermodynamics of a quantum subsystem

Parth Kumar and Charles A. Stafford

Phys. Rev. B 111, 245412 (2025) - Published 10 June, 2025

Nonlinear Hall effects with an exceptional ring

Fang Qin (覃昉), Ruizhe Shen, and Ching Hua Lee

Phys. Rev. B 111, 245413 (2025) - Published 11 June, 2025

Optical pumping controls anisotropic response in semi-Dirac systems

Bristi Ghosh, Malay Bandyopadhyay, and Ashutosh Singh

Phys. Rev. B 111, 245414 (2025) - Published 11 June, 2025

Shear-resistant topology in the quasi-one-dimensional van der Waals material Bi4Br4

Jonathan K. Hofmann, Hoyeon Jeon, Saban M. Hus, Yuqi Zhang, Mingqian Zheng, Tobias Wichmann, An-Ping Li, Jin-Jian Zhou, Zhiwei Wang, Yugui Yao, Bert Voigtländer, F. Stefan Tautz, and Felix Lüpke

Phys. Rev. B 111, 245415 (2025) - Published 12 June, 2025

Possible unconventional surface superconductivity in the half-Heusler compound YPtBi

Eylon Persky, Alan Fang, Xinyang Zhang, Carolina Adamo, Phillip Wu, Eli Levenson-Falk, Chandra Shekhar, Claudia Felser, Binghai Yan, and Aharon Kapitulnik

Phys. Rev. B 111, 245417 (2025) - Published 13 June, 2025

The authors uncover here time-reversal symmetry breaking superconductivity at the (111) surface of the half-Heusler compound YPtBi. Scanning tunneling microscopy, mutual inductance, and polar Kerr effect measurements reveal that surface superconductivity and magnetism onset together at temperatures up to three times higher than the bulk. The results indicate distinct origins and order parameter symmetries for surface and bulk superconductivity.

Topological phases in fractals: Local spin Chern marker in the Kane-Mele-Rashba model on the Sierpinski carpet

L. L. Lage, A. B. Félix, S. dos A. Sousa-Júnior, A. Latgé, and Tarik P. Cysne

Phys. Rev. B 111, 245418 (2025) - Published 16 June, 2025

Topological phase diagram and quantum magnetotransport effects in (Pb,Sn)Se quantum wells with magnetic barriers (Pb,Eu)Se

Alexander Kazakov, Valentine V. Volobuev, Chang-Woo Cho, Benjamin A. Piot, Zbigniew Adamus, Tomasz Wojciechowski, Tomasz Wojtowicz, Gunther Springholz, and Tomasz Dietl

Phys. Rev. B 111, 245419 (2025) - Published 16 June, 2025

High-temperature Bose-Einstein condensation of dark excitons in holey graphyne

Ying Yue, Qiu-Shi Huang, Hasan Sahin, and Jun Kang

Phys. Rev. B 111, 245420 (2025) - Published 17 June, 2025

Signatures of valley drift in the diversified band dispersions of bright, gray, and dark excitons in MoS2 monolayers under uniaxial strains

Ching-Hung Shih, Guan-Hao Peng, Ping-Yuan Lo, Wei-Hua Li, Mei-Ling Xu, Chao-Hsin Chien, and Shun-Jen Cheng

Phys. Rev. B 111, 245422 (2025) - Published 18 June, 2025

The authors present here a comprehensive theoretical investigation of the excitonic band dispersions in uniaxially strained MoS2 monolayers by solving the Bethe-Salpeter equation within a first-principles based Wannier tight-binding framework. As a consequence of strain-induced valley drift, applying uniaxial strain to a MoS2 monolayer is found to lead to diversified exciton band dispersions, diffusive transport properties, and angle-resolved optical patterns of bright, gray, and dark excitons. Interestingly, the band dispersion of the dark exciton undergoes the most significant reshaping, accompanied by an unusual sign reversal of the exciton effective mass.

