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HIGHLIGHTED ARTICLES

Resonant inelastic x-ray scattering investigation of Hund's and spin-orbit coupling in 5d2 double perovskites

Felix I. Frontini, Christopher J. S. Heath, Bo Yuan, Corey M. Thompson, John Greedan, Adam J. Hauser, F. Y. Yang, Mark P. M. Dean, Mary H. Upton, Diego M. Casa, and Young-June Kim

Phys. Rev. B 112, 165103 (2025) - Published 2 October, 2025

The interplay of spin-orbit coupling and electronic correlation in multiorbital crystalline systems has a profound impact on their magnetic and electronic properties. Unfortunately, these energy scales are similar in 5d systems and are difficult to disentangle even with knowledge of the electronic energy levels. Here, the authors remove this ambiguity by comparing L2 and L3 edge resonant inelastic x-ray scattering measurements of 5d2 double perovskites and using dipole selection rules to determine the energy scales of spin-orbit and Hund’s coupling.

Doping-induced nematic and stripe orders within the charge density wave state of TiSe2

Daniel Muñoz-Segovia, Jörn W. F. Venderbos, Adolfo G. Grushin, and Fernando de Juan

Phys. Rev. B 112, 165119 (2025) - Published 14 October, 2025

The layered material TiSe2 provides a versatile platform where charge density wave (CDW) and superconducting phases can be tuned by doping, pressure, dimensionality, and light engineering. The authors propose here that the uncontrolled native doping may underlie the long-standing experimental discrepancies on the symmetry of the CDW. By constructing low-energy models for TiSe2 coupled to the conventional order parameter, they show that doping generically drives transitions from threefold symmetric to nematic and stripe CDW phases.

Efficient G0W0 and Bethe-Salpeter equation calculations of heterostructures within an all-electron framework

Maximilian Schebek, Ignacio Gonzalez Oliva, and Claudia Draxl

Phys. Rev. B 112, 165130 (2025) - Published 20 October, 2025

Heterostructures composed of different two-dimensional materials offer exciting opportunities for tunable optoelectronic devices, but computing their electronic and optical properties is computationally demanding. Focusing on the LAPW framework, the authors develop here an efficient additive ansatz for the screening that is constructed from the individual contributions to the polarizability. This approach enables high-precision calculations of band structures and optical spectra from from GW and the Bethe-Salpeter equation, respectively, at greatly reduced computational cost, as demonstrated for bilayer WSe2 and pyridine@MoS2.

Towards quantitative understanding of quantum dot ensemble capacitance-voltage spectroscopy

Nico F. Brosda, Phil J. Badura, İsmail Bölükbaşı, İbrahim Engin, Patrick Lindner, Sascha R. Valentin, Andreas D. Wieck, Björn Sothmann, and Arne Ludwig

Phys. Rev. B 112, 165201 (2025) - Published 1 October, 2025

As the premier on-demand single-photon emitters, quantum dots are key to future quantum technologies. The authors study here ensembles of quantum dots coupled to a charge reservoir using capacitance-voltage spectroscopy and an extended master-equation model. By incorporating the energy dependence of tunneling, they capture experimental features not explained by earlier approaches. The results emphasize how energy-dependent tunneling shapes the response of quantum dot ensembles and contribute to a clearer picture of their potential for quantum applications.

Resonant valley-specific exciton-phonon coupling in layered SnS

J. Jadczak, J. Debus, J. Andrzejewski, E. Żuberek, P. Sitarek, J. Olejnik, C.-H. Ho, and L. Bryja

Phys. Rev. B 112, 165308 (2025) - Published 20 October, 2025

The authors demonstrate here that different valleys in anisotropic 2D materials exhibit dramatically different phonon coupling hierarchies. This valley-specific reorganization pushes valleytronics in a new direction by establishing phonon scattering as an intrinsic valley fingerprint, enabling phonon-mediated valley control beyond conventional methods. The work creates connections between valleytronics and phonon physics by showing valley identity is fundamentally encoded in electron-phonon coupling strength, transforming phonons from passive dissipation channels to active players in valley manipulation, opening new pathways for valleytronic technologies.

Scattering approach to near-field radiative heat transfer

Matthias Hübler, Denis M. Basko, and Wolfgang Belzig

Phys. Rev. B 112, 165428 (2025) - Published 24 October, 2025

How are radiative heat transfer and coherent quantum transport related? Both are governed by a Landauer-type expression for the current, though arising from distinct theoretical frameworks: fluctuational electrodynamics and Landauer–Büttiker scattering theory. The authors develop here a quantum scattering theory for thermal excitations, revealing that the reactive response of thermal bodies leads to an energy-current operator beyond the Landauer–Büttiker formalism. The reactive term can dominate the heat-current noise spectrum, e.g., for coupled surface phonon polaritons.

Nonlinear quantum electrodynamics of epsilon-near-zero nanostructures

Luca Dal Negro, Riccardo Franchi, and Marco Ornigotti

Phys. Rev. B 112, 165433 (2025) - Published 30 October, 2025

The authors demonstrate here the nonlinear optical response of epsilon-near-zero (ENZ) nanostructures at the single-photon level using fully nonperturbative quantum theory of open systems with indium tin oxide materials and Kerr-type nonlinearity. Closed-form analytical results obtained for spherical nanoparticles are numerically validated and extended to geometries that can be fabricated using state-of-the-art electron-beam lithography, establishing a rigorous benchmark for understanding quantum nonlinear effects in ENZ nanostructures with optical losses. These results are important to emerging quantum technology, including on-chip single-photon nondemolition detection, sensing, and spectroscopy.

Symmetry broken states at high displacement fields in ABA trilayer graphene

Simrandeep Kaur, Unmesh Ghorai, Abhisek Samanta, Kenji Watanabe, Takashi Taniguchi, Rajdeep Sensarma, and Aveek Bid

Phys. Rev. B 112, L161103 (2025) - Published 1 October, 2025

The authors investigate here high-mobility trilayer graphene under large displacement fields, revealing symmetry-broken Landau levels from both monolayer-like and bilayer-like bands. They observe a displacement field induced enhancement of the Landé g-factor and map complex Landau level crossings in the Dirac gully regime. These findings highlight strong interaction effects, particle-hole asymmetry, and limitations of noninteracting models, advancing our understanding of quantum Hall phases in multiband graphene systems.

