Browse Issues:

HIGHLIGHTED ARTICLES

Spin orbital lattice entanglement in the ideal j=12 compound K2IrCl6

P. Warzanowski, M. Magnaterra, Ch. J. Sahle, M. Moretti Sala, P. Becker, L. Bohatý, I. Císařová, G. Monaco, T. Lorenz, P. H. M. van Loosdrecht, J. van den Brink, and M. Grüninger

Phys. Rev. B 110, 195120 (2024) - Published 7 November, 2024

Materials with spin-orbit entangled j=½ moments provide a rich playground for frustrated quantum magnetism. Combining resonant inelastic x-ray scattering, optical spectroscopy, and x-ray diffraction, the authors show here that cubic K2IrCl6 hosts ideal spin-orbit entangled j=½ moments. Importantly, they also show that the j=³⁄₂ excited states hybridize with vibrational states leading to spin orbital lattice entanglement in K2IrCl6, thereby substantially enriching the field of spin-orbit entangled materials physics.

Superconductivity in a topological lattice model with strong repulsion

Rahul Sahay, Stefan Divic, Daniel E. Parker, Tomohiro Soejima, Sajant Anand, Johannes Hauschild, Monika Aidelsburger, Ashvin Vishwanath, Shubhayu Chatterjee, Norman Y. Yao, and Michael P. Zaletel

Phys. Rev. B 110, 195126 (2024) - Published 12 November, 2024

Can superconductivity arise from strong repulsive interactions between electrons in a lattice model with topological bands? Here, the authors answer this question in the affirmative via DMRG numerical simulations of an interacting spinful bilayer Hofstadter model featuring low-lying bands of opposite Chern number. Furthermore, by developing a new technique to probe the pairing symmetry in number-conserving DMRG, the authors demonstrate that superconductivity is p-wave, tantalizingly reminiscent of nodal pairing recently observed in twisted bilayer graphene, which shares many structural similarities with their model. This work thus showcases the possibility of an all-electronic pairing mechanism in the strong coupling limit in two dimensions, which can be tested directly with cold fermions in an optical lattice.

Quantum geometry induced third-order nonlinear transport responses

Debottam Mandal, Sanjay Sarkar, Kamal Das, and Amit Agarwal

Phys. Rev. B 110, 195131 (2024) - Published 13 November, 2024

The authors develop here a comprehensive framework for third-order electronic transport, focusing on the impact of quantum geometry in materials where conventional responses are absent. By deriving new forms of reciprocal longitudinal and Hall currents in time-reversal symmetry-broken systems, they reveal how quantum geometric features – specifically, the quantum geometric connection and tensor – shape these nonlinear currents. This theoretical advancement provides a blueprint for identifying materials with intrinsic third-order responses, with potential applications in advanced quantum technologies.

Magnetic phase diagram of a two-orbital model for bilayer nickelates with varying doping

Ling-Fang Lin, Yang Zhang, Nitin Kaushal, Gonzalo Alvarez, Thomas A. Maier, Adriana Moreo, and Elbio Dagotto

Phys. Rev. B 110, 195135 (2024) - Published 18 November, 2024

Motivated by the discovery of bilayer nickelate superconductor La3Ni2O7, the authors investigate here magnetic phase diagrams with varying electronic densities n in a bilayer 2×2×2 cluster. Rich magnetic states are observed, which can be understood by three main coupling mechanisms: (1) half-empty ferromagnetic (FM) coupling, (2) half-half antiferromagnetic (AFM) coupling, and (3) half-full FM coupling. At the half-filling case, the half-half mechanism leads to a robust (π, π, π) state. For the La3Ni2O7 (n=1.5) case, the AFM coupling is found to be strong along the z axis, while the xy plane shows strong competition between AFM and FM tendencies.

Efficient electron spin relaxation by chiral phonons in WSe2 monolayers

D. Lagarde, M. Glazov, V. Jindal, K. Mourzidis, Iann Gerber, A. Balocchi, L. Lombez, P. Renucci, T. Taniguchi, K. Watanabe, C. Robert, and X. Marie

Phys. Rev. B 110, 195403 (2024) - Published 4 November, 2024

In transition metal dichalcogenide semiconductor monolayers, the spin dynamics of electrons is usually controlled by the spin-valley locking effect: a carrier spin flip occurs only if there is a simultaneous change in the valley. However, very little is known about the intravalley spin relaxation processes. Here, the authors demonstrate that the spin relaxation of an electron in WSe2 monolayers can occur efficiently without a change in valley thanks to chiral phonons. The consequence is an efficient relaxation from bright to dark excitons.

Quantum state transfer in interacting multiple-excitation systems

Alexander Yue, Rubem Mondaini, Qiujiang Guo, and Richard T. Scalettar

Phys. Rev. B 110, 195410 (2024) - Published 12 November, 2024

Coherent passage of quantum information across nodes on a network can be accomplished via quantum state transfer protocols. The authors employ here an optimized Monte Carlo annealing procedure to demonstrate that experiments emulating the physics of typical condensed matter Hamiltonians, such as localized orbitals coupled to conduction bands, could be tuned to exhibit highly efficient quantum state transfer.

