Browse Issues:

HIGHLIGHTED ARTICLES

Presence and absence of itinerant gapless excitations in the quantum spin liquid candidate EtMe3Sb[Pd(dmit)2]2

M. Yamashita, Y. Sato, T. Tominaga, Y. Kasahara, S. Kasahara, H. Cui, R. Kato, T. Shibauchi, and Y. Matsuda

Phys. Rev. B 101, 140407(R) (2020) - Published 21 April, 2020

The presence or absence of itinerant gapless excitations in the organic quantum spin liquid (QSL) candidate EtMe3Sb[Pd(dmit)2]2, probed by a finite residual linear term in the thermal conductivity κ0/T, has been a controversial hot topic. Here, the authors find that κ0/T strongly depends on the cooling process. A finite κ0/T is observed in a slowly cooled sample, but not in a rapidly cooled sample. These results provide evidence that the true ground state of EtMe3Sb[Pd(dmit)2]2 is a QSL with itinerant gapless excitations.

Emergent spin-1 Haldane gap and ferroelectricity in a frustrated spin-12 ladder

H. Ueda, S. Onoda, Y. Yamaguchi, T. Kimura, D. Yoshizawa, T. Morioka, M. Hagiwara, M. Hagihala, M. Soda, T. Masuda, T. Sakakibara, K. Tomiyasu, S. Ohira-Kawamura, K. Nakajima, R. Kajimoto, M. Nakamura, Y. Inamura, N. Reynolds, M. Frontzek, J. S. White, M. Hase, and Y. Yasui

Phys. Rev. B 101, 140408(R) (2020) - Published 22 April, 2020

Combined experimental and theoretical studies reveal that the low-temperature magnetic properties of Rb2Cu2Mo3O12 are nicely explained in terms of a two-leg ladder of frustrated ferromagnetic spin-12 chains. The system hosts a nonmagnetic tetramer ground state that is adiabatically connected to a couple of isolated Haldane dimer spin-12 chains. Remarkably, ferroelectricity emerges at much lower magnetic fields than the spin gap, suggesting a rare case of ferroelectricity induced by vector spin chirality.

High-field quantum disordered state in α−RuCl3: Spin flips, bound states, and multiparticle continuum

A. Sahasrabudhe, D. A. S. Kaib, S. Reschke, R. German, T. C. Koethe, J. Buhot, D. Kamenskyi, C. Hickey, P. Becker, V. Tsurkan, A. Loidl, S. H. Do, K. Y. Choi, M. Grüninger, S. M. Winter, Zhe Wang, R. Valentí, and P. H. M. van Loosdrecht

Phys. Rev. B 101, 140410(R) (2020) - Published 24 April, 2020

Raman and terahertz spectroscopy, combined with exact diagonalization studies, reveal the nature of the high-field phase of the proximate Kitaev material α-RuCl3 as a partially polarized quantum disordered state. The state is characterized by a gapped multiparticle continuum, out of which a two-particle bound state emerges, together with a well-defined single-particle excitation at low energy. The results underline the unusual nature of the high-field phase, and the important role of Kitaev and off-diagonal interactions in α-RuCl3.

Ground-state magnetic structure of Mn3Ge

J.-R. Soh, F. de Juan, N. Qureshi, H. Jacobsen, H.-Y. Wang, Y.-F. Guo, and A. T. Boothroyd

Phys. Rev. B 101, 140411(R) (2020) - Published 27 April, 2020

The antiferromagnet Mn3Ge has been recently shown to exhibit a large spontaneous anomalous Hall effect, which can be switched by a small magnetic field and which has been attributed to topologically protected Weyl nodes. Up till now, the true ground-state magnetic structure of the compound has eluded countless experimental studies, which began some fifty years ago. Here, the authors report the use of an advanced polarized neutron scattering technique to resolve unambiguously the magnetic structure of this compound.

Ultracold quantum wires with localized losses: Many-body quantum Zeno effect

Heinrich Fröml, Christopher Muckel, Corinna Kollath, Alessio Chiocchetta, and Sebastian Diehl

Phys. Rev. B 101, 144301 (2020) - Published 1 April, 2020

The effect of localized loss on a one-dimensional gas of interacting fermions is investigated. Here, the interplay of gapless quantum fluctuations and particle interactions strongly renormalizes the dissipative impurity. As a result, the loss probability for modes close to the Fermi energy vanishes for arbitrary strength of the dissipation, as a many-body incarnation of the quantum Zeno effect. This is reflected in the shape of the particle momentum distribution, exhibiting a peak close to the Fermi momentum.