Interaction-driven intervalley coherence with emergent Kekulé orbitons

Hua Chen

Phys. Rev. B 112, L161105 (2025) - Published 1 October, 2025

The authors report here an intervalley coherent phase with the liberated orbital degree of freedom in a p-band honeycomb lattice. This phase is analyzed based on an orbital exchange model in the strong-coupling regime. The ensuing classical ground-state manifold enjoys a continuous symmetry dictated by the coherent phase between ±K valleys. The quantum fluctuation ultimately selects a unique ground state with emergent Kekulé orbitons through the order-by-disorder mechanism. These findings reveal a fundamentally new mechanism for the intervalley coherent phase.

Band-resolved automatic differentiation method for first-principles quantum response calculations

Minghui Sun, Nianlong Zou, Yang Li, Chong Wang, Wenhui Duan, and Yong Xu

Phys. Rev. B 112, L161124 (2025) - Published 29 October, 2025

The accurate calculation of Bloch state derivatives is numerically challenging yet indispensable for evaluating the quantum response functions, such as how materials interact with light. Here, the authors develop a band-resolved automatic differentiation approach for efficiently calculating quantum response properties, eliminating the need for manual analytical derivations and time-consuming full-band summation. This work incorporates the quantum response calculation into a broader paradigm of differentiable programming, unlocking new pathways for data-driven exploration and design of advanced quantum materials.

LETTERS

Electronic structure and strongly correlated systems

Hund's rule, interorbital hybridization, and high-Tc superconductivity in the bilayer nickelate La3Ni2O7

Xing-Zhou Qu, Dai-Wei Qu, Xin-Wei Yi, Wei Li, and Gang Su

Phys. Rev. B 112, L161101 (2025) - Published 1 October, 2025

Instability of the Haldane phase: Roles of charge fluctuations and Hund's coupling

Satoshi Nishimoto

Phys. Rev. B 112, L161102 (2025) - Published 1 October, 2025

Symmetry broken states at high displacement fields in ABA trilayer graphene

Simrandeep Kaur, Unmesh Ghorai, Abhisek Samanta, Kenji Watanabe, Takashi Taniguchi, Rajdeep Sensarma, and Aveek Bid

Phys. Rev. B 112, L161103 (2025) - Published 1 October, 2025

The authors investigate here high-mobility trilayer graphene under large displacement fields, revealing symmetry-broken Landau levels from both monolayer-like and bilayer-like bands. They observe a displacement field induced enhancement of the Landé g-factor and map complex Landau level crossings in the Dirac gully regime. These findings highlight strong interaction effects, particle-hole asymmetry, and limitations of noninteracting models, advancing our understanding of quantum Hall phases in multiband graphene systems.

Electron model on Truchet tiling: Extended-to-localized transitions and asymmetric spectrum

Junmo Jeon and Shiro Sakai

Phys. Rev. B 112, L161104 (2025) - Published 1 October, 2025

Interaction-driven intervalley coherence with emergent Kekulé orbitons

Hua Chen

Phys. Rev. B 112, L161105 (2025) - Published 1 October, 2025

The authors report here an intervalley coherent phase with the liberated orbital degree of freedom in a p-band honeycomb lattice. This phase is analyzed based on an orbital exchange model in the strong-coupling regime. The ensuing classical ground-state manifold enjoys a continuous symmetry dictated by the coherent phase between ±K valleys. The quantum fluctuation ultimately selects a unique ground state with emergent Kekulé orbitons through the order-by-disorder mechanism. These findings reveal a fundamentally new mechanism for the intervalley coherent phase.

Interaction effects on electronic Floquet spectra: Excitonic effects

Teng Xiao, Tsan Huang, Changhua Bao, and Zhiyuan Sun

Phys. Rev. B 112, L161106 (2025) - Published 2 October, 2025

Light-induced percolative electronic phase transition in the type-II Weyl semimetal WTe2

Xiaoyue Zhou, Fu Deng, Yifan Gao, Yuehua Wu, Yi Chan, Shulei Li, Ning Wang, Junwei Liu, and Jingdi Zhang

Phys. Rev. B 112, L161107 (2025) - Published 3 October, 2025

Onset of quantum chaos and ergodicity in spin systems with highly degenerate Hilbert spaces

Mahmoud Abdelshafy, Rubem Mondaini, and Marcos Rigol

Phys. Rev. B 112, L161108 (2025) - Published 6 October, 2025

Anisotropic scaling localization in higher-dimensional non-Hermitian systems

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

Phys. Rev. B 112, L161109 (2025) - Published 8 October, 2025

Incommensurate gapless ferromagnetism connecting competing symmetry-enriched deconfined quantum phase transitions

Anthony Rey, Ömer M. Aksoy, Daniel P. Arovas, Claudio Chamon, and Christopher Mudry

Phys. Rev. B 112, L161110 (2025) - Published 7 October, 2025

Phonon-assisted radiative lifetimes and exciton dynamics from first principles

Chunhao Guo, Gabriele Riva, Jacopo Simoni, Junqing Xu, and Yuan Ping

Phys. Rev. B 112, L161111 (2025) - Published 8 October, 2025

Tackling the one-electron self-interaction error within the semilocal density functional framework

Akilan Ramasamy, Lin Hou, Jorge Vega Bazantes, Tom J. P. Irons, Andrew M. Wibowo-Teale, Timo Lebeda, and Jianwei Sun

Phys. Rev. B 112, L161112 (2025) - Published 9 October, 2025

Dissipation-driven transition of particles from dispersive to flat bands

Yutao Hu, Chao Yang, and Yucheng Wang

Phys. Rev. B 112, L161113 (2025) - Published 10 October, 2025

Interplay between electronic and atomic short-range order in La2−xCaxCuO4−δ: Temperature and doping dependence

S. Hameed, Y. Liu, K. S. Rabinovich, G. Kim, M. Neumann, P. Wochner, G. Christiani, G. Logvenov, K. Higuchi, N. B. Brookes, E. Weschke, F. Yakhou-Harris, A. V. Boris, B. Keimer, and M. Minola