Electron conductance and many-body marker of a cavity-embedded topological one-dimensional chain

Danh-Phuong Nguyen, Geva Arwas, and Cristiano Ciuti

Phys. Rev. B 110, 195416 (2024) - Published 15 November, 2024

The authors investigate here, using an exact diagonalization approach, how electron transport in the paradigmatic Su-Schrieffer-Heeger (SSH) model, a cornerstone of 1D topological systems, is influenced by cavity quantum fields. In addition to analyzing how the cavity modifies the linear electron conductance, they uncover an exact many-body topological marker that remains valid for any degree of cavity coupling and light-matter entanglement, providing a new framework for studying topological phases in cavity-coupled systems.

Microscopic theory of polariton-polariton interactions

E. R. Christensen, A. Camacho-Guardian, O. Cotlet, A. Imamoglu, M. Wouters, G. M. Bruun, and I. Carusotto

Phys. Rev. B 110, 195435 (2024) - Published 22 November, 2024

The authors develop here a microscopic theory of polariton-polariton interactions in microcavity systems, employing ab initio calculations for dipolar polaritons to build a generalized Born-Oppenheimer framework. Their theory predicts that strong light-matter coupling drastically enhances interaction strength, revealing unexpected scaling laws that can be experimentally validated. This model applies to both dipolar and non-dipolar polaritons, offering new insights and experimental strategies to explore strong polariton correlations and advance towards the realization of a polariton blockade regime.

ARTICLES

Electronic structure and strongly correlated systems

Magnetization oscillations in a periodically driven transverse field Ising chain

Xiao Wang (王骁), Masaki Oshikawa (押川正毅), Márton Kormos, and Jianda Wu (吴建达)

Phys. Rev. B 110, 195101 (2024) - Published 1 November, 2024

Tunneling current and current correlations for anyonic quasiparticles of a ν=12 chiral Luttinger liquid in multiedge geometries

Gu Zhang, Domenico Giuliano, Igor V. Gornyi, and Gabriele Campagnano

Phys. Rev. B 110, 195102 (2024) - Published 4 November, 2024

Renormalized density matrix downfolding: A rigorous framework in learning emergent models from ab initio many-body calculations

Yueqing Chang, Sonali Joshi, and Lucas K. Wagner

Phys. Rev. B 110, 195103 (2024) - Published 4 November, 2024

Exploring intrinsic magnetic topological insulators: The case of EuIn2As2

Hao Liu, Qi-Yi Wu, Chen Zhang, Jie Pang, Bo Chen, Jiao-Jiao Song, Yu-Xia Duan, Ya-Hua Yuan, Hai-Yun Liu, Chuan-Cun Shu, Yuan-Feng Xu, You-Guo Shi, and Jian-Qiao Meng

Phys. Rev. B 110, 195104 (2024) - Published 4 November, 2024

Fractal subsystem symmetries, anomalies, boundaries, and effective field theory

Heitor Casasola, Guilherme Delfino, Yizhi You, Paula F. Bienzobaz, and Pedro R. S. Gomes

Phys. Rev. B 110, 195105 (2024) - Published 4 November, 2024

Successive electron-vortex binding in quantum Hall bilayers at ν=14+34

Glenn Wagner and Dung X. Nguyen

Phys. Rev. B 110, 195106 (2024) - Published 4 November, 2024

Petz map recovery for long-range entangled quantum many-body states

Yangrui Hu and Yijian Zou

Phys. Rev. B 110, 195107 (2024) - Published 4 November, 2024

Probing phase transitions with correlations in configuration space

Wen-Yu Su, Yu-Jing Liu, Nvsen Ma, and Chen Cheng

Phys. Rev. B 110, 195108 (2024) - Published 4 November, 2024

Search for orbital magnetism in the kagome superconductor CsV3Sb5 using neutron diffraction

William Liège, Yaofeng Xie, Dalila Bounoua, Yvan Sidis, Frédéric Bourdarot, Yongkai Li, Zhiwei Wang, Jia-Xin Yin, Pengcheng Dai, and Philippe Bourges

Phys. Rev. B 110, 195109 (2024) - Published 4 November, 2024

Signatures of canted antiferromagnetism in infinite-layer nickelates studied by x-ray magnetic dichroism

G. Krieger, H. Sahib, F. Rosa, M. Rath, Y. Chen, A. Raji, P. V. B. Pinho, C. Lefevre, G. Ghiringhelli, A. Gloter, N. Viart, M. Salluzzo, and D. Preziosi

Phys. Rev. B 110, 195110 (2024) - Published 4 November, 2024

Plaquette-type valence bond solid state in the J1J2 square-lattice Heisenberg model

Jiale Huang, Xiangjian Qian, and Mingpu Qin

Phys. Rev. B 110, 195111 (2024) - Published 4 November, 2024

Flat bands in chiral multilayer graphene

Roi Makov, Francisco Guinea, and Ady Stern

Phys. Rev. B 110, 195112 (2024) - Published 4 November, 2024

Hyperbolic fractional Chern insulators

Ai-Lei He, Lu Qi, Yongjun Liu, and Yi-Fei Wang

Phys. Rev. B 110, 195113 (2024) - Published 5 November, 2024

Gapless deconfined phase in a ZN-symmetric Hamiltonian created in a cold-atom setup

