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HIGHLIGHTED ARTICLES

Argon equation of state data to 1 TPa: Shock compression experiments and simulations

Seth Root, Chad A. McCoy, Kyle R. Cochrane, John H. Carpenter, Raymond W. Lemke, Luke Shulenburger, Thomas R. Mattsson, and Philip A. Sterne

Phys. Rev. B 106, 174114 (2022) - Published 30 November, 2022

Cryogenic liquid noble gases, because of their noble nature and monatomic fluid behavior, are ideal for comparing experiments and theory at high pressures and temperatures. Using both magnetically accelerated flyer plates and laser-driven decaying shocks, the authors obtain here high-precision measurements on shock-compressed liquid argon to 1 TPa. The data are used to calibrate two different EOS models. The results show that even if two models are calibrated to the same data set, they can exhibit different responses at extreme conditions.

Disorder-free localization with Stark gauge protection

Haifeng Lang, Philipp Hauke, Johannes Knolle, Fabian Grusdt, and Jad C. Halimeh

Phys. Rev. B 106, 174305 (2022) - Published 18 November, 2022

A paradigm of strong ergodicity breaking – disorder-free localization (DFL) – offers a fundamental probe of out-of-equilibrium quantum many-body physics and also promises potential applications in quantum information technology. As such, stabilizing DFL against errors on modern quantum simulators becomes of paramount importance. Here, the authors introduce the concept of Stark gauge protection, which comprises an experimentally friendly sum of local symmetry generators each weighted by its spatial location. This stabilizes DFL up to all investigated evolution times.

Many-body theory of phonon-induced spin relaxation and decoherence

Jinsoo Park, Yao Luo, Jin-Jian Zhou, and Marco Bernardi

Phys. Rev. B 106, 174404 (2022) - Published 3 November, 2022

Electron spin decoherence from atomic vibrations (phonons) limits the performance of spin-based devices but is difficult to model quantitatively. Here, the authors present a new theory for addressing this challenge. Their approach unifies the theoretical treatment of two mechanisms – spin scattering off phonons and spin precession altered by phonons – and provides unprecedented microscopic insight into spin motion in materials. This work enables precise predictions for spin relaxation and decoherence in materials, advancing the quest for spin-based quantum technologies.

Time-resolved measurement of spin excitations in Cu2OSeO3

D. M. Burn, S. L. Zhang, G. van der Laan, and T. Hesjedal

Phys. Rev. B 106, 174409 (2022) - Published 9 November, 2022

Studying the dynamic behavior of topological spin textures can unlock future low-energy and high-speed spintronics devices. Recently, the synchrotron-based technique of diffractive ferromagnetic resonance (DFMR) was developed, allowing for element-selective dynamic studies of selected, ordered magnetic modes. In this work, the authors reveal by using DFMR how time-dependent magnetization dynamics couple to the complex spin texture in the well-known chiral magnetic system Cu2OSeO3, uncovering dynamical phase compressing that remained previously hidden using other experimental techniques.

Magnetic dynamics of NiPS3

A. R. Wildes, J. R. Stewart, M. D. Le, R. A. Ewings, K. C. Rule, G. Deng, and K. Anand

Phys. Rev. B 106, 174422 (2022) - Published 18 November, 2022

NiPS3 is a layered van der Waals compound. Like graphite, it can be delaminated down to a monolayer. Unlike graphite, it is magnetic. Neutron inelastic scattering has been performed on bulk single-crystal samples of NiPS3 to measure the magnetic dynamics, key to understanding the magnetic properties. Clear spin waves are observed, quantifying the magnetic exchange within and between the layers and the predominantly planar anisotropy. The findings have important ramifications for NiPS3 in graphene-based research.