Phys. Rev. B 112, L161114 (2025) - Published 10 October, 2025

Partial suppression of magnetism in the square lattice SU(3) Hubbard model

Samuel Bird, Sebastian Huber, and Jannes Nys

Phys. Rev. B 112, L161115 (2025) - Published 10 October, 2025

Universal quasi-Fermi liquid physics of one-dimensional interacting fermions

Joshua D. Baktay, Adrian E. Feiguin, and Julián Rincón

Phys. Rev. B 112, L161116 (2025) - Published 14 October, 2025

Tuning the low-energy band structure in twisted bilayer WSe2

T.-H.-Y. Vu, O. J. Clark, N. H. Jo, J. Blyth, Q. Li, C. Jozwiak, A. Bostwick, J. B. Muir, L. Jia, J. A. Davis, I. Di Bernardo, A. Grubišić-Čabo, K. Xing, W. Zhao, S. H. Ryu, S. H. Lee, Z. Mao, K. Watanabe, T. Taniguchi, B. A. Chambers, S. L. Harmer, E. Rotenberg, M. S. Fuhrer, and M. T. Edmonds

Phys. Rev. B 112, L161117 (2025) - Published 14 October, 2025

Orbital paramagnetism without density of states enhancement in the nodal-line semimetal ZrSiS

Soshun Ozaki, Hiroyasu Matsuura, Ikuma Tateishi, Takashi Koretsune, and Masao Ogata

Phys. Rev. B 112, L161118 (2025) - Published 16 October, 2025

Floquet composite Dirac semimetals

Hong Wu, Jia-Ji Zhu, Jian Li, Xue-Min Yang, Jiang-Shan Chen, and Mu Zhou

Phys. Rev. B 112, L161119 (2025) - Published 17 October, 2025

Distinct effect of Kondo physics on crystal field splitting in electron and spin spectroscopies

M. Kornjača and R. Flint

Phys. Rev. B 112, L161120 (2025) - Published 20 October, 2025

Robust mixed-state cluster states and spurious topological entanglement negativity

Seunghun Lee and Eun-Gook Moon

Phys. Rev. B 112, L161121 (2025) - Published 22 October, 2025

Signatures of superconducting pairing driven by electron-electron interactions in moiré WSe2 /WSe2 homobilayer modeled by Hubbard Hamiltonian

Andrzej Biborski and Michał Zegrodnik

Phys. Rev. B 112, L161122 (2025) - Published 27 October, 2025

Quantum phase diagrams of Dicke-Ising models by a wormhole algorithm

Anja Langheld, Max Hörmann, and Kai Phillip Schmidt

Phys. Rev. B 112, L161123 (2025) - Published 27 October, 2025

Band-resolved automatic differentiation method for first-principles quantum response calculations

Minghui Sun, Nianlong Zou, Yang Li, Chong Wang, Wenhui Duan, and Yong Xu

Phys. Rev. B 112, L161124 (2025) - Published 29 October, 2025

The accurate calculation of Bloch state derivatives is numerically challenging yet indispensable for evaluating the quantum response functions, such as how materials interact with light. Here, the authors develop a band-resolved automatic differentiation approach for efficiently calculating quantum response properties, eliminating the need for manual analytical derivations and time-consuming full-band summation. This work incorporates the quantum response calculation into a broader paradigm of differentiable programming, unlocking new pathways for data-driven exploration and design of advanced quantum materials.

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

Realization of gate-controlled spin-orbit coupling in an AlGaN/GaN triangular well

Shuaiyu Chen, Ning Tang, Zhenhao Sun, Haoran Fan, Fuqiang Guo, Yifan Wang, Shixiong Zhang, Xuelin Yang, Xi Lin, Weikun Ge, and Bo Shen

Phys. Rev. B 112, L161301 (2025) - Published 1 October, 2025

Surface physics, nanoscale physics, low-dimensional systems

Polarization-resolved electron spin resonance in a two-dimensional electron system

D. A. Khudaiberdiev, A. Shuvaev, A. V. Shchepetilnikov, V. M. Muravev, M. M. Glazov, C. Reichl, W. Wegscheider, A. Pimenov, and I. V. Kukushkin

Phys. Rev. B 112, L161401 (2025) - Published 1 October, 2025

Signatures of exceptional points in multiterminal superconductor–normal metal junctions

Oliver Solow and Karsten Flensberg

Phys. Rev. B 112, L161402 (2025) - Published 3 October, 2025

Probing emergent axion electrodynamics with waveguide apparatus

André H. Gomes and Winder A. Moura-Melo

Phys. Rev. B 112, L161403 (2025) - Published 8 October, 2025

Plasmonic detection of Rashba spin-orbit coupling in monolayer transition metal dichalcogenides

Y. Li, Z. H. Tao, Y. M. Xiao, W. Xu, Q. N. Li, F. M. Peeters, D. Neilson, and M. V. Milošević

Phys. Rev. B 112, L161404 (2025) - Published 10 October, 2025

Tunable resonant s−p mixing of excitons in van der Waals heterostructures

Jiayu David Cao, Konstantin S. Denisov, and Igor Žutić

Phys. Rev. B 112, L161405 (2025) - Published 10 October, 2025

Bilayer germanene growth as a chiral heterostructure

Ting-Yu Chen, Chih-En Hsu, Ching-Yu Hei, Yung-Ning Hsu, David Mikolas, Bo-Hong Chen, Chung-Huang Lin, Yung-Ting Lee, Cheng-Maw Cheng, Fumio Komori, Iwao Matsuda, Chung-Yu Mou, Woei Wu Pai, Hung-Chung Hsueh, and S.-J. Tang

Phys. Rev. B 112, L161406 (2025) - Published 14 October, 2025

Bulk-edge correspondence at the spin-to-integer quantum Hall effect crossover in topological superconductors

M. V. Parfenov and I. S. Burmistrov

Phys. Rev. B 112, L161407 (2025) - Published 17 October, 2025

Probing moiré Bloch bands of photoexcited electrons on graphene/Ir(111)

Ryuichi Arafune, Hiroshi Ishida, Chun-Liang Lin, and Noriaki Takagi

Phys. Rev. B 112, L161408 (2025) - Published 24 October, 2025

Current-based metrology with two-terminal mesoscopic conductors

Shishir Khandelwal, Gabriel T. Landi, Géraldine Haack, and Mark T. Mitchison

Phys. Rev. B 112, L161409 (2025) - Published 24 October, 2025

Computational analysis of interface-driven spin-orbit coupling in molecular adsorbates on transition metal dichalcogenides