Mykhailo V. Rakov, Luca Tagliacozzo, Maciej Lewenstein, Jakub Zakrzewski, and Titas Chanda

Phys. Rev. B 110, 195114 (2024) - Published 5 November, 2024

Higher-bracket structure of density operators in Weyl fermion systems and topological insulators

Edwin Langmann, Shinsei Ryu, and Ken Shiozaki

Phys. Rev. B 110, 195115 (2024) - Published 6 November, 2024

Superlattice-induced electron percolation within a single Landau level

Nilanjan Roy, Bo Peng, and Bo Yang

Phys. Rev. B 110, 195116 (2024) - Published 6 November, 2024

Pinch points and half moons encode Berry curvature

Han Yan (闫寒), Judit Romhányi, Andreas Thomasen, and Nic Shannon

Phys. Rev. B 110, 195117 (2024) - Published 6 November, 2024

Origin of the charge density wave state in BaFe2Al9

Yuping Li, Mingfeng Liu, Jiangxu Li, Jiantao Wang, Junwen Lai, Dongchang He, Ruizhi Qiu, Yan Sun, Xing-Qiu Chen, and Peitao Liu

Phys. Rev. B 110, 195118 (2024) - Published 6 November, 2024

Nonlinear anomalous transverse responses induced by the Berry curvature quadrupole in systems with broken time-reversal symmetry

Srimayi Korrapati, Snehasish Nandy, and Sumanta Tewari

Phys. Rev. B 110, 195119 (2024) - Published 6 November, 2024

Spin orbital lattice entanglement in the ideal j=12 compound K2IrCl6

P. Warzanowski, M. Magnaterra, Ch. J. Sahle, M. Moretti Sala, P. Becker, L. Bohatý, I. Císařová, G. Monaco, T. Lorenz, P. H. M. van Loosdrecht, J. van den Brink, and M. Grüninger

Phys. Rev. B 110, 195120 (2024) - Published 7 November, 2024

Materials with spin-orbit entangled j=½ moments provide a rich playground for frustrated quantum magnetism. Combining resonant inelastic x-ray scattering, optical spectroscopy, and x-ray diffraction, the authors show here that cubic K2IrCl6 hosts ideal spin-orbit entangled j=½ moments. Importantly, they also show that the j=³⁄₂ excited states hybridize with vibrational states leading to spin orbital lattice entanglement in K2IrCl6, thereby substantially enriching the field of spin-orbit entangled materials physics.

Tunable surface electron gas and effect of phonons in Sr2CuO3: A first-principles study

Xin Du, Hui-Hui He, Xiao-Xiao Man, Zhong-Yi Lu, and Kai Liu

Phys. Rev. B 110, 195121 (2024) - Published 7 November, 2024

Insulator-to-insulator transition and sign problem in the periodic Anderson model with a staggered potential

Mengfan Wang, Danqing Hu, and Yi-feng Yang

Phys. Rev. B 110, 195122 (2024) - Published 7 November, 2024

Derivation of low-energy Hamiltonians for heavy-fermion materials

E. A. Ghioldi, Zhentao Wang, L. M. Chinellato, Jian-Xin Zhu, Yusuke Nomura, Ryotaro Arita, W. Simeth, M. Janoschek, F. Ronning, and C. D. Batista

Phys. Rev. B 110, 195123 (2024) - Published 8 November, 2024

Vacancy-induced pseudogap formation in antiferromagnetic Cr0.86ZnSb

Michael Parzer, Fabian Garmroudi, Herwig Michor, Xinlin Yan, Ernst Bauer, Gerda Rogl, Jiri Bursik, Stephen Cottrell, Raimund Podloucky, and Peter Rogl

Phys. Rev. B 110, 195124 (2024) - Published 8 November, 2024

Geometrical Nernst effect in the kagome magnet YMn6Sn4Ge2

Yuan Zhu, Dechen Zhang, Guoxin Zheng, Kuan-Wen Chen, Hari Bhandari, Kaila Jenkins, Aaron Chan, Nirmal J. Ghimire, and Lu Li

Phys. Rev. B 110, 195125 (2024) - Published 12 November, 2024

Superconductivity in a topological lattice model with strong repulsion

Rahul Sahay, Stefan Divic, Daniel E. Parker, Tomohiro Soejima, Sajant Anand, Johannes Hauschild, Monika Aidelsburger, Ashvin Vishwanath, Shubhayu Chatterjee, Norman Y. Yao, and Michael P. Zaletel

Phys. Rev. B 110, 195126 (2024) - Published 12 November, 2024

Can superconductivity arise from strong repulsive interactions between electrons in a lattice model with topological bands? Here, the authors answer this question in the affirmative via DMRG numerical simulations of an interacting spinful bilayer Hofstadter model featuring low-lying bands of opposite Chern number. Furthermore, by developing a new technique to probe the pairing symmetry in number-conserving DMRG, the authors demonstrate that superconductivity is p-wave, tantalizingly reminiscent of nodal pairing recently observed in twisted bilayer graphene, which shares many structural similarities with their model. This work thus showcases the possibility of an all-electronic pairing mechanism in the strong coupling limit in two dimensions, which can be tested directly with cold fermions in an optical lattice.