Strain-induced giant second-order susceptibility in monolayer WSe2

Zhizi Guan, Yunkun Xu, Junwen Li, Zhiwei Peng, Dangyuan Lei, and David J. Srolovitz

Phys. Rev. B 111, 245423 (2025) - Published 20 June, 2025

Non-Hermitian topology of transport in the quantum Hall phases in graphene

Raghav Chaturvedi, Viktor Könye, Ewelina M. Hankiewicz, Jeroen van den Brink, and Ion Cosma Fulga

Phys. Rev. B 111, 245424 (2025) - Published 20 June, 2025

Energy-resolved tip-orbital fingerprint in scanning tunneling spectroscopy based on the revised Chen's derivative rule

Ivan Abilio and Krisztián Palotás

Phys. Rev. B 111, 245425 (2025) - Published 20 June, 2025

Coulomb blockade of transport in topological superconductor nanowires

Vladimir Bubanja

Phys. Rev. B 111, 245426 (2025) - Published 20 June, 2025

Near-field infrared nanoscopy of bilayered, nanostructured, and anisotropic media

Patrick McArdle, Haoyue Jiang, David J. Lahneman, Ubaid Kazianga, Jingyi Chen, Amlan Biswas, and M. Mumtaz Qazilbash

Phys. Rev. B 111, 245427 (2025) - Published 20 June, 2025

Edge states and persistent current in a PT-symmetric extended Su-Schrieffer-Heeger model with generic boundary conditions

Supriyo Ghosh, Pijush K. Ghosh, and Shreekantha Sil

Phys. Rev. B 111, 245428 (2025) - Published 20 June, 2025

Natural and intrinsic vacancies in two-dimensional g-C3N4 for trapping isolated B and C atoms as color centers

Manqi You, Chaoyu He, Gencai Guo, and Jianxin Zhong

Phys. Rev. B 111, 245429 (2025) - Published 23 June, 2025

Quantum simulation of spin tunneling field-effect transistor based on antimonene

Hossein N. Niknezhad and Shoeib Babaee Touski

Phys. Rev. B 111, 245430 (2025) - Published 23 June, 2025

High-temperature superconductivity with nontrivial electronic topology in monolayer h-V2N3

Bo Wang, Liying Wang, Chao Jin, and Haili Bai

Phys. Rev. B 111, 245431 (2025) - Published 24 June, 2025

Ferroelectrovalley induced by lattice breathing in multiferroic single-layer Ce2CO2

Yibo Liu, Yangyang Feng, Xinru Li, Ying Dai, Zhao Qian, Baibiao Huang, and Yandong Ma

Phys. Rev. B 111, 245432 (2025) - Published 24 June, 2025

Photoassisted shot noise probes multiple charge carriers in quantum Hall edges

Kishore Iyer, F. Ronetti, B. Grémaud, T. Martin, T. Jonckheere, and J. Rech

Phys. Rev. B 111, 245433 (2025) - Published 25 June, 2025

Abelian fractional quantum Hall (FQH) states host anyons with different charges that can tunnel simultaneously across constrictions. Conventional methods often detect only one charge, possibly due to low tunneling amplitudes of others. The authors propose here photoassisted shot noise (PASN), DC shot noise combined with incident photons, as a compelling probe. When the photon frequency matches the anyon’s Josephson frequency, a resonance occurs in PASN, even for weakly tunneling anyons. By sweeping the frequency, all anyon types can distinctly be identified. These resonances remain robust under realistic experimental conditions, offering direct access to the rich topological order of Abelian FQH states.

Effective K-valley Hamiltonian for transition metal dichalcogenide bilayers under pressure and application to twisted bilayers with pressure-induced topological phase transitions

Miftah Hadi Syahputra Anfa, Sabri Elatresh, Hocine Bahlouli, and Michael Vogl

Phys. Rev. B 111, 245434 (2025) - Published 26 June, 2025

Large-angle negative refraction and negative reflection of Dirac electrons

Mahdiyeh Sadrara and MirFaez Miri

Phys. Rev. B 111, 245435 (2025) - Published 27 June, 2025

States decoupled from the surface in short Si atomic chains

T. Kwapiński, M. Dachniewicz, M. Kurzyna, and M. Jałochowski

Phys. Rev. B 111, 245438 (2025) - Published 30 June, 2025

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