Phonon rotoelectric effect

Masato Hamada and Shuichi Murakami

Phys. Rev. B 101, 144306 (2020) - Published 29 April, 2020

Here, the authors theoretically propose a new method to generate phonon angular momenta – rotational motions of atoms in crystals by the electric field. From a symmetry analysis, they consider multiferroic materials without both time-reversal and inversion symmetries and with their product being conserved. When the electric field is applied, the phonon angular momentum is generated via the spin-phonon interaction and the lattice distortion due to the electric field.

Low-energy magnons in the chiral ferrimagnet Cu2OSeO3: A coarse-grained approach

Yi Luo, G. G. Marcus, B. A. Trump, J. Kindervater, M. B. Stone, J. A. Rodriguez-Rivera, Yiming Qiu, T. M. McQueen, O. Tchernyshyov, and C. Broholm

Phys. Rev. B 101, 144411 (2020) - Published 8 April, 2020

The asymmetric magnetic interactions that control the low-energy excitations and the skyrmionic spin texture of the chiral breathing pyrochlore ferrimagnet Cu2OSeO3 have been determined through inelastic neutron scattering and a coarse-grained spin-wave theory. The complex low-energy excitation spectrum, including the equal-time structure factor through multiple Brillouin zones, is accurately described with great simplification by treating each tetrahedron as a spin-1 molecule. A strongly momentum selective X-point magnon decay into two long-wavelength magnons is discovered.

Mean-field phase diagram and spin-glass phase of the dipolar kagome Ising antiferromagnet

Leticia F. Cugliandolo, Laura Foini, and Marco Tarzia

Phys. Rev. B 101, 144413 (2020) - Published 8 April, 2020

Frustrated magnets are among the most fascinating condensed matter systems that are still not fully understood. Here, the authors outline, with mean-field analytic tools, the phase diagram of the classical dipolar antiferromagnet on the kagome lattice. They show that the properties of the low-temperature phase and the slow dynamics are inherited from a spin-glass transition that is avoided in two dimensions.

RAPID COMMUNICATIONS

Structure, structural phase transitions, mechanical properties, defects

Iodine interstitials as a cause of nonradiative recombination in hybrid perovskites

Xie Zhang, Mark E. Turiansky, Jimmy-Xuan Shen, and Chris G. Van de Walle

Phys. Rev. B 101, 140101(R) (2020) - Published 15 April, 2020

Atomic-scale origin of ultrahigh piezoelectricity in samarium-doped PMN-PT ceramics

Chunchun Li, Bin Xu, Dabin Lin, Shujun Zhang, Laurent Bellaiche, Thomas R. Shrout, and Fei Li

Phys. Rev. B 101, 140102(R) (2020) - Published 27 April, 2020

Magnetism

Impurity moments conceal low-energy relaxation of quantum spin liquids

A. Pustogow, T. Le, H.-H. Wang, Yongkang Luo, E. Gati, H. Schubert, M. Lang, and S. E. Brown

Phys. Rev. B 101, 140401(R) (2020) - Published 2 April, 2020

Manipulating magnetism in the topological semimetal EuCd2As2

Na Hyun Jo, Brinda Kuthanazhi, Yun Wu, Erik Timmons, Tae-Hoon Kim, Lin Zhou, Lin-Lin Wang, Benjamin G. Ueland, Andriy Palasyuk, Dominic H. Ryan, Robert J. McQueeney, Kyungchan Lee, Benjamin Schrunk, Anton A. Burkov, Ruslan Prozorov, Sergey L. Bud'ko, Adam Kaminski, and Paul C. Canfield

Phys. Rev. B 101, 140402(R) (2020) - Published 7 April, 2020

Effect of perturbations on the kagome S=12 antiferromagnet at all temperatures

Bernard Bernu, Laurent Pierre, Karim Essafi, and Laura Messio

Phys. Rev. B 101, 140403(R) (2020) - Published 13 April, 2020

Deterministic approach to skyrmionic dynamics at nonzero temperatures: Pinning sites and racetracks

Josep Castell-Queralt, Leonardo González-Gómez, Nuria Del-Valle, and Carles Navau

Phys. Rev. B 101, 140404(R) (2020) - Published 16 April, 2020

Spin-torque switching of noncollinear antiferromagnetic antiperovskites

Gautam Gurung, Ding-Fu Shao, and Evgeny Y. Tsymbal

Phys. Rev. B 101, 140405(R) (2020) - Published 17 April, 2020

Localized singlets and ferromagnetic fluctuations in the dilute magnetic topological insulator Sn0.95Mn0.05Te