Effect of F on Mn dissolution from Li2MnO3(01¯0) in solution: Solvation effects and electronic origin

Tamotsu Hashimoto, Hiroshi Nakano, Hisao Nakamura, and Takehide Miyazaki

Phys. Rev. B 110, 195127 (2024) - Published 12 November, 2024

Electronic properties of the dimerized organic conductor κ-(BETS)2Mn[N(CN)2]3

Marvin Schmidt, Savita Priya, Zhijie Huang, Mark Kartsovnik, Natalia Kushch, and Martin Dressel

Phys. Rev. B 110, 195128 (2024) - Published 12 November, 2024

Competition between dimerization and vector chirality in the spin-32 J1J2 Heisenberg chain with uniaxial single-ion anisotropy

Ji-Lu He, Sebastian Eggert, Haiqing Lin, Xiaoqun Wang, and Shi-Jie Hu

Phys. Rev. B 110, 195129 (2024) - Published 13 November, 2024

Exploring the dielectric function of platinum

Andrey Tselin, Mariia Pogodaeva, Sergey Levchenko, Aleksey Kalmykov, Konstantin Garbuzov, Alexander Smirnov, and Vladimir Drachev

Phys. Rev. B 110, 195130 (2024) - Published 13 November, 2024

Quantum geometry induced third-order nonlinear transport responses

Debottam Mandal, Sanjay Sarkar, Kamal Das, and Amit Agarwal

Phys. Rev. B 110, 195131 (2024) - Published 13 November, 2024

The authors develop here a comprehensive framework for third-order electronic transport, focusing on the impact of quantum geometry in materials where conventional responses are absent. By deriving new forms of reciprocal longitudinal and Hall currents in time-reversal symmetry-broken systems, they reveal how quantum geometric features – specifically, the quantum geometric connection and tensor – shape these nonlinear currents. This theoretical advancement provides a blueprint for identifying materials with intrinsic third-order responses, with potential applications in advanced quantum technologies.

Universal nonlinear responses of quantum Hall systems with Galilean invariance

Tatsuya Amitani and Yusuke Nishida

Phys. Rev. B 110, 195132 (2024) - Published 14 November, 2024

Reviving Majorana zero modes in the spin-12 Kitaev ladder model

Haoting Xu and Hae-Young Kee

Phys. Rev. B 110, 195133 (2024) - Published 14 November, 2024

Flat band, tunable chiral anomaly, and pitchfork bifurcation in a honeycomb lattice

V. A. Saroka, F. Kong, L. Bogani, C. A. Downing, R. B. Payod, F. R. Fischer, and Xiankai Sun

Phys. Rev. B 110, 195134 (2024) - Published 14 November, 2024

Magnetic phase diagram of a two-orbital model for bilayer nickelates with varying doping

Ling-Fang Lin, Yang Zhang, Nitin Kaushal, Gonzalo Alvarez, Thomas A. Maier, Adriana Moreo, and Elbio Dagotto

Phys. Rev. B 110, 195135 (2024) - Published 18 November, 2024

Motivated by the discovery of bilayer nickelate superconductor La3Ni2O7, the authors investigate here magnetic phase diagrams with varying electronic densities n in a bilayer 2×2×2 cluster. Rich magnetic states are observed, which can be understood by three main coupling mechanisms: (1) half-empty ferromagnetic (FM) coupling, (2) half-half antiferromagnetic (AFM) coupling, and (3) half-full FM coupling. At the half-filling case, the half-half mechanism leads to a robust (π, π, π) state. For the La3Ni2O7 (n=1.5) case, the AFM coupling is found to be strong along the z axis, while the xy plane shows strong competition between AFM and FM tendencies.

Analytical expression for the magnetic susceptibility in terms of magnetic Bloch states

Katsuhiko Higuchi and Masahiko Higuchi

Phys. Rev. B 110, 195136 (2024) - Published 18 November, 2024

Resolving geometric excitations of fractional quantum Hall states

Yang Liu, Tongzhou Zhao, and T. Xiang

Phys. Rev. B 110, 195137 (2024) - Published 18 November, 2024

Charge transfer in heterostructures of T and H transition metal dichalcogenides

Irián Sánchez-Ramírez, Maia G. Vergniory, and Fernando de Juan

Phys. Rev. B 110, 195138 (2024) - Published 19 November, 2024

Quantum geometric tensor from real-space twists of chiral chains

Sangyun Lee, Junhee Shin, Hogyun Jeong, and Hosub Jin

Phys. Rev. B 110, 195139 (2024) - Published 19 November, 2024

Quadratic dispersion relations in gapless frustration-free systems

Rintaro Masaoka, Tomohiro Soejima, and Haruki Watanabe

Phys. Rev. B 110, 195140 (2024) - Published 20 November, 2024

Magnetotransport in a graphite cylinder under quantizing fields

N. Kunchur, S. Galeski, F. Menges, R. Wawrzyńczak, C. Felser, T. Meng, and J. Gooth

Phys. Rev. B 110, 195141 (2024) - Published 20 November, 2024

Dual topological insulator with mirror symmetry protected helical edge states

Warlley H. Campos, Poliana H. Penteado, Julian Zanon, Paulo E. Faria Junior, Denis R. Candido, and J. Carlos Egues