Zihao Wang, Wan-Lu Li, and Shaowei Li

Phys. Rev. B 112, L161410 (2025) - Published 30 October, 2025

Tunable two-dimensional Dirac-Weyl semimetal phase induced by altermagnetism

Lizhou Liu, Qing-Feng Sun, and Ying-Tao Zhang

Phys. Rev. B 112, L161411 (2025) - Published 31 October, 2025

ARTICLES

Electronic structure and strongly correlated systems

Solution of the mean-field Hubbard model of graphene rectangulenes

Jaime Ferrer and Amador García-Fuente

Phys. Rev. B 112, 165101 (2025) - Published 1 October, 2025

Exact spin helix eigenstates in the anisotropic spin-s Heisenberg model with arbitrary dimensions

Mingchen Zheng, Chenguang Liang, Shu Chen, and Xin Zhang

Phys. Rev. B 112, 165102 (2025) - Published 1 October, 2025

Resonant inelastic x-ray scattering investigation of Hund's and spin-orbit coupling in 5d2 double perovskites

Felix I. Frontini, Christopher J. S. Heath, Bo Yuan, Corey M. Thompson, John Greedan, Adam J. Hauser, F. Y. Yang, Mark P. M. Dean, Mary H. Upton, Diego M. Casa, and Young-June Kim

Phys. Rev. B 112, 165103 (2025) - Published 2 October, 2025

The interplay of spin-orbit coupling and electronic correlation in multiorbital crystalline systems has a profound impact on their magnetic and electronic properties. Unfortunately, these energy scales are similar in 5d systems and are difficult to disentangle even with knowledge of the electronic energy levels. Here, the authors remove this ambiguity by comparing L2 and L3 edge resonant inelastic x-ray scattering measurements of 5d2 double perovskites and using dipole selection rules to determine the energy scales of spin-orbit and Hund’s coupling.

Metallic collinear antiferromagnets with mirror-symmetric and asymmetric spin splittings

Vladimir A. Zyuzin

Phys. Rev. B 112, 165104 (2025) - Published 2 October, 2025

Microscopic investigation of enhanced Pauli paramagnetism in metallic Pu2C3

R. Yamamoto, M. S. Cook, A. R. Altenhof, P. Sherpa, S. Park, J. D. Thompson, H. E. Mason, D. C. Arellano, D. V. Prada, P. H. Tobash, F. Ronning, E. D. Bauer, N. Harrison, W. A. Phelan, A. P. Dioguardi, and M. Hirata

Phys. Rev. B 112, 165105 (2025) - Published 3 October, 2025

Relativistic particles in a superperiodic potential: Exploring graphene and fractal systems

Sudhanshu Shekhar, Bhabani Prasad Mandal, and Anirban Dutta

Phys. Rev. B 112, 165106 (2025) - Published 6 October, 2025

Spin-orbit coupling induced Rashba effect of Cs2SnBr6/PdS2 heterostructure with spin carrier dynamics under pressure

Minjie Zhang, Ningning Yao, Yanming Lin, Zhenyi Jiang, and Aijun Du

Phys. Rev. B 112, 165107 (2025) - Published 6 October, 2025

Algebraic exact solution for driven Landau levels in two-dimensional electron gases

Li-kun Shi

Phys. Rev. B 112, 165108 (2025) - Published 7 October, 2025

Neural network based nodal structure optimization for interacting fermionic systems

William Freitas, B. Abreu, and S. A. Vitiello

Phys. Rev. B 112, 165109 (2025) - Published 7 October, 2025

Anisotropic spin ice on a breathing pyrochlore lattice

Gloria Isbrandt, Frank Pollmann, and Michael Knap

Phys. Rev. B 112, 165110 (2025) - Published 7 October, 2025

Electride behavior at high pressure in silicon and other elements in solid and liquid phases

Salma Ahmed, Felipe González-Cataldo, Victor Naden Robinson, and Burkhard Militzer

Phys. Rev. B 112, 165111 (2025) - Published 8 October, 2025

Probing quasiparticle excitations in a doped Mott insulator via Friedel oscillations

Anurag Banerjee, Emile Pangburn, Catherine Pépin, and Cristina Bena

Phys. Rev. B 112, 165112 (2025) - Published 9 October, 2025

Universality of the topological phase transition in the interacting Haldane model

Simone Fabbri, Alessandro Giuliani, and Robin Reuvers

Phys. Rev. B 112, 165113 (2025) - Published 9 October, 2025

Symmetry breaking and thermal phase transition of the spin-1 quantum magnet with SU(3) symmetry on the simple cubic lattice

Nils Caci, Dominik Chudy, Pablo Daniel Mendez Mariscal, Daniel Ueltschi, and Stefan Wessel

Phys. Rev. B 112, 165114 (2025) - Published 10 October, 2025

Charge-transfer properties and electron dynamics in ferromagnetic CoS2

Mahmoud Abdel-Hafiez, Fredrik O. L. Johansson, Anwesha Chakraborty, Martin Pavelka, Anirudha Ghosh, D. A. Chareev, A. N. Vasiliev, Alexander Edström, Anna Delin, Olle Eriksson, Debjani Karmakar, and Dibya Phuyal

Phys. Rev. B 112, 165115 (2025) - Published 14 October, 2025

Fermi surface bosonization for non-Fermi liquids

SangEun Han, Félix Desrochers, and Yong Baek Kim

Phys. Rev. B 112, 165116 (2025) - Published 14 October, 2025

Bright excitonic insulator state in TlAs(CH3)2 and TlSb(CH3)2 from first-principles many-body perturbation theory

Yushuo Xu, Dongyue Sun, Baibiao Huang, Ying Dai, and Wei Wei

Phys. Rev. B 112, 165117 (2025) - Published 14 October, 2025

How to choose efficiently the size of the Bethe-Salpeter equation Hamiltonian for accurate exciton calculations on supercells

Rafael R. Del Grande and David A. Strubbe

Phys. Rev. B 112, 165118 (2025) - Published 14 October, 2025

Doping-induced nematic and stripe orders within the charge density wave state of TiSe2

Daniel Muñoz-Segovia, Jörn W. F. Venderbos, Adolfo G. Grushin, and Fernando de Juan

Phys. Rev. B 112, 165119 (2025) - Published 14 October, 2025

The layered material TiSe2 provides a versatile platform where charge density wave (CDW) and superconducting phases can be tuned by doping, pressure, dimensionality, and light engineering. The authors propose here that the uncontrolled native doping may underlie the long-standing experimental discrepancies on the symmetry of the CDW. By constructing low-energy models for TiSe2 coupled to the conventional order parameter, they show that doping generically drives transitions from threefold symmetric to nematic and stripe CDW phases.