Wire construction of class DIII topological crystalline superconductors in two dimensions

Bingrui Peng, Hongming Weng, and Chen Fang

Phys. Rev. B 106, 174512 (2022) - Published 21 November, 2022

Topological superconductors have drawn wide interest as they host Majorana zero modes potentially useful in quantum computation. The crystalline symmetries remarkably enrich the family of topological superconductors. Here, the authors present a real-space method, called the “wire construction”, to construct two-dimensional topological superconductors. A complete classification of 2D topological crystalline superconductors in class DIII is obtained, with anomalous boundary states enumerated. The new method provides a real-space picture for understanding topological superconductors, and should guide the discovery of realistic topological superconducting materials.

ARTICLES

Structure, structural phase transitions, mechanical properties, defects

Origin of negative thermal expansion and pressure-induced amorphization in zirconium tungstate from a machine-learning potential

Ri He, Hongyu Wu, Yi Lu, and Zhicheng Zhong

Phys. Rev. B 106, 174101 (2022) - Published 4 November, 2022

Ge136 type-II clathrate as precursor for the synthesis of metastable germanium polymorphs: A computational study

Daniele Selli, Igor A. Baburin, Roman Martoňák, and Stefano Leoni

Phys. Rev. B 106, 174102 (2022) - Published 8 November, 2022

Structural and electronic properties of Na-B-H compounds at high pressure

Xing Li, Xiaohua Zhang, Aitor Bergara, Yong Liu, and Guochun Yang

Phys. Rev. B 106, 174104 (2022) - Published 9 November, 2022

Generalized relation between electromechanical responses at fixed voltage and fixed electric field

Daniel Bennett, Daniel Tanner, Philippe Ghosez, Pierre-Eymeric Janolin, and Eric Bousquet

Phys. Rev. B 106, 174105 (2022) - Published 14 November, 2022

Pressure-induced ferroelectric transition in LiBC

Hu Zhang, Lulu Zhao, Chendong Jin, Ruqian Lian, Peng-Lai Gong, RuiNing Wang, JiangLong Wang, and Xing-Qiang Shi

Phys. Rev. B 106, 174106 (2022) - Published 14 November, 2022

Accurate path-integral molecular dynamics calculation of aluminum with improved empirical ionic potentials

Zixiang Yan, Chunyi Zhang, Xing Liu, Qing Miao, Ming Fang, and Wei Kang

Phys. Rev. B 106, 174107 (2022) - Published 15 November, 2022

Charge and spin state of dilute Fe in NaCl and LiF

H. P. Gunnlaugsson, A. Mokhles Gerami, H. Masenda, S. Olafsson, R. Adhikari, K. Johnston, K. Naicker, G. Peters, J. Schell, D. Zyabkin, K. Bharuth-Ram, P. Krastev, R. Mantovan, D. Naidoo, I. Unzueta, and ISOLDE Collaboration

Phys. Rev. B 106, 174108 (2022) - Published 16 November, 2022

Relaxation and dynamics of stressed predisplaced string resonators

Xiong Yao, David Hoch, and Menno Poot

Phys. Rev. B 106, 174109 (2022) - Published 21 November, 2022

Dynamics and lifetimes of resonant phonons in the quasiparticle and nonquasiparticle regimes

L. Xie and J. Q. He

Phys. Rev. B 106, 174110 (2022) - Published 22 November, 2022

Stability and electronic structure of NV centers at dislocation cores in diamond

Reyhaneh Ghassemizadeh, Wolfgang Körner, Daniel F. Urban, and Christian Elsässer

Phys. Rev. B 106, 174111 (2022) - Published 28 November, 2022

Topological disclination states for surface acoustic waves

Sheng-Nan Liang, Zhen-Hui Qin, Hua-Yang Chen, Xiao-Chen Sun, Jian-Lan Xie, Ze-Guo Chen, Si-Yuan Yu, Cheng He, Ming-Hui Lu, and Yan-Feng Chen

Phys. Rev. B 106, 174112 (2022) - Published 28 November, 2022

First-principles study of quantum defect candidates in beryllium oxide

Yubi Chen, Mark E. Turiansky, and Chris G. Van de Walle

Phys. Rev. B 106, 174113 (2022) - Published 29 November, 2022

Argon equation of state data to 1 TPa: Shock compression experiments and simulations