Phys. Rev. B 110, 195142 (2024) - Published 21 November, 2024

Numerical study of quantum oscillations of quasiparticle lifetime: Impurity spectroscopy and electric field and strain effects

Valentin Leeb and Johannes Knolle

Phys. Rev. B 110, 195143 (2024) - Published 21 November, 2024

Second Euler number in four-dimensional matter

Adrien Bouhon, Yan-Qing Zhu, Robert-Jan Slager, and Giandomenico Palumbo

Phys. Rev. B 110, 195144 (2024) - Published 22 November, 2024

Chiral kinematic theory and converse vortical effects

Kai Chen, Swadeepan Nanda, and Pavan Hosur

Phys. Rev. B 110, 195145 (2024) - Published 22 November, 2024

Exact nuclear cusps in all-electron orbital-free density functional theory

Michael J. Hutcheon and Andrew M. Wibowo-Teale

Phys. Rev. B 110, 195146 (2024) - Published 22 November, 2024

Layer-resolved magnetotransport properties in antiferromagnetic/paramagnetic superlattices: Proximity effect induced antiferromagnetism in a paramagnetic metal

Sandip Halder, Sourav Chakraborty, and Kalpataru Pradhan

Phys. Rev. B 110, 195147 (2024) - Published 25 November, 2024

Quasi-Lindblad pseudomode theory for open quantum systems

Gunhee Park (박건희), Zhen Huang, Yuanran Zhu, Chao Yang, Garnet Kin-Lic Chan, and Lin Lin

Phys. Rev. B 110, 195148 (2024) - Published 25 November, 2024

Generalized symmetries in singularity-free nonlinear σ models and their disordered phases

Salvatore D. Pace, Chenchang Zhu, Agnès Beaudry, and Xiao-Gang Wen

Phys. Rev. B 110, 195149 (2024) - Published 25 November, 2024

Vavilov-Cherenkov radiation for parallel motion in three-dimensional topological insulators

O. J. Franca and Stefan Yoshi Buhmann

Phys. Rev. B 110, 195150 (2024) - Published 26 November, 2024

Accurate electron correlation energy functional: Expansion in the interaction renormalized by the random-phase approximation

Mario Benites, Angel Rosado, and Efstratios Manousakis

Phys. Rev. B 110, 195151 (2024) - Published 26 November, 2024

Valence bond solid phases in the spin-12 Kekulé-Heisenberg model

Fatemeh Mirmojarabian, Saeed S. Jahromi, and Jahanfar Abouie

Phys. Rev. B 110, 195152 (2024) - Published 27 November, 2024

Topological nodal line features in NiSe semimetal: Insights from electronic transport and density functional theory studies

Sharadnarayan Pradhan, Sanand Kumar Pradhan, Priyanath Mal, P. Rambabu, Archana Lakhani, Bipul Das, Bheema Lingam Chittari, G. R. Turpu, and Pradip Das

Phys. Rev. B 110, 195153 (2024) - Published 27 November, 2024

Dichroic Kβ x-ray emission as a probe of orbital moments

Michel van Veenendaal

Phys. Rev. B 110, 195154 (2024) - Published 27 November, 2024

Semiconductors I: bulk

Structural, elastic, and electronic properties of cubic zinc-blende InxGa1xN alloys

Jan M. Waack, Nils A. Schäfer, Michael Czerner, and Christian Heiliger

Phys. Rev. B 110, 195201 (2024) - Published 5 November, 2024

Influence of rare-earth substitution on the magnetic structure and band structure of the kagome material DyMn6Ge6

Jingwen Guo, Jianyang Ding, Dinghui Wang, Bo Chen, Yu Du, Fuwei Zhou, Heng Zhang, Hangkai Xie, Tianqi Wang, Wuyi Qi, Jiajun Li, Yiying Zhang, Fucong Fei, Zhengtai Liu, Dawei Shen, and Fengqi Song

Phys. Rev. B 110, 195202 (2024) - Published 5 November, 2024

Synergy of rutile SnO2 and TiO2 in optoelectronic applications: Electronic structure and doping properties of TixSn1xO2 alloys

Miaomiao Han, Xuefen Cai, Suhuai Wei, Thomas Frauenheim, and Peter Deák

Phys. Rev. B 110, 195203 (2024) - Published 12 November, 2024

Nonequilibrium dynamics of charge and lattice in pressurized SnSe

Xinyao Wang, Jiafeng Xie, Shujuan Xu, Kai Zhang, Zhenyou Wang, Tianwu Wang, and Fuhai Su

Phys. Rev. B 110, 195204 (2024) - Published 21 November, 2024

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

Self-consistent quasiparticle GW and hybrid functional calculations for Al/InAs/Al heterojunctions: Band offset and spin-orbit coupling effects

H. Ness, F. Corsetti, D. Pashov, B. Verstichel, G. W. Winkler, M. van Schilfgaarde, and R. M. Lutchyn

Phys. Rev. B 110, 195301 (2024) - Published 4 November, 2024

Topology of Weyl semimetal interfaces uncovered by reflection shift

Mou Yang and Qiao He

Phys. Rev. B 110, 195302 (2024) - Published 8 November, 2024

Burton-Cabrera-Frank theory for the influence of off-cut direction on the growth of hcp crystals