Scaling up the transcorrelated density matrix renormalization group

Benjamin Corbett and Akimasa Miyake

Phys. Rev. B 112, 165120 (2025) - Published 15 October, 2025

Summing real time Feynman paths of lattice polarons with matrix product states

Qi Gao and Yuan Wan

Phys. Rev. B 112, 165121 (2025) - Published 15 October, 2025

Improving neural network performance for solving quantum sign structure

Xiaowei Ou, Tianshu Huang, and Vidvuds Ozoliņš

Phys. Rev. B 112, 165122 (2025) - Published 15 October, 2025

Charge pumps, pivot Hamiltonians, and symmetry-protected topological phases

Nick G. Jones, Ryan Thorngren, Ruben Verresen, and Abhishodh Prakash

Phys. Rev. B 112, 165123 (2025) - Published 15 October, 2025

Probing the collective excitations of excitonic insulators in an optical cavity

Elahe Davari and Mehdi Kargarian

Phys. Rev. B 112, 165124 (2025) - Published 17 October, 2025

Spectroscopic evidence of Kondo resonance in 3d van der Waals ferromagnets

Deepali Sharma, Neeraj Bhatt, Asif Ali, Rajeswari Roy Chowdhury, Chandan Patra, Ravi Prakash Singh, and Ravi Shankar Singh

Phys. Rev. B 112, 165125 (2025) - Published 17 October, 2025

Partial anyon condensation in the color code: A Hamiltonian approach

Mohsen Rahmani Haghighi and Mohammad Hossein Zarei

Phys. Rev. B 112, 165126 (2025) - Published 17 October, 2025

Nonlinear transport signatures of hidden symmetry breaking in a Weyl altermagnet

Yufei Zhao, Zhiqiang Mao, and Binghai Yan

Phys. Rev. B 112, 165127 (2025) - Published 20 October, 2025

Stoner transition at finite temperature in a two-dimensional isotropic Fermi liquid

R. David Mayrhofer, Megan Schoenzeit, and Andrey V. Chubukov

Phys. Rev. B 112, 165128 (2025) - Published 20 October, 2025

Beyond fragmented dopant dynamics in quantum spin lattices: Robust localization and non-Gaussian diffusion

Mingru Yang, Sajant Anand, and Kristian Knakkergaard Nielsen

Phys. Rev. B 112, 165129 (2025) - Published 20 October, 2025

Efficient G0W0 and Bethe-Salpeter equation calculations of heterostructures within an all-electron framework

Maximilian Schebek, Ignacio Gonzalez Oliva, and Claudia Draxl

Phys. Rev. B 112, 165130 (2025) - Published 20 October, 2025

Heterostructures composed of different two-dimensional materials offer exciting opportunities for tunable optoelectronic devices, but computing their electronic and optical properties is computationally demanding. Focusing on the LAPW framework, the authors develop here an efficient additive ansatz for the screening that is constructed from the individual contributions to the polarizability. This approach enables high-precision calculations of band structures and optical spectra from from GW and the Bethe-Salpeter equation, respectively, at greatly reduced computational cost, as demonstrated for bilayer WSe2 and pyridine@MoS2.

Large Berry curvature effects induced by extended nodal structures: Rational design strategy and high-throughput materials predictions

Wencheng Wang, Minxue Yang, Wei Chen, Xiangang Wan, and Feng Tang

Phys. Rev. B 112, 165131 (2025) - Published 20 October, 2025

Braiding for the win: Harnessing braiding statistics in topological states to play quantum games

Oliver Hart, David T. Stephen, Dominic J. Williamson, and Rahul Nandkishore

Phys. Rev. B 112, 165132 (2025) - Published 21 October, 2025

Exceptional points, bulk-boundary correspondence, and entanglement properties for a dimerized Hatano-Nelson model with staggered potentials

Yasamin Mardani, Rodrigo A. Pimenta, and Jesko Sirker

Phys. Rev. B 112, 165133 (2025) - Published 22 October, 2025

Measurement of many-body quantum correlations in superconducting circuits

Kamal Sharma and Wade DeGottardi

Phys. Rev. B 112, 165134 (2025) - Published 23 October, 2025

Robustness of nonstabilizerness in the quantum Ising chain via quantum Monte Carlo tomography

Hari Timsina, Yi-Ming Ding, Emanuele Tirrito, Poetri Sonya Tarabunga, Bin-Bin Mao, Mario Collura, Zheng Yan, and Marcello Dalmonte

Phys. Rev. B 112, 165135 (2025) - Published 23 October, 2025

Anomalous Hall effect driven by electric field and sliding ferroelectricity in two-dimensional compensated antiferromagnetic MnS

Guozhi Long and Huaqing Huang

Phys. Rev. B 112, 165136 (2025) - Published 23 October, 2025

Theoretical investigation of electronic structure and magnetism in the kagome material CsCr3Sb5

Wei Wang, Shun-Li Yu, and Jian-Xin Li

Phys. Rev. B 112, 165137 (2025) - Published 23 October, 2025

Discrete time crystals detected by time-translation twist

Ryota Nakai, Taozhi Guo, and Shinsei Ryu

Phys. Rev. B 112, 165138 (2025) - Published 27 October, 2025

Preparing code states via seed-entangler-enriched sequential quantum circuits: Application to tetradigit topological error-correcting codes

Yu-Tao Hu, Meng-Yuan Li, and Peng Ye

Phys. Rev. B 112, 165139 (2025) - Published 27 October, 2025

Effect of pressure on the transport properties and thermoelectric performance of Dirac semimetal ZrTe5