Seth Root, Chad A. McCoy, Kyle R. Cochrane, John H. Carpenter, Raymond W. Lemke, Luke Shulenburger, Thomas R. Mattsson, and Philip A. Sterne

Phys. Rev. B 106, 174114 (2022) - Published 30 November, 2022

Cryogenic liquid noble gases, because of their noble nature and monatomic fluid behavior, are ideal for comparing experiments and theory at high pressures and temperatures. Using both magnetically accelerated flyer plates and laser-driven decaying shocks, the authors obtain here high-precision measurements on shock-compressed liquid argon to 1 TPa. The data are used to calibrate two different EOS models. The results show that even if two models are calibrated to the same data set, they can exhibit different responses at extreme conditions.

Inhomogeneous, disordered, and partially ordered systems

Structure of amorphous TeO2 revisited: A hybrid functional ab initio molecular dynamics study

Raghvender Raghvender, Assil Bouzid, Sylvian Cadars, David Hamani, Philippe Thomas, and Olivier Masson

Phys. Rev. B 106, 174201 (2022) - Published 4 November, 2022

Ising spin glass on random graphs at zero temperature: Not all spins are glassy in the glassy phase

Gianmarco Perrupato, Maria Chiara Angelini, Giorgio Parisi, Federico Ricci-Tersenghi, and Tommaso Rizzo

Phys. Rev. B 106, 174202 (2022) - Published 10 November, 2022

Nonacoustic high-frequency collective excitations in a ZrCuAl metallic glass

Taras Bryk, Noël Jakse, Giancarlo Ruocco, and Jean-François Wax

Phys. Rev. B 106, 174203 (2022) - Published 10 November, 2022

Quantum fidelity of the Aubry-André model and the exponential orthogonality catastrophe

J. Vahedi and S. Kettemann

Phys. Rev. B 106, 174204 (2022) - Published 30 November, 2022

Dynamics, dynamical systems, lattice effects

Nonparaxiality-triggered Landau-Zener transition in spoof plasmonic waveguides

An Xie, Shaodong Zhou, Kelei Xi, Li Ding, Yiming Pan, Yongguan Ke, Huaiqiang Wang, Songlin Zhuang, and Qingqing Cheng

Phys. Rev. B 106, 174301 (2022) - Published 3 November, 2022

Dynamics of entangled domain walls in the PXP model under driving: Crossover from prethermalization to localization

Guanhua Chen, Weijie Huang, and Yao Yao

Phys. Rev. B 106, 174302 (2022) - Published 16 November, 2022

Electron removal spectral function of a polaron coupled to dispersive optical phonons

J. Bonča and S. A. Trugman

Phys. Rev. B 106, 174303 (2022) - Published 17 November, 2022

Spatially programmable wave compression and signal enhancement in a piezoelectric metamaterial waveguide

Christopher Sugino, Mustafa Alshaqaq, and Alper Erturk

Phys. Rev. B 106, 174304 (2022) - Published 18 November, 2022

Disorder-free localization with Stark gauge protection

Haifeng Lang, Philipp Hauke, Johannes Knolle, Fabian Grusdt, and Jad C. Halimeh

Phys. Rev. B 106, 174305 (2022) - Published 18 November, 2022

A paradigm of strong ergodicity breaking – disorder-free localization (DFL) – offers a fundamental probe of out-of-equilibrium quantum many-body physics and also promises potential applications in quantum information technology. As such, stabilizing DFL against errors on modern quantum simulators becomes of paramount importance. Here, the authors introduce the concept of Stark gauge protection, which comprises an experimentally friendly sum of local symmetry generators each weighted by its spatial location. This stabilizes DFL up to all investigated evolution times.

Observations of twinning microstructure in iron ramp-compressed through the αε phase transition.