Guangxu Ju, Dongwei Xu, Carol Thompson, Matthew J. Highland, Jeffrey A. Eastman, Weronika Walkosz, Peter Zapol, Bo Shen, and G. Brian Stephenson

Phys. Rev. B 110, 195303 (2024) - Published 14 November, 2024

Non-Bloch-Siegert-type power-induced shift of two-photon electron spin resonances in organic light-emitting diodes

S. I. Atwood, S. Hosseinzadeh, V. V. Mkhitaryan, T. H. Tennahewa, H. Malissa, W. Jiang, T. A. Darwish, P. L. Burn, J. M. Lupton, and C. Boehme

Phys. Rev. B 110, 195304 (2024) - Published 19 November, 2024

Characterization of silicon carbide biphenylene network through G0W0-BSE calculations

Arushi Singh, Vikram Mahamiya, and Alok Shukla

Phys. Rev. B 110, 195305 (2024) - Published 25 November, 2024

Charge transfer magnetoexcitons in magnetoabsorption spectra of asymmetric type-II double quantum wells

J. Röder, M. Gerhard, C. Fuchs, W. Stolz, W. Heimbrodt, M. Koch, C. Ngo, J. T. Steiner, and T. Meier

Phys. Rev. B 110, 195306 (2024) - Published 25 November, 2024

Exciton crystal melting and destruction by disorder in a bilayer quantum Hall system with a total filling factor of one

Zhengfei Hu and Kun Yang

Phys. Rev. B 110, 195307 (2024) - Published 27 November, 2024

Surface physics, nanoscale physics, low-dimensional systems

Magnetic order influenced phonon and electron dynamics in MnBi2Te4 and Sb-doped MnBi2Te4 investigated by terahertz time-domain spectroscopy

Soumya Mukherjee, Anjan Kumar N. M., Subhadip Manna, Sambhu G. Nath, Radha Krishna Gopal, Chiranjib Mitra, and N. Kamaraju

Phys. Rev. B 110, 195401 (2024) - Published 1 November, 2024

Bulk and shear viscosities in a multicomponent two-dimensional electron system

A. D. Levin, G. M. Gusev, V. A. Chitta, A. S. Jaroshevich, and A. K. Bakarov

Phys. Rev. B 110, 195402 (2024) - Published 4 November, 2024

Efficient electron spin relaxation by chiral phonons in WSe2 monolayers

D. Lagarde, M. Glazov, V. Jindal, K. Mourzidis, Iann Gerber, A. Balocchi, L. Lombez, P. Renucci, T. Taniguchi, K. Watanabe, C. Robert, and X. Marie

Phys. Rev. B 110, 195403 (2024) - Published 4 November, 2024

In transition metal dichalcogenide semiconductor monolayers, the spin dynamics of electrons is usually controlled by the spin-valley locking effect: a carrier spin flip occurs only if there is a simultaneous change in the valley. However, very little is known about the intravalley spin relaxation processes. Here, the authors demonstrate that the spin relaxation of an electron in WSe2 monolayers can occur efficiently without a change in valley thanks to chiral phonons. The consequence is an efficient relaxation from bright to dark excitons.

Low thermal conductivity in 2H-polytype SnSe2

Manab Mandal, Nikhilesh Maity, Prahalad Kanti Barman, Rabindra Biswas, Sourav Mondal, Varun Raghunathan, Abhishek K. Singh, Pramoda K. Nayak, and Kanikrishnan Sethupathi

Phys. Rev. B 110, 195404 (2024) - Published 5 November, 2024

Electron states emerging at magnetic domain walls of magnetic semiconductors with strong Rashba effect

I. P. Rusinov, V. N. Men'shov, and E. V. Chulkov

Phys. Rev. B 110, 195405 (2024) - Published 5 November, 2024

Computational method for angle-resolved photoemission spectra from repeated-slab band structure calculations

Misa Nozaki and Peter Krüger

Phys. Rev. B 110, 195406 (2024) - Published 5 November, 2024

Fully tunable Fano resonances in chiral electronic transport

Ai-Ying Ye and Zhao Yang Zeng

Phys. Rev. B 110, 195407 (2024) - Published 8 November, 2024

Superconductivity and strain-enhanced phase stability of Janus tungsten chalcogenide hydride monolayers

Jakkapat Seeyangnok, Udomsilp Pinsook, and Graeme J. Ackland

Phys. Rev. B 110, 195408 (2024) - Published 8 November, 2024

Two-dimensional Weyl nodal-line semimetal and antihelical edge states in a modified Kane-Mele model

Xiaokang Dai, Pei-Hao Fu, Yee Sin Ang, and Qinjun Chen

Phys. Rev. B 110, 195409 (2024) - Published 12 November, 2024

Quantum state transfer in interacting multiple-excitation systems

Alexander Yue, Rubem Mondaini, Qiujiang Guo, and Richard T. Scalettar

Phys. Rev. B 110, 195410 (2024) - Published 12 November, 2024

Coherent passage of quantum information across nodes on a network can be accomplished via quantum state transfer protocols. The authors employ here an optimized Monte Carlo annealing procedure to demonstrate that experiments emulating the physics of typical condensed matter Hamiltonians, such as localized orbitals coupled to conduction bands, could be tuned to exhibit highly efficient quantum state transfer.