D. Vaknin, Santanu Pakhira, D. Schlagel, F. Islam, Jianhua Zhang, D. M. Pajerowski, C. Z. Wang, D. C. Johnston, and R. J. McQueeney

Phys. Rev. B 101, 140406(R) (2020) - Published 20 April, 2020

Presence and absence of itinerant gapless excitations in the quantum spin liquid candidate EtMe3Sb[Pd(dmit)2]2

M. Yamashita, Y. Sato, T. Tominaga, Y. Kasahara, S. Kasahara, H. Cui, R. Kato, T. Shibauchi, and Y. Matsuda

Phys. Rev. B 101, 140407(R) (2020) - Published 21 April, 2020

The presence or absence of itinerant gapless excitations in the organic quantum spin liquid (QSL) candidate EtMe3Sb[Pd(dmit)2]2, probed by a finite residual linear term in the thermal conductivity κ0/T, has been a controversial hot topic. Here, the authors find that κ0/T strongly depends on the cooling process. A finite κ0/T is observed in a slowly cooled sample, but not in a rapidly cooled sample. These results provide evidence that the true ground state of EtMe3Sb[Pd(dmit)2]2 is a QSL with itinerant gapless excitations.

Emergent spin-1 Haldane gap and ferroelectricity in a frustrated spin-12 ladder

H. Ueda, S. Onoda, Y. Yamaguchi, T. Kimura, D. Yoshizawa, T. Morioka, M. Hagiwara, M. Hagihala, M. Soda, T. Masuda, T. Sakakibara, K. Tomiyasu, S. Ohira-Kawamura, K. Nakajima, R. Kajimoto, M. Nakamura, Y. Inamura, N. Reynolds, M. Frontzek, J. S. White, M. Hase, and Y. Yasui

Phys. Rev. B 101, 140408(R) (2020) - Published 22 April, 2020

Combined experimental and theoretical studies reveal that the low-temperature magnetic properties of Rb2Cu2Mo3O12 are nicely explained in terms of a two-leg ladder of frustrated ferromagnetic spin-12 chains. The system hosts a nonmagnetic tetramer ground state that is adiabatically connected to a couple of isolated Haldane dimer spin-12 chains. Remarkably, ferroelectricity emerges at much lower magnetic fields than the spin gap, suggesting a rare case of ferroelectricity induced by vector spin chirality.

Large anomalous Hall effect in a hexagonal ferromagnetic Fe5Sn3 single crystal

Hang Li, Bingwen Zhang, Jinghua Liang, Bei Ding, Jie Chen, Jianlei Shen, Zefang Li, Enke Liu, Xuekui Xi, Guangheng Wu, Yuan Yao, Hongxin Yang, and Wenhong Wang

Phys. Rev. B 101, 140409(R) (2020) - Published 24 April, 2020

High-field quantum disordered state in α−RuCl3: Spin flips, bound states, and multiparticle continuum

A. Sahasrabudhe, D. A. S. Kaib, S. Reschke, R. German, T. C. Koethe, J. Buhot, D. Kamenskyi, C. Hickey, P. Becker, V. Tsurkan, A. Loidl, S. H. Do, K. Y. Choi, M. Grüninger, S. M. Winter, Zhe Wang, R. Valentí, and P. H. M. van Loosdrecht

Phys. Rev. B 101, 140410(R) (2020) - Published 24 April, 2020

Raman and terahertz spectroscopy, combined with exact diagonalization studies, reveal the nature of the high-field phase of the proximate Kitaev material α-RuCl3 as a partially polarized quantum disordered state. The state is characterized by a gapped multiparticle continuum, out of which a two-particle bound state emerges, together with a well-defined single-particle excitation at low energy. The results underline the unusual nature of the high-field phase, and the important role of Kitaev and off-diagonal interactions in α-RuCl3.

Ground-state magnetic structure of Mn3Ge

J.-R. Soh, F. de Juan, N. Qureshi, H. Jacobsen, H.-Y. Wang, Y.-F. Guo, and A. T. Boothroyd

Phys. Rev. B 101, 140411(R) (2020) - Published 27 April, 2020

The antiferromagnet Mn3Ge has been recently shown to exhibit a large spontaneous anomalous Hall effect, which can be switched by a small magnetic field and which has been attributed to topologically protected Weyl nodes. Up till now, the true ground-state magnetic structure of the compound has eluded countless experimental studies, which began some fifty years ago. Here, the authors report the use of an advanced polarized neutron scattering technique to resolve unambiguously the magnetic structure of this compound.