Sanskar Mishra, Nagendra Singh, V. K. Gangwar, Rajan Walia, Manindra Kumar, Udai Bhan Singh, Deepash Sekhar Saini, Jianping Sun, Genfu Chen, Dilip Bhoi, Sandip Chatterjee, Yoshiya Uwatoko, Jinguang Cheng, and Prashant Shahi

Phys. Rev. B 112, 165140 (2025) - Published 27 October, 2025

Flat band driven itinerant magnetism in the Co-pnictides CaCo2As2 and LaCo2P2

D. Subires, M. García-Díez, A. Kar, C.-Y. Lim, Victoria M. Li, V Yannello, Dina Carbone, P. Gargiani, T. Yilmaz, J. Dai, M. Tallarida, E. Vescovo, M. Shatruk, Maia G. Vergniory, and S. Blanco-Canosa

Phys. Rev. B 112, 165141 (2025) - Published 27 October, 2025

Extrinsic anomalous Hall effect in four cerium-based heavy fermion ferromagnets

Longfei Li, Jiawei Li, Jia-Xin Yin, Yi-feng Yang, and Shuang Jia

Phys. Rev. B 112, 165142 (2025) - Published 27 October, 2025

Extended s-wave pairing from an emergent Feshbach resonance in bilayer nickelate superconductors

Pietro Borchia, Hannah Lange, and Fabian Grusdt

Phys. Rev. B 112, 165143 (2025) - Published 27 October, 2025

Metal to insulator crossover in the repulsive Fermi-Hubbard model probed by static correlations

Sayantan Roy, Sameed Pervaiz, Thereza Paiva, and Nandini Trivedi

Phys. Rev. B 112, 165144 (2025) - Published 29 October, 2025

Comparative analysis of plasmon modes in layered Lindhard metals and strange metals

Niels de Vries, Jin Chen, Eric Hoglund, Xuefei Guo, Dipanjan Chaudhuri, Jordan Hachtel, and Peter Abbamonte

Phys. Rev. B 112, 165145 (2025) - Published 29 October, 2025

Positive magnetoconductance in SrVO3 double quantum wells with a magnetic EuTiO3 barrier

N. Takahara, K. S. Takahashi, Y. Tokura, and M. Kawasaki

Phys. Rev. B 112, 165146 (2025) - Published 30 October, 2025

Magnetoresistance in ZrSiX (X=S, Se, Te) nodal-line semimetals

ShengNan Zhang and Oleg V. Yazyev

Phys. Rev. B 112, 165147 (2025) - Published 30 October, 2025

Semiconductors I: bulk

Towards quantitative understanding of quantum dot ensemble capacitance-voltage spectroscopy

Nico F. Brosda, Phil J. Badura, İsmail Bölükbaşı, İbrahim Engin, Patrick Lindner, Sascha R. Valentin, Andreas D. Wieck, Björn Sothmann, and Arne Ludwig

Phys. Rev. B 112, 165201 (2025) - Published 1 October, 2025

As the premier on-demand single-photon emitters, quantum dots are key to future quantum technologies. The authors study here ensembles of quantum dots coupled to a charge reservoir using capacitance-voltage spectroscopy and an extended master-equation model. By incorporating the energy dependence of tunneling, they capture experimental features not explained by earlier approaches. The results emphasize how energy-dependent tunneling shapes the response of quantum dot ensembles and contribute to a clearer picture of their potential for quantum applications.

Obtaining highly transferable parameters for empirical tight-binding simulations: From pure materials to polytypic heterostructures and dilute alloys

Anh-Luan Phan, Daniele Soccodato, Alessandro Pecchia, Alessia Di Vito, and Matthias Auf der Maur

Phys. Rev. B 112, 165202 (2025) - Published 16 October, 2025

Enhancing band-edge nonradiative recombination lifetimes in I-II2-III-VI4 chalcogenides via orbital-phonon synergy

Xinwei Guo, Wenhan Zhou, Shengli Zhang, and Haibo Zeng

Phys. Rev. B 112, 165203 (2025) - Published 20 October, 2025

Evidence of anisotropic three-dimensional weak localization in TiSe2 nanoflakes

Xiaocui Wang, Yang Yang, Yongkai Li, Guangtong Liu, Junxi Duan, Zhiwei Wang, Li Lu, and Fan Yang

Phys. Rev. B 112, 165204 (2025) - Published 27 October, 2025

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

Supercavity mode enhanced near-field radiative heat transfer between Mie resonators

Chen Ni, Asim Ur Rahman, Tianle Chen, Xinran Li, Rui Chen, and Yungui Ma

Phys. Rev. B 112, 165301 (2025) - Published 2 October, 2025

Carbon ion implantation for electron compensation in epitaxial scandium nitride

Sourav Rudra, Dheemahi Rao, Sneha Kobri M, Aritra Dey, Renuka Karanje, Prasanna Das, Subhajit Manna, Madhusmita Baral, Bhupesh Yadav, Ashalatha Indiradevi Kamalasanan Pillai, Magnus Garbrecht, Mukul Gupta, Satyaprakash Sahoo, Tapas Ganguli, and Bivas Saha

Phys. Rev. B 112, 165302 (2025) - Published 6 October, 2025

Quantum Hall effect and Chern phases in the 1/5-depleted square lattice

Sara Aghtouman, Godfrey Gumbs, and Mir Vahid Hosseini

Phys. Rev. B 112, 165303 (2025) - Published 8 October, 2025

Evaluation of the real-space second Chern number using the kernel polynomial method

Rui Chen and Bin Zhou

Phys. Rev. B 112, 165304 (2025) - Published 10 October, 2025

Controllable tuning of exciton polariton condensate flow in a waveguide by phase modulation

Qiang Ai, Peilin Wang, Xiaokun Zhai, Chunzi Xing, Xinmiao Yang, Zaharias Hatzopoulos, Pavlos G. Savvidis, Tianyu Liu, Yong Zhang, Stefan Schumacher, Xuekai Ma, and Tingge Gao

Phys. Rev. B 112, 165305 (2025) - Published 10 October, 2025

Current-driven plasmons in two-layer semiconductor heterostructures: Long-wavelength features and two-stream instability

V. N. Sokolov and V. A. Kochelap

Phys. Rev. B 112, 165306 (2025) - Published 14 October, 2025

Condensation dynamics in a two-dimensional square photonic crystal waveguide

Maria Efthymiou-Tsironi, Antonio Gianfrate, Dimitrios Trypogeorgos, Charly Leblanc, Fabrizio Riminucci, Grazia Salerno, Milena De Giorgi, Dario Ballarini, and Daniele Sanvitto