Mechanical spin splitting in zigzag graphene nanoribbons

Rouhollah Farghadan

Phys. Rev. B 110, 195411 (2024) - Published 12 November, 2024

Zero-bias anomaly in self-organized nanostructures in the ternary system Au/Co/Ge(001)

Marcel Schlesag, Till-Jakob Stehling, Nico Kubetschek, Ulrike Kürpick, and René Matzdorf

Phys. Rev. B 110, 195412 (2024) - Published 12 November, 2024

Multiple quantum confinement effects in charge density wave nanostructures

Lili Zhou, Yu Zhang, Yaoyao Chen, Liangguang Jia, Can Zhang, Xu Han, Huixia Yang, Hong-Jun Gao, and Yeliang Wang

Phys. Rev. B 110, 195413 (2024) - Published 14 November, 2024

Residual entropy of ice: A study based on transfer matrices

De-Zhang Li, Yu-Jie Cen, Xin Wang, and Xiao-Bao Yang

Phys. Rev. B 110, 195414 (2024) - Published 14 November, 2024

Four-terminal voltage fluctuations in disordered graphene nanoribbons: Anderson and anomalous localization effects

Pablo Encarnación and Victor A. Gopar

Phys. Rev. B 110, 195415 (2024) - Published 14 November, 2024

Electron conductance and many-body marker of a cavity-embedded topological one-dimensional chain

Danh-Phuong Nguyen, Geva Arwas, and Cristiano Ciuti

Phys. Rev. B 110, 195416 (2024) - Published 15 November, 2024

The authors investigate here, using an exact diagonalization approach, how electron transport in the paradigmatic Su-Schrieffer-Heeger (SSH) model, a cornerstone of 1D topological systems, is influenced by cavity quantum fields. In addition to analyzing how the cavity modifies the linear electron conductance, they uncover an exact many-body topological marker that remains valid for any degree of cavity coupling and light-matter entanglement, providing a new framework for studying topological phases in cavity-coupled systems.

Competing effects of temperature and mechanical stress on polar vortex transition in oxide superlattices

Pan Chen, Xu Hou, Jiandi Zhang, Congbing Tan, Peng Gao, Yan Liang, Xuezeng Tian, Lei Liao, Xu-Sheng Yang, Zhexin Jiang, Zhi Xu, Jie Wang, and Xuedong Bai

Phys. Rev. B 110, 195417 (2024) - Published 15 November, 2024

Moiré plane wave expansion model for scanning tunneling microscopy simulations of incommensurate two-dimensional materials

M. Le Ster, P. Dabrowski, P. Krukowski, M. Rogala, I. Lutsyk, W. Ryś, T. Märkl, S. A. Brown, J. Sławińska, K. Palotás, and P. J. Kowalczyk

Phys. Rev. B 110, 195418 (2024) - Published 15 November, 2024

Dispersion characteristics of a glide-symmetric square-patch metamaterial with giant anisotropy

Jim A. Enriquez, Eugene Koreshin, Juan P. Del Risco, Pavel A. Belov, and Juan D. Baena

Phys. Rev. B 110, 195419 (2024) - Published 15 November, 2024

Ultrahigh-contrast plasmonic mode conversion in coupled graphene waveguides by manipulating the graphene chemical potential and the gyration

Kum-Dong Kim, Song-Jin Im, Kil-Song Song, Ji-Song Pae, Chol-Song Ri, Kum-Song Ho, and Yong-Ha Han

Phys. Rev. B 110, 195420 (2024) - Published 18 November, 2024

On-chip deep subwavelength optomagnetic bistable memory based on inverse Faraday effect related nonlinearity in graphene waveguide ring resonators

Jin-Song Kim, Chol-Song Ri, Ye-Jin Yun, Song-Jin Im, Kum-Dong Kim, Kil-Song Song, Ji-Song Pae, and Kum-Song Ho

Phys. Rev. B 110, 195421 (2024) - Published 18 November, 2024

Dispersion-induced Q-factor enhancement in waveguide-coupled surface lattice resonances

Jussi Kelavuori, Ali Panahpour, and Mikko J. Huttunen

Phys. Rev. B 110, 195422 (2024) - Published 18 November, 2024

Exceptional points in PT-symmetric layered structures with an anisotropic defect

Milena Ramanovich, Andrey Novitsky, Vjaceslavs Bobrovs, Alexander S. Shalin, and Denis V. Novitsky

Phys. Rev. B 110, 195423 (2024) - Published 18 November, 2024

Low-temperature thermoelectric transport in the disordered two-dimensional electron gas

Zahidul Islam Jitu and Georg Schwiete

Phys. Rev. B 110, 195424 (2024) - Published 18 November, 2024

Electron-plasmon scattering in doped graphene

Josip Jakovac and Vito Despoja

Phys. Rev. B 110, 195425 (2024) - Published 19 November, 2024

Persistent currents in mesoscopic spin-orbit coupled rings due to an applied Zeeman field

Bijay Kumar Sahoo, Subroto Mukerjee, and Abhiram Soori

Phys. Rev. B 110, 195426 (2024) - Published 19 November, 2024

Tunable topological edge states in black-phosphorus-like Bi(110)