Quantum spiral spin-tensor magnetism

Xiaofan Zhou, Xi-Wang Luo, Gang Chen, Suotang Jia, and Chuanwei Zhang

Phys. Rev. B 101, 140412(R) (2020) - Published 30 April, 2020

Fragile magnetic ground state of a spin-12 metal-organic kagome lattice

A. Jain, S. M. Yusuf, P. Kanoo, S. K. Dhar, and Tapas Kumar Maji

Phys. Rev. B 101, 140413(R) (2020) - Published 30 April, 2020

Superfluidity and superconductivity

Experimental conditions for the observation of electron-hole superfluidity in GaAs heterostructures

Samira Saberi-Pouya, Sara Conti, Andrea Perali, Andrew F. Croxall, Alexander R. Hamilton, François M. Peeters, and David Neilson

Phys. Rev. B 101, 140501(R) (2020) - Published 6 April, 2020

Tuning stoichiometry and its impact on superconductivity of monolayer and multilayer FeSe on SrTiO3

Chong Liu and Ke Zou

Phys. Rev. B 101, 140502(R) (2020) - Published 10 April, 2020

Enhancement and reentrance of spin triplet superconductivity in UTe2 under pressure

Sheng Ran, Hyunsoo Kim, I-Lin Liu, Shanta R. Saha, Ian Hayes, Tristin Metz, Yun Suk Eo, Johnpierre Paglione, and Nicholas P. Butch

Phys. Rev. B 101, 140503(R) (2020) - Published 14 April, 2020

Anisotropic effect of a magnetic field on the neutron spin resonance in FeSe

Tong Chen, Youzhe Chen, David W. Tam, Bin Gao, Yiming Qiu, Astrid Schneidewind, Igor Radelytskyi, Karel Prokes, Songxue Chi, Masaaki Matsuda, Collin Broholm, and Pengcheng Dai

Phys. Rev. B 101, 140504(R) (2020) - Published 16 April, 2020

Tunable structural phase transition and superconductivity in the Weyl semimetal Mo1−xWxTe2

R. Dahal, L. Z. Deng, N. Poudel, M. Gooch, Z. Wu, H. C. Wu, H. D. Yang, C. K. Chang, and C. W. Chu

Phys. Rev. B 101, 140505(R) (2020) - Published 16 April, 2020

ARTICLES

Structure, structural phase transitions, mechanical properties, defects

Quantum and thermal fluctuations of a thin elastic plate

Dennis P. Clougherty and Eliot Heinrich

Phys. Rev. B 101, 144101 (2020) - Published 13 April, 2020

Persistent insulating state at megabar pressures in strongly spin-orbit coupled Sr2IrO4

Chunhua Chen, Yonghui Zhou, Xuliang Chen, Tao Han, Chao An, Ying Zhou, Yifang Yuan, Bowen Zhang, Shuyang Wang, Ranran Zhang, Lili Zhang, Changjin Zhang, Zhaorong Yang, Lance E. DeLong, and Gang Cao

Phys. Rev. B 101, 144102 (2020) - Published 15 April, 2020

Observation of a 1.979-eV spectral line of a germanium-related color center in microdiamonds and nanodiamonds

V. S. Krivobok, E. A. Ekimov, S. G. Lyapin, S. N. Nikolaev, Yu. A. Skakov, A. A. Razgulov, and M. V. Kondrin

Phys. Rev. B 101, 144103 (2020) - Published 20 April, 2020

Thickness dependence of hydrogen-induced phase transition in MoTe2

Priyanka Manchanda, Pankaj Kumar, and Pratibha Dev

Phys. Rev. B 101, 144104 (2020) - Published 21 April, 2020

Nucleation mechanism for hcp→bcc phase transformation in shock-compressed Zr

Hongxiang Zong, Ping He, Xiangdong Ding, and Graeme J. Ackland

Phys. Rev. B 101, 144105 (2020) - Published 22 April, 2020

Structural and electronic properties of two-dimensional freestanding BaTiO3/SrTiO3 heterostructures

Fanhao Jia, Shaowen Xu, Guodong Zhao, Chao Liu, and Wei Ren

Phys. Rev. B 101, 144106 (2020) - Published 27 April, 2020

Shocked ceramics melt: An atomistic analysis of thermodynamic behavior of boron carbide

Matthew DeVries, Ghatu Subhash, and Amnaya Awasthi

Phys. Rev. B 101, 144107 (2020) - Published 27 April, 2020

Performance of the standard exchange-correlation functionals in predicting melting properties fully from first principles: Application to Al and magnetic Ni

Li-Fang Zhu, Fritz Körmann, Andrei V. Ruban, Jörg Neugebauer, and Blazej Grabowski