James A. Hawreliak and Stefan J. Turneaure

Phys. Rev. B 106, 174306 (2022) - Published 23 November, 2022

Magnetism

Electric field tuning of ultrafast demagnetization in a magnetoelectric heterostructure

A. R. Will-Cole, Chuangtang Wang, Nirjhar Bhattacharjee, Yongmin Liu, and N. X. Sun

Phys. Rev. B 106, 174401 (2022) - Published 2 November, 2022

Cationic redistribution induced spin-glass and cluster-glass states in spinel ferrite

S. Nayak, S. Ghorai, A. M. Padhan, S. Hajra, P. Svedlindh, and P. Murugavel

Phys. Rev. B 106, 174402 (2022) - Published 2 November, 2022

Partial lifting of degeneracy in the J1J2J3 Ising antiferromagnet on the kagome lattice

Jeanne Colbois, Bram Vanhecke, Laurens Vanderstraeten, Andrew Smerald, Frank Verstraete, and Frédéric Mila

Phys. Rev. B 106, 174403 (2022) - Published 2 November, 2022

Many-body theory of phonon-induced spin relaxation and decoherence

Jinsoo Park, Yao Luo, Jin-Jian Zhou, and Marco Bernardi

Phys. Rev. B 106, 174404 (2022) - Published 3 November, 2022

Electron spin decoherence from atomic vibrations (phonons) limits the performance of spin-based devices but is difficult to model quantitatively. Here, the authors present a new theory for addressing this challenge. Their approach unifies the theoretical treatment of two mechanisms – spin scattering off phonons and spin precession altered by phonons – and provides unprecedented microscopic insight into spin motion in materials. This work enables precise predictions for spin relaxation and decoherence in materials, advancing the quest for spin-based quantum technologies.

Examination of the critical behavior and magnetocaloric effect of the ferromagnetic Gd-Au-Si quasicrystal approximants

Takayuki Shiino, Girma Hailu Gebresenbut, Cesar Pay Gómez, Ulrich Häussermann, Per Nordblad, Andreas Rydh, and Roland Mathieu

Phys. Rev. B 106, 174405 (2022) - Published 3 November, 2022

Universal scaling of specific heat in the S=12 quantum kagome antiferromagnet herbertsmithite

H. Murayama, T. Tominaga, T. Asaba, A. de Oliveira Silva, Y. Sato, H. Suzuki, Y. Ukai, S. Suetsugu, Y. Kasahara, R. Okuma, I. Kimchi, and Y. Matsuda

Phys. Rev. B 106, 174406 (2022) - Published 3 November, 2022

Heat-conserving three-temperature model for ultrafast demagnetization in nickel

M. Pankratova, I. P. Miranda, D. Thonig, M. Pereiro, E. Sjöqvist, A. Delin, O. Eriksson, and A. Bergman

Phys. Rev. B 106, 174407 (2022) - Published 4 November, 2022

Time-resolved measurement of spin excitations in Cu2OSeO3

D. M. Burn, S. L. Zhang, G. van der Laan, and T. Hesjedal

Phys. Rev. B 106, 174409 (2022) - Published 9 November, 2022

Studying the dynamic behavior of topological spin textures can unlock future low-energy and high-speed spintronics devices. Recently, the synchrotron-based technique of diffractive ferromagnetic resonance (DFMR) was developed, allowing for element-selective dynamic studies of selected, ordered magnetic modes. In this work, the authors reveal by using DFMR how time-dependent magnetization dynamics couple to the complex spin texture in the well-known chiral magnetic system Cu2OSeO3, uncovering dynamical phase compressing that remained previously hidden using other experimental techniques.