Phys. Rev. B 112, 165307 (2025) - Published 17 October, 2025

Resonant valley-specific exciton-phonon coupling in layered SnS

J. Jadczak, J. Debus, J. Andrzejewski, E. Żuberek, P. Sitarek, J. Olejnik, C.-H. Ho, and L. Bryja

Phys. Rev. B 112, 165308 (2025) - Published 20 October, 2025

The authors demonstrate here that different valleys in anisotropic 2D materials exhibit dramatically different phonon coupling hierarchies. This valley-specific reorganization pushes valleytronics in a new direction by establishing phonon scattering as an intrinsic valley fingerprint, enabling phonon-mediated valley control beyond conventional methods. The work creates connections between valleytronics and phonon physics by showing valley identity is fundamentally encoded in electron-phonon coupling strength, transforming phonons from passive dissipation channels to active players in valley manipulation, opening new pathways for valleytronic technologies.

Inequivalence of the low-density insulating state and quantum Hall insulating states in a strongly correlated two-dimensional electron system

M. Yu. Melnikov, D. G. Smirnov, A. A. Shashkin, S.-H. Huang, C. W. Liu, and S. V. Kravchenko

Phys. Rev. B 112, 165309 (2025) - Published 21 October, 2025

Luminescence from hot carrier interband recombination in wide InGaN quantum wells

Conny Becht, Lukas Uhlig, Mateusz Hajdel, Grzegorz Muziol, and Ulrich T. Schwarz

Phys. Rev. B 112, 165310 (2025) - Published 23 October, 2025

Thermal excitation of flexoelectricity in silicon

Lingtong Lv, Qianqian Ma, Kailu Wang, Xin Wen, and Shengping Shen

Phys. Rev. B 112, 165311 (2025) - Published 28 October, 2025

Transverse instability of hybrid solitons in the strong light-matter coupling regime

Alexey V. Yulin and Dmitry A. Zezyulin

Phys. Rev. B 112, 165312 (2025) - Published 31 October, 2025

Surface physics, nanoscale physics, low-dimensional systems

Electronic band structure from quasiparticle interference and Landau quantization in WTe2

Raquel Sánchez-Barquilla, Francisco Martín Vega, Alberto M. Ruiz, Na Hyun Jo, Edwin Herrera, José J. Baldoví, Masayuki Ochi, Ryotaro Arita, Sergey L. Bud'ko, Paul C. Canfield, Isabel Guillamón, and Hermann Suderow

Phys. Rev. B 112, 165401 (2025) - Published 1 October, 2025

Three-Majorana cotunneling interferometer for non-Abelian braiding and topological quantum gate implementation

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

Phys. Rev. B 112, 165402 (2025) - Published 2 October, 2025

Electric field induced antiferromagnetic to ferromagnetic transition and thermal conductivity reduction in MnSe monolayers

Dingbo Zhang, Xin Liu, Honggang Zhang, Hongyan Wang, Yuxiang Ni, and Gang Zhang

Phys. Rev. B 112, 165403 (2025) - Published 3 October, 2025

Surface ferroelectric phase transition triggered by s−p orbital interaction in two-dimensional monolayer perovskites

Chao Yang, Tingkai Yang, Youjun Zhang, Jiawang Hong, and Yan Bi

Phys. Rev. B 112, 165404 (2025) - Published 3 October, 2025

Interlayer switching of magnetic and electric topological structures in the bilayer van der Waals material NiClBr

Xiao-Feng Luo, Su-Jie Zhang, and Jin-Zhu Zhao

Phys. Rev. B 112, 165405 (2025) - Published 3 October, 2025

Engineering topological exciton structures in two-dimensional semiconductors by a periodic electrostatic potential

Na Zhang, Wang Yao, and Hongyi Yu

Phys. Rev. B 112, 165406 (2025) - Published 7 October, 2025

Interfacial coincidence structure between rocksalt TiN and perovskite oxide YAlO3 studied at the atomic scale

Jiachang Bi, Zhen Wang, Wei Chen, Guanhua Su, Yilin Wu, Ruyi Zhang, Xiong Yao, Liang Wu, Qinghua Zhang, and Yanwei Cao

Phys. Rev. B 112, 165407 (2025) - Published 7 October, 2025

Surface nanopatterning of Si by ion beam irradiation with sub-sputter-threshold energy

J. Seo, H. Jeong, W. Kim, J. Muñoz-García, M. Castro, R. Cuerno, and J.-S. Kim

Phys. Rev. B 112, 165408 (2025) - Published 7 October, 2025

Charge carrier transport properties of porous carbon nanostructure with covalent organic frameworks

Shuang Sun, Xinke Wang, Peng Han, Shuang Qiao, Menglei Li, Wenfeng Sun, Zehao He, Jiasheng Ye, Qi Zhang, Huaqiang Cao, and Yan Zhang

Phys. Rev. B 112, 165409 (2025) - Published 8 October, 2025

Majorana polarization in disordered quasi-one-dimensional hybrid nanowires

Shubhanshu Karoliya, Sumanta Tewari, and Gargee Sharma

Phys. Rev. B 112, 165410 (2025) - Published 8 October, 2025

Graphene/hBN–based valley transistor: Dynamic control of valley current in synchronized nonzero voltages within the time-dependent regime

A. Belayadi, C. I. Osuala, I. Assi, N. A. Hadadi, J. P. F. LeBlanc, and A. Abbout

Phys. Rev. B 112, 165411 (2025) - Published 8 October, 2025

Spin properties in droplet epitaxy grown telecom quantum dots

Marius Cizauskas, Elisa M. Sala, Jon Heffernan, A. Mark Fox, Manfred Bayer, and Alex Greilich

Phys. Rev. B 112, 165412 (2025) - Published 9 October, 2025

Combined tight-binding and configuration interaction study of unfolded electronic structure of the G color center in Si

Jakub Valdhans and Petr Klenovský

Phys. Rev. B 112, 165413 (2025) - Published 9 October, 2025

Janus bound states in the continuum in structurally symmetric photonic crystals

Hongzhi Zuo, Shengxuan Xia, and Haiyu Meng

Phys. Rev. B 112, 165414 (2025) - Published 9 October, 2025

Screening of the band gap in electrically biased bilayer graphene: From Hartree to Hartree-Fock