Phys. Rev. B 101, 144108 (2020) - Published 30 April, 2020

Local vibrational modes of Si vacancy spin qubits in SiC

Z. Shang, A. Hashemi, Y. Berencén, H.-P. Komsa, P. Erhart, S. Zhou, M. Helm, A. V. Krasheninnikov, and G. V. Astakhov

Phys. Rev. B 101, 144109 (2020) - Published 30 April, 2020

Inhomogeneous, disordered, and partially ordered systems

Floquet Anderson localization of two interacting discrete time quantum walks

Merab Malishava, Ihor Vakulchyk, Mikhail Fistul, and Sergej Flach

Phys. Rev. B 101, 144201 (2020) - Published 8 April, 2020

Viscosity measurement from microscale convection at high pressure and temperature

Hannah B. Bartlett, Natalia Gomez-Perez, Michiel Hermes, and R. Stewart McWilliams

Phys. Rev. B 101, 144202 (2020) - Published 13 April, 2020

Quantifying thermal transport in amorphous silicon using mean free path spectroscopy

Ying Pan, Jiawei Zhou, and Gang Chen

Phys. Rev. B 101, 144203 (2020) - Published 15 April, 2020

Persistence of chirality in the Su-Schrieffer-Heeger model in the presence of on-site disorder

Myles Scollon and Malcolm P. Kennett

Phys. Rev. B 101, 144204 (2020) - Published 21 April, 2020

Dynamics, dynamical systems, lattice effects

Ultracold quantum wires with localized losses: Many-body quantum Zeno effect

Heinrich Fröml, Christopher Muckel, Corinna Kollath, Alessio Chiocchetta, and Sebastian Diehl

Phys. Rev. B 101, 144301 (2020) - Published 1 April, 2020

The effect of localized loss on a one-dimensional gas of interacting fermions is investigated. Here, the interplay of gapless quantum fluctuations and particle interactions strongly renormalizes the dissipative impurity. As a result, the loss probability for modes close to the Fermi energy vanishes for arbitrary strength of the dissipation, as a many-body incarnation of the quantum Zeno effect. This is reflected in the shape of the particle momentum distribution, exhibiting a peak close to the Fermi momentum.

Scaling of Loschmidt echo in a boundary-driven critical Z3 Potts model

Naveen Nishad and G. J. Sreejith

Phys. Rev. B 101, 144302 (2020) - Published 6 April, 2020

Emergence of anomalous dynamics from the underlying singular continuous spectrum in interacting many-body systems

J. Settino, N. W. Talarico, F. Cosco, F. Plastina, S. Maniscalco, and N. Lo Gullo

Phys. Rev. B 101, 144303 (2020) - Published 6 April, 2020

Optical high-order harmonic generation as a structural characterization tool

Lei Jia, Zhiya Zhang, D. Z. Yang, Yanqing Liu, M. S. Si, G. P. Zhang, and Y. S. Liu

Phys. Rev. B 101, 144304 (2020) - Published 14 April, 2020

Entanglement and its relation to energy variance for local one-dimensional Hamiltonians

Mari Carmen Bañuls, David A. Huse, and J. Ignacio Cirac

Phys. Rev. B 101, 144305 (2020) - Published 28 April, 2020

Phonon rotoelectric effect

Masato Hamada and Shuichi Murakami

Phys. Rev. B 101, 144306 (2020) - Published 29 April, 2020

Here, the authors theoretically propose a new method to generate phonon angular momenta – rotational motions of atoms in crystals by the electric field. From a symmetry analysis, they consider multiferroic materials without both time-reversal and inversion symmetries and with their product being conserved. When the electric field is applied, the phonon angular momentum is generated via the spin-phonon interaction and the lattice distortion due to the electric field.

Magnetism

Density functional theory of magnetic dipolar interactions

Camilla Pellegrini, Tristan Müller, John K. Dewhurst, Sangeeta Sharma, Antonio Sanna, and Eberhard K. U. Gross

Phys. Rev. B 101, 144401 (2020) - Published 2 April, 2020

Tuning magnetic order with geometry: Thermalization and defects in two-dimensional artificial spin ices

Gavin M. Macauley, Gary W. Paterson, Yue Li, Rair Macêdo, Stephen McVitie, and Robert L. Stamps

Phys. Rev. B 101, 144403 (2020) - Published 2 April, 2020

Interface-driven giant tunnel magnetoresistance in (111)-oriented junctions

Keisuke Masuda, Hiroyoshi Itoh, and Yoshio Miura

Phys. Rev. B 101, 144404 (2020) - Published 6 April, 2020

Electric field induced modulation of transverse resistivity anomalies in ultrathin SrRuO3 epitaxial films