Chen Liu, Shengdan Tao, Guanyong Wang, Hongyuan Chen, Bing Xia, Hao Yang, Xiaoxue Liu, Liang Liu, Yaoyi Li, Shiyong Wang, Hao Zheng, Canhua Liu, Dandan Guan, Yunhao Lu, and Jin-feng Jia

Phys. Rev. B 110, 195427 (2024) - Published 19 November, 2024

Two-dimensional ferroelectricity in all-inorganic halide perovskite monolayer Cs2PbX4 (X=F, Cl, Br, I)

Junting Zhang, Ke Ji, Jun He, and Yu Xie

Phys. Rev. B 110, 195428 (2024) - Published 19 November, 2024

Three-dimensional dispersion in the type-II Dirac semimetals PtTe2 and PdTe2 revealed through circular dichroism in angle-resolved photoemission spectroscopy

Ivan Pelayo, Derek Bergner, Archibald J. Williams, Jiayuwen Qi, Penghao Zhu, Mahfuzun Nabi, Warren L. B. Huey, Luca Moreschini, Ziling Deng, Tyler Hadsell, Jonathan Denlinger, Alessandra Lanzara, Yuan-Ming Lu, Wolfgang Windl, Joshua Goldberger, and Claudia Ojeda-Aristizabal

Phys. Rev. B 110, 195429 (2024) - Published 20 November, 2024

Graphene shapes from quantum elasticity

Pablo A. Morales and Pavel Castro-Villarreal

Phys. Rev. B 110, 195430 (2024) - Published 21 November, 2024

Low-temperature electronic transport properties of ruthenium thin films and nanowires

Nikolai Mai, Thomas Heinzel, Mihai Cerchez, Shibesh Dutta, Anshul Gupta, Shreya Kundu, Giacomo Talmelli, Florin Ciubotaru, Zsolt Tőkei, and Christoph Adelmann

Phys. Rev. B 110, 195431 (2024) - Published 21 November, 2024

Pulling force enabled by unlocking the optical phase

Andrei Kiselev, Siarhei Zavatski, Olivier J. F. Martin, and Karim Achouri

Phys. Rev. B 110, 195432 (2024) - Published 21 November, 2024

Theory of excitons in colloidal semiconductor nanoplatelets

Sergio Mazzotti, Michael U. Mühlematter, Giulia Galli, and David J. Norris

Phys. Rev. B 110, 195433 (2024) - Published 21 November, 2024

Modal approach to the coupling strength of quantum emitters in electromagnetic resonators

Mohammad Abutoama, George Kountouris, Jesper Mørk, and Philip Trøst Kristensen

Phys. Rev. B 110, 195434 (2024) - Published 21 November, 2024

Microscopic theory of polariton-polariton interactions

E. R. Christensen, A. Camacho-Guardian, O. Cotlet, A. Imamoglu, M. Wouters, G. M. Bruun, and I. Carusotto

Phys. Rev. B 110, 195435 (2024) - Published 22 November, 2024

The authors develop here a microscopic theory of polariton-polariton interactions in microcavity systems, employing ab initio calculations for dipolar polaritons to build a generalized Born-Oppenheimer framework. Their theory predicts that strong light-matter coupling drastically enhances interaction strength, revealing unexpected scaling laws that can be experimentally validated. This model applies to both dipolar and non-dipolar polaritons, offering new insights and experimental strategies to explore strong polariton correlations and advance towards the realization of a polariton blockade regime.

Enabling superresolution detection via dispersion-induced time diffraction of evanescent waves

Kedi Wu, Neng Wang, and Guo Ping Wang

Phys. Rev. B 110, 195436 (2024) - Published 22 November, 2024

Resonant phonons: Localization in a structurally ordered crystal

Albert Beardo, Paul Desmarchelier, Chia-Nien Tsai, Prajit Rawte, Konstantinos Termentzidis, and Mahmoud I. Hussein

Phys. Rev. B 110, 195438 (2024) - Published 26 November, 2024

Hydrodynamics of spin transport in the Haldane-Shastry chain

Vir B. Bulchandani and Hyunsoo Ha

Phys. Rev. B 110, 195439 (2024) - Published 26 November, 2024

ERRATA

Erratum: Heat capacity of URu2xOsxSi2 at low temperatures [Phys. Rev. B 105, L041106 (2022)]

D. L. Kunwar, S. R. Panday, Y. Deng, S. Ran, R. E. Baumbach, M. B. Maple, Carmen C. Almasan, and M. Dzero

Phys. Rev. B 110, 199901 (2024) - Published 4 November, 2024

Erratum: Constructing semilocal approximations for noncollinear spin density functional theory featuring exchange-correlation torques [Phys. Rev. B 107, 165111 (2023)]

Nicolas Tancogne-Dejean, Angel Rubio, and Carsten A. Ullrich

Phys. Rev. B 110, 199902 (2024) - Published 12 November, 2024

Erratum: Nematic heavy fermions and coexisting magnetic order in CeSiI [Phys. Rev. B 109, L201118 (2024)]

Aayush Vijayvargia and Onur Erten

Phys. Rev. B 110, 199903 (2024) - Published 12 November, 2024

Sign In to Your Journals Account

Filter

Filter

Article Lookup

Enter a citation