Hund's rule, interorbital hybridization, and high- superconductivity in the bilayer nickelate
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 -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 -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 ± 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
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 : 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
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 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.