Daisuke Kan, Kento Kobayashi, and Yuichi Shimakawa

Phys. Rev. B 101, 144405 (2020) - Published 6 April, 2020

Magnetic excitations in magnetization plateaus of a frustrated spin ladder

Kota Sasaki, Takanori Sugimoto, Takami Tohyama, and Shigetoshi Sota

Phys. Rev. B 101, 144407 (2020) - Published 6 April, 2020

Toroidal spin states in molecular magnets

Y. Pavlyukh

Phys. Rev. B 101, 144408 (2020) - Published 7 April, 2020

Emergence of d-orbital magnetic Dirac fermions in a MoS2 monolayer with squared pentagon structure

Xuanyi Li, Sheng Meng, and Jia-Tao Sun

Phys. Rev. B 101, 144409 (2020) - Published 7 April, 2020

Magnetization dynamics in synthetic antiferromagnets: Role of dynamical energy and mutual spin pumping

S. Sorokin, R. A. Gallardo, C. Fowley, K. Lenz, A. Titova, G. Y. P Atcheson, G. Dennehy, K. Rode, J. Fassbender, J. Lindner, and A. M. Deac

Phys. Rev. B 101, 144410 (2020) - Published 7 April, 2020

Low-energy magnons in the chiral ferrimagnet Cu2OSeO3: A coarse-grained approach

Yi Luo, G. G. Marcus, B. A. Trump, J. Kindervater, M. B. Stone, J. A. Rodriguez-Rivera, Yiming Qiu, T. M. McQueen, O. Tchernyshyov, and C. Broholm

Phys. Rev. B 101, 144411 (2020) - Published 8 April, 2020

The asymmetric magnetic interactions that control the low-energy excitations and the skyrmionic spin texture of the chiral breathing pyrochlore ferrimagnet Cu2OSeO3 have been determined through inelastic neutron scattering and a coarse-grained spin-wave theory. The complex low-energy excitation spectrum, including the equal-time structure factor through multiple Brillouin zones, is accurately described with great simplification by treating each tetrahedron as a spin-1 molecule. A strongly momentum selective X-point magnon decay into two long-wavelength magnons is discovered.

Spin transmission in IrMn through measurements of spin Hall magnetoresistance and spin-orbit torque

Xiao Wang, Caihua Wan, Yizhou Liu, Qiming Shao, Hao Wu, Chenyang Guo, Chi Fang, Yao Guang, Wenlong Yang, Congli He, Bingshan Tao, Xiaomin Zhang, Tianyi Ma, Jing Dong, Yu Zhang, Jiafeng Feng, Jiang Xiao, Kang L. Wang, Guoqiang Yu, and Xiufeng Han

Phys. Rev. B 101, 144412 (2020) - Published 8 April, 2020

Mean-field phase diagram and spin-glass phase of the dipolar kagome Ising antiferromagnet

Leticia F. Cugliandolo, Laura Foini, and Marco Tarzia

Phys. Rev. B 101, 144413 (2020) - Published 8 April, 2020

Frustrated magnets are among the most fascinating condensed matter systems that are still not fully understood. Here, the authors outline, with mean-field analytic tools, the phase diagram of the classical dipolar antiferromagnet on the kagome lattice. They show that the properties of the low-temperature phase and the slow dynamics are inherited from a spin-glass transition that is avoided in two dimensions.

Higher-order exceptional points in ferromagnetic trilayers

Tianlin Yu, Huanhuan Yang, Lingling Song, Peng Yan, and Yunshan Cao

Phys. Rev. B 101, 144414 (2020) - Published 10 April, 2020

Geometric phase control of a spin-torque oscillator

A. Rückriegel and R. A. Duine

Phys. Rev. B 101, 144415 (2020) - Published 10 April, 2020

Magnetic hedgehog lattices in noncentrosymmetric metals

Shun Okumura, Satoru Hayami, Yasuyuki Kato, and Yukitoshi Motome

Phys. Rev. B 101, 144416 (2020) - Published 13 April, 2020

Iron telluride ladder compounds: Predicting the structural and magnetic properties of BaFe2Te3

Yang Zhang, Ling-Fang Lin, Adriana Moreo, Shuai Dong, and Elbio Dagotto

Phys. Rev. B 101, 144417 (2020) - Published 13 April, 2020

Unveiling ferrimagnetic ground state, anomalous behavior of the exchange-bias field around spin reorientation, and magnetoelectric coupling in YbCr1−xFexO3 (0.1≤x≤0.6)