Origin of enhanced interfacial perpendicular magnetic anisotropy in LiF-inserted Fe/MgO interface

Shoya Sakamoto, Takayuki Nozaki, Shinji Yuasa, Kenta Amemiya, and Shinji Miwa

Phys. Rev. B 106, 174410 (2022) - Published 14 November, 2022

Spin interaction and magnetism in cobaltate Kitaev candidate materials: An ab initio and model Hamiltonian approach

Shishir Kumar Pandey and Ji Feng

Phys. Rev. B 106, 174411 (2022) - Published 14 November, 2022

Spin-functional renormalization group for the J1J2J3 quantum Heisenberg model

Dmytro Tarasevych, Andreas Rückriegel, Savio Keupert, Vasilios Mitsiioannou, and Peter Kopietz

Phys. Rev. B 106, 174412 (2022) - Published 14 November, 2022

Nonreciprocal spin waves driven by left-hand microwaves

Zhizhi Zhang, Zhenyu Wang, Huanhuan Yang, Z.-X. Li, Yunshan Cao, and Peng Yan

Phys. Rev. B 106, 174413 (2022) - Published 14 November, 2022

Significant suppression of two-magnon scattering in ultrathin Co by controlling the surface magnetic anisotropy at the Co/nonmagnet interfaces

Shugo Yoshii, Keisuke Kato, Ei Shigematsu, Ryo Ohshima, Yuichiro Ando, Koji Usami, and Masashi Shiraishi

Phys. Rev. B 106, 174414 (2022) - Published 16 November, 2022

Magnetoresistance relaxation steps originating from dynamic spin-orbital interactions in Ca3Ru2O7

Hao-Yu Niu, Xiong He, Zhuo Zeng, Yu-Jie Song, De-Quan Jiang, Hao Huang, You-Yuan Liang, Li-Xia Xiao, Zhong-Wen Ouyang, and Zheng-Cai Xia

Phys. Rev. B 106, 174415 (2022) - Published 16 November, 2022

Ground-state phase diagram of spin-S Kitaev-Heisenberg models

Kiyu Fukui, Yasuyuki Kato, Joji Nasu, and Yukitoshi Motome

Phys. Rev. B 106, 174416 (2022) - Published 16 November, 2022

Prethermalization via self driving and external driving of extensive subsystems

Finn Lasse Buessen, Hyun-Yong Lee, Tarun Grover, and Yong Baek Kim

Phys. Rev. B 106, 174417 (2022) - Published 16 November, 2022

Anomalous sign inversion of spin-orbit torque in ferromagnetic/nonmagnetic bilayer systems due to self-induced spin-orbit torque

Motomi Aoki, Ei Shigematsu, Ryo Ohshima, Teruya Shinjo, Masashi Shiraishi, and Yuichiro Ando

Phys. Rev. B 106, 174418 (2022) - Published 17 November, 2022

Frustrated mixed-spin ladders: Evidence for a bond-order wave phase between rung-singlet and Haldane phases

N. Ahmadi, J. Abouie, R. Haghshenas, and D. Baeriswyl

Phys. Rev. B 106, 174419 (2022) - Published 18 November, 2022

Origin of helicity-dependent photoconductivity in magnetic and nonmagnetic wires

Atul Pandey, Rouven Dreyer, Palvan Seyidov, Chris Koerner, Saban Tirpanci, Binoy Krishna Hazra, Stuart Parkin, and Georg Woltersdorf

Phys. Rev. B 106, 174420 (2022) - Published 18 November, 2022

Dilution of a polar magnet: Structure and magnetism of Zn-substituted Co2Mo3O8

L. Prodan, I. Filippova, A. O. Zubtsovskii, S. Shova, S. Widmann, A. A. Tsirlin, I. Kézsmárki, and V. Tsurkan

Phys. Rev. B 106, 174421 (2022) - Published 18 November, 2022

Magnetic dynamics of NiPS3

A. R. Wildes, J. R. Stewart, M. D. Le, R. A. Ewings, K. C. Rule, G. Deng, and K. Anand

Phys. Rev. B 106, 174422 (2022) - Published 18 November, 2022

NiPS3 is a layered van der Waals compound. Like graphite, it can be delaminated down to a monolayer. Unlike graphite, it is magnetic. Neutron inelastic scattering has been performed on bulk single-crystal samples of NiPS3 to measure the magnetic dynamics, key to understanding the magnetic properties. Clear spin waves are observed, quantifying the magnetic exchange within and between the layers and the predominantly planar anisotropy. The findings have important ramifications for NiPS3 in graphene-based research.