Jack N. Engdahl, Zeb E. Krix, and Oleg P. Sushkov

Phys. Rev. B 112, 165415 (2025) - Published 10 October, 2025

Thermoelectric properties of magic angle twisted bilayer graphene–superconductor heterojunction: Effect of valley polarization and trigonal warping

Kamalesh Bera, Pritam Chatterjee, Priyanka Mohan, and Arijit Saha

Phys. Rev. B 112, 165416 (2025) - Published 10 October, 2025

Retrieval of fundamental material parameters of monolayer transition metal dichalcogenides from experimental exciton energies: An analytical approach

Duy-Nhat Ly, Dai-Nam Le, Dang-Khoa D. Le, and Van-Hoang Le

Phys. Rev. B 112, 165417 (2025) - Published 10 October, 2025

Procedure to tune a three-site artificial Kitaev chain to host Majorana bound states based on transmon measurements

Xiaozhou Yang, Zhaozheng Lyu, Xiang Wang, Enna Zhuo, Yunxiao Zhang, Duolin Wang, Yukun Shi, Yuyang Huang, Bing Li, Xiaohui Song, Peiling Li, Bingbing Tong, Ziwei Dou, Jie Shen, Guangtong Liu, Fanming Qu, and Li Lu

Phys. Rev. B 112, 165418 (2025) - Published 14 October, 2025

Particle localization on helical nanoribbons: Quantum analog of the Coriolis effect

Radha Balakrishnan, Rossen Dandoloff, Victor Atanasov, and Avadh Saxena

Phys. Rev. B 112, 165419 (2025) - Published 15 October, 2025

Tunable plasmon modes and topological transitions in monolayer and bilayer semi-Dirac materials

Debasmita Giri, John Schliemann, Rafael A. Molina, and Alexander Lopez

Phys. Rev. B 112, 165420 (2025) - Published 15 October, 2025

Z2 topological trion insulator

Yichen Chu and Qizhong Zhu

Phys. Rev. B 112, 165421 (2025) - Published 16 October, 2025

Confluence of valleytronics, spintronics, and piezoelectricity in Janus MXSiN2 monolayers (M=Cr, Mo, W; X=S, Se, Te): Macroscopic and microscopic insights

Pradip Nandi, Anu Arora, and Abir De Sarkar

Phys. Rev. B 112, 165422 (2025) - Published 16 October, 2025

Giant intrinsic anomalous Hall conductivity in a MoS2/MnSe2 heterostructure

Xinjuan Cheng and Xuechao Zhai

Phys. Rev. B 112, 165423 (2025) - Published 17 October, 2025

Leakage at zero temperature from changes in chemical potential in Majorana qubits

M. C. Goffage, A. Alase, M. C. Cassidy, and S. N. Coppersmith

Phys. Rev. B 112, 165424 (2025) - Published 20 October, 2025

Potential role of hole accumulation via photoionization and electron tunneling during laser-assisted field evaporation of insulators with high energy photons

Severin Jakob, Jonathan D. Poplawsky, Anna S. Jelinek, David Mayweg, and Mattias Thuvander

Phys. Rev. B 112, 165425 (2025) - Published 20 October, 2025

Efficient spin transfer in the van der Waals heterostructure WTe2/Fe3GeTe2 enabled by direct interlayer p-orbital hybridization

H. L. Ning, M. Q. Dong, X. Zhang, J. S. Huang, B. Liu, Zhi-Xin Guo, and Y. Dong

Phys. Rev. B 112, 165426 (2025) - Published 23 October, 2025

Strong and selective magnon-phonon coupling in the van der Waals antiferromagnet CoPS3

Dipankar Jana, Diana Vaclavkova, Rajesh Kumar Ulaganathan, Raman Sankar, Milan Orlita, Clement Faugeras, Maciej Koperski, M. E. Zhitomirsky, and Marek Potemski

Phys. Rev. B 112, 165427 (2025) - Published 24 October, 2025

Scattering approach to near-field radiative heat transfer

Matthias Hübler, Denis M. Basko, and Wolfgang Belzig

Phys. Rev. B 112, 165428 (2025) - Published 24 October, 2025

How are radiative heat transfer and coherent quantum transport related? Both are governed by a Landauer-type expression for the current, though arising from distinct theoretical frameworks: fluctuational electrodynamics and Landauer–Büttiker scattering theory. The authors develop here a quantum scattering theory for thermal excitations, revealing that the reactive response of thermal bodies leads to an energy-current operator beyond the Landauer–Büttiker formalism. The reactive term can dominate the heat-current noise spectrum, e.g., for coupled surface phonon polaritons.

Electrostatic screening of free charge-neutral dipoles/excitons in two-dimensional media

Ke Xiao, Chi-Ming Kan, Feng-Ren Fan, Stuart S. P. Parkin, and Xiaodong Cui

Phys. Rev. B 112, 165429 (2025) - Published 24 October, 2025

Quantum phase transition in a double quantum dot Josephson junction driven by electron-electron interactions

Cong Li, Yiyan Wang, and Bing Dong

Phys. Rev. B 112, 165430 (2025) - Published 24 October, 2025

Thermal RC circuit model for resolving the thermal paradox

Saikat Banerjee and Piers Coleman

Phys. Rev. B 112, 165431 (2025) - Published 28 October, 2025

Nonlinear quantum electrodynamics of epsilon-near-zero nanostructures

Luca Dal Negro, Riccardo Franchi, and Marco Ornigotti

Phys. Rev. B 112, 165433 (2025) - Published 30 October, 2025

The authors demonstrate here the nonlinear optical response of epsilon-near-zero (ENZ) nanostructures at the single-photon level using fully nonperturbative quantum theory of open systems with indium tin oxide materials and Kerr-type nonlinearity. Closed-form analytical results obtained for spherical nanoparticles are numerically validated and extended to geometries that can be fabricated using state-of-the-art electron-beam lithography, establishing a rigorous benchmark for understanding quantum nonlinear effects in ENZ nanostructures with optical losses. These results are important to emerging quantum technology, including on-chip single-photon nondemolition detection, sensing, and spectroscopy.

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