Biswajit Dalal, Babusona Sarkar, S. Rayaprol, Moumita Das, V. Siruguri, Prabhat Mandal, and Subodh Kumar De

Phys. Rev. B 101, 144418 (2020) - Published 13 April, 2020

Magnetic multipoles and correlation shortage in the pyrochlore cerium stannate Ce2Sn2O7

S. W. Lovesey and G. van der Laan

Phys. Rev. B 101, 144419 (2020) - Published 14 April, 2020

Micromagnetic modeling and imaging of vortex|meron structures in an oxide|metal heterostructure

P. G. Radaelli, J. Radaelli, N. Waterfield-Price, and R. D. Johnson

Phys. Rev. B 101, 144420 (2020) - Published 14 April, 2020

Multiple magnetic transitions and electrical transport transformation of a BaFeO3 cubic perovskite single crystal

Yuxuan Liu, Zhehong Liu, Zhi Li, Shijun Qin, Xubin Ye, Xudong Shen, Bowen Zhou, Guanghui Zhou, Stefano Agrestini, Manuel Valvidares, Hari Babu Vasili, Zhiwei Hu, and Youwen Long

Phys. Rev. B 101, 144421 (2020) - Published 15 April, 2020

Complicated magnetic structure and its strong correlation with the anomalous Hall effect in Mn3Sn

Yuzhu Song, Yiqing Hao, Shaobo Wang, Ji Zhang, Qingzhen Huang, Xianran Xing, and Jun Chen

Phys. Rev. B 101, 144422 (2020) - Published 16 April, 2020

Magnetism of (LaCoO3)n+(LaTiO3)n superlattices (n=1,2)

Alex Taekyung Lee and Sohrab Ismail-Beigi

Phys. Rev. B 101, 144423 (2020) - Published 16 April, 2020

Complex antiferromagnetic order in the garnet Co3Al2Si3O12

Q. Cui, Q. Huang, Jose A. Alonso, Denis Sheptyakov, C. R. De la Cruz, M. T. Fernández-Díaz, N. N. Wang, Y. Q. Cai, D. Li, X. L. Dong, H. D. Zhou, and J.-G. Cheng

Phys. Rev. B 101, 144424 (2020) - Published 20 April, 2020

Time- and space-resolved nonlinear magnetoacoustic dynamics

M. Kraimia, P. Kuszewski, J.-Y. Duquesne, A. Lemaître, F. Margaillan, C. Gourdon, and L. Thevenard

Phys. Rev. B 101, 144425 (2020) - Published 20 April, 2020

Vollhardt invariance in chiral magnets

A. M. Belemuk and S. M. Stishov

Phys. Rev. B 101, 144426 (2020) - Published 20 April, 2020

Experimental demonstration and analysis of random field effects in ferromagnet/antiferromagnet bilayers

Guanxiong Chen, Dylan Collette, and Sergei Urazhdin

Phys. Rev. B 101, 144427 (2020) - Published 20 April, 2020

Exact plaquette singlet phases in an orthogonal-plaquette model

C. Boos and K. P. Schmidt

Phys. Rev. B 101, 144428 (2020) - Published 20 April, 2020

Sonic horizons and causality in phase transition dynamics

Debasis Sadhukhan, Aritra Sinha, Anna Francuz, Justyna Stefaniak, Marek M. Rams, Jacek Dziarmaga, and Wojciech H. Zurek

Phys. Rev. B 101, 144429 (2020) - Published 21 April, 2020

Spin-wave transmission through an internal boundary: Beyond the scalar approximation

Roman Verba, Vasil Tiberkevich, and Andrei Slavin

Phys. Rev. B 101, 144430 (2020) - Published 20 April, 2020

Numerical computation of spin-transfer torques for antiferromagnetic domain walls

Hyeon-Jong Park, Yunboo Jeong, Se-Hyeok Oh, Gyungchoon Go, Jung Hyun Oh, Kyoung-Whan Kim, Hyun-Woo Lee, and Kyung-Jin Lee

Phys. Rev. B 101, 144431 (2020) - Published 22 April, 2020

Crystal-field Hamiltonian and anisotropy in KErSe2 and CsErSe2

A. Scheie, V. O. Garlea, L. D. Sanjeewa, J. Xing, and A. S. Sefat

Phys. Rev. B 101, 144432 (2020) - Published 24 April, 2020

Non-Griffiths-like cluster formation in the double-perovskite Gd2CoMnO6: Evidence from critical behavior