Room-temperature antiferromagnetic order in monolayer Fe2C

N. Fathizadeh, M. Modarresi, M. R. Roknabadi, J. Pawłowski, and A. Mogulkoc

Phys. Rev. B 106, 174423 (2022) - Published 21 November, 2022

Domain wall damped harmonic oscillations induced by curvature gradients in elliptical magnetic nanowires

G. H. R. Bittencourt, S. Castillo-Sepúlveda, O. Chubykalo-Fesenko, R. Moreno, D. Altbir, and V. L. Carvalho-Santos

Phys. Rev. B 106, 174424 (2022) - Published 21 November, 2022

Role of magnetoelastic coupling and magnetic anisotropy in MnTiO3

L. Gries, M. Jonak, A. Elghandour, K. Dey, and R. Klingeler

Phys. Rev. B 106, 174425 (2022) - Published 21 November, 2022

Field-induced spin reorientation transitions in antiferromagnetic ring-shaped spin chains

Yelyzaveta A. Borysenko, Denis D. Sheka, Jürgen Fassbender, Jeroen van den Brink, Denys Makarov, and Oleksandr V. Pylypovskyi

Phys. Rev. B 106, 174426 (2022) - Published 21 November, 2022

Second-order topological magneto-optical effects in noncoplanar antiferromagnets

Ping Yang, Wanxiang Feng, Xiaodong Zhou, Xiuxian Yang, and Yugui Yao

Phys. Rev. B 106, 174427 (2022) - Published 21 November, 2022

Thermal spin dynamics of Kitaev magnets: Scattering continua and magnetic field induced phases within a stochastic semiclassical approach

Oliver Franke, Dumitru Călugăru, Andreas Nunnenkamp, and Johannes Knolle

Phys. Rev. B 106, 174428 (2022) - Published 21 November, 2022

Field-driven domain wall motion in ferrimagnetic nanowires

K. Y. Jing, X. Gong, and X. R. Wang

Phys. Rev. B 106, 174429 (2022) - Published 22 November, 2022

Magnetic and spin-orbit exciton excitations in the honeycomb lattice compound RuBr3

Youngsu Choi, Je-Ho Lee, Seungyeol Lee, Dirk Wulferding, Hideyuki Fujihara, Fuki Sato, Yoshinori Imai, Kenya Ohgushi, Maeng-Je Seong, and Kwang-Yong Choi

Phys. Rev. B 106, 174430 (2022) - Published 22 November, 2022

Incommensurate and multiple-q magnetic misfit order in the frustrated quantum spin ladder material antlerite Cu3SO4(OH)4

Anton A. Kulbakov, Elaheh Sadrollahi, Florian Rasch, Maxim Avdeev, Sebastian Gaß, Laura Teresa Corredor Bohorquez, Anja U. B. Wolter, Manuel Feig, Roman Gumeniuk, Hagen Poddig, Markus Stötzer, F. Jochen Litterst, Inés Puente-Orench, Andrew Wildes, Eugen Weschke, Jochen Geck, Dmytro S. Inosov, and Darren C. Peets

Phys. Rev. B 106, 174431 (2022) - Published 23 November, 2022

Enhanced Sm spin projection in GdxSm1xN

J. D. Miller, J. F. McNulty, B. J. Ruck, M. Al Khalfioui, S. Vézian, M. Suzuki, H. Osawa, N. Kawamura, and H. J. Trodahl

Phys. Rev. B 106, 174432 (2022) - Published 23 November, 2022

Tensor network investigation of the hard-square model

Samuel Nyckees and Frédéric Mila

Phys. Rev. B 106, 174433 (2022) - Published 28 November, 2022

Disentangling electrical switching of antiferromagnetic NiO using high magnetic fields