Moumita Das, Prosenjit Sarkar, and Prabhat Mandal

Phys. Rev. B 101, 144433 (2020) - Published 27 April, 2020

Origin of the large voltage-controlled magnetic anisotropy in a Cr/Fe/MgO junction with an ultrathin Fe layer: First-principles investigation

W. Z. Chen, L. N. Jiang, Z. R. Yan, Y. Zhu, C. H. Wan, and X. F. Han

Phys. Rev. B 101, 144434 (2020) - Published 27 April, 2020

Static and dynamic properties of bimerons in a frustrated ferromagnetic monolayer

Xichao Zhang, Jing Xia, Laichuan Shen, Motohiko Ezawa, Oleg A. Tretiakov, Guoping Zhao, Xiaoxi Liu, and Yan Zhou

Phys. Rev. B 101, 144435 (2020) - Published 27 April, 2020

Disorder-induced critical exponents near a ferromagnetic quantum critical point in Mn1−xCrxSi

Ashish Kumar Mishra, S. Shanmukharao Samatham, Martin R. Lees, and V. Ganesan

Phys. Rev. B 101, 144436 (2020) - Published 27 April, 2020

Helical and collinear spin density wave order in the S=12 one-dimensional frustrated chain compound NaCuMoO4(OH) investigated by neutron scattering

Shinichiro Asai, Takuma Oyama, Kazuhiro Nawa, Akiko Nakao, Koji Munakata, Keitaro Kuwahara, Masato Hagihala, Shinichi Itoh, Zenji Hiroi, and Takatsugu Masuda

Phys. Rev. B 101, 144437 (2020) - Published 28 April, 2020

Hybrid modes of a cavity photon coupled with multiple magnons in ferromagnetic nanostructures

Zahra Haghshenasfard and Michael G. Cottam

Phys. Rev. B 101, 144438 (2020) - Published 28 April, 2020

Non-Hermitian dynamic strings and anomalous topological degeneracy on a non-Hermitian toric-code model with parity-time symmetry

Cui-Xian Guo, Xiao-Ran Wang, Can Wang, and Su-Peng Kou

Phys. Rev. B 101, 144439 (2020) - Published 29 April, 2020

Magnetic and transport anomalies in R2RhSi3(R=Gd, Tb, and Dy) resembling those of the exotic magnetic material Gd2PdSi3

Ram Kumar, Kartik K. Iyer, P. L. Paulose, and E. V. Sampathkumaran

Phys. Rev. B 101, 144440 (2020) - Published 29 April, 2020

Superfluidity and superconductivity

Evolution of charge density wave order and superconductivity under pressure in LaPt2Si2

B. Shen, F. Du, R. Li, A. Thamizhavel, M. Smidman, Z. Y. Nie, S. S. Luo, T. Le, Z. Hossain, and H. Q. Yuan

Phys. Rev. B 101, 144501 (2020) - Published 6 April, 2020

Variation of shear moduli across superconducting phase transitions

Dimitri Labat, Panagiotis Kotetes, Brian M. Andersen, and Indranil Paul

Phys. Rev. B 101, 144502 (2020) - Published 10 April, 2020

Self-consistent-field ensembles of disordered Hamiltonians: Efficient solver and application to superconducting films

Matthias Stosiek, Bruno Lang, and Ferdinand Evers

Phys. Rev. B 101, 144503 (2020) - Published 13 April, 2020

Vortex nucleation in superconductors within time-dependent Ginzburg-Landau theory in two and three dimensions: Role of surface defects and material inhomogeneities

Alden R. Pack, Jared Carlson, Spencer Wadsworth, and Mark K. Transtrum

Phys. Rev. B 101, 144504 (2020) - Published 21 April, 2020

Predicting novel superconducting hydrides using machine learning approaches

Michael J. Hutcheon, Alice M. Shipley, and Richard J. Needs

Phys. Rev. B 101, 144505 (2020) - Published 22 April, 2020

Interplay of interactions and disorder at the superfluid-insulator transition: A dirty two-dimensional quantum critical point

Hart Goldman, Alex Thomson, Laimei Nie, and Zhen Bi

Phys. Rev. B 101, 144506 (2020) - Published 23 April, 2020

Josephson junctions in a local inhomogeneous magnetic field

V. M. Krasnov

Phys. Rev. B 101, 144507 (2020) - Published 23 April, 2020

Unconventional superconducting properties of noncentrosymmetric Re5.5Ta

Arushi, D. Singh, P. K. Biswas, A. D. Hillier, and R. P. Singh

Phys. Rev. B 101, 144508 (2020) - Published 28 April, 2020

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