C. F. Schippers, M. J. Grzybowski, K. Rubi, M. E. Bal, T. J. Kools, R. A. Duine, U. Zeitler, and H. J. M. Swagten

Phys. Rev. B 106, 174434 (2022) - Published 28 November, 2022

Dynamics of a pair of magnetic dipoles with nonreciprocal interactions due to a moving conductor

Artem Rakcheev and Andreas M. Läuchli

Phys. Rev. B 106, 174435 (2022) - Published 30 November, 2022

Emergence of long-range magnetic order from spin-glass state by tuning electron density in a stoichiometric Ga-based quasicrystal approximant

Farid Labib, Shintaro Suzuki, Asuka Ishikawa, Takenori Fujii, and Ryuji Tamura

Phys. Rev. B 106, 174436 (2022) - Published 30 November, 2022

Superfluidity and superconductivity

Disorder suppression in topological semiconductor-superconductor junctions

Stuart Yi-Thomas, Sankar Das Sarma, and Jay D. Sau

Phys. Rev. B 106, 174501 (2022) - Published 1 November, 2022

Anomalous supercurrent modulated by interfacial magnetizations in Josephson junctions with ferromagnetic bilayers

Hao Meng, Xiuqiang Wu, Yajie Ren, and Jiansheng Wu

Phys. Rev. B 106, 174502 (2022) - Published 1 November, 2022

Flat-band-induced superconductivity in synthetic bilayer optical lattices

Tymoteusz Salamon, Bernhard Irsigler, Debraj Rakshit, Maciej Lewenstein, Tobias Grass, and Ravindra Chhajlany

Phys. Rev. B 106, 174503 (2022) - Published 4 November, 2022

All-optical generation of Abrikosov vortices by the inverse Faraday effect

V. D. Plastovets, I. D. Tokman, B. Lounis, A. S. Mel'nikov, and A. I. Buzdin

Phys. Rev. B 106, 174504 (2022) - Published 7 November, 2022

Topological phases in interacting spin-1 systems

A. Alnor, T. Bækkegaard, and N. T. Zinner

Phys. Rev. B 106, 174505 (2022) - Published 7 November, 2022

Possible limits on superconducting quantum computers from spontaneous wave-function collapse models

Michele Vischi, Luca Ferialdi, Andrea Trombettoni, and Angelo Bassi

Phys. Rev. B 106, 174506 (2022) - Published 9 November, 2022

Pairing properties of the tttJ model

Shengtao Jiang (蒋晟韬), Douglas J. Scalapino, and Steven R. White

Phys. Rev. B 106, 174507 (2022) - Published 10 November, 2022

Quantum excitations of static charges in the Ginzburg-Landau model of superconductivity

Jeff Greensite and Kazue Matsuyama

Phys. Rev. B 106, 174508 (2022) - Published 14 November, 2022

Phase dynamics in an AC-driven multiterminal Josephson junction analog

François Amet, Sara Idris, Aeron McConnell, Brian Opatosky, and Ethan Arnault

Phys. Rev. B 106, 174509 (2022) - Published 14 November, 2022

Testing for pair density wave order in La1.875Ba0.125CuO4

P. M. Lozano, Tianhao Ren, G. D. Gu, A. M. Tsvelik, J. M. Tranquada, and Qiang Li

Phys. Rev. B 106, 174510 (2022) - Published 14 November, 2022

Nonlinear focusing of terahertz laser beam using a layered superconductor

H. V. Ovcharenko, Z. A. Maizelis, S. S. Apostolov, and V. A. Yampol'skii

Phys. Rev. B 106, 174511 (2022) - Published 17 November, 2022

Wire construction of class DIII topological crystalline superconductors in two dimensions

Bingrui Peng, Hongming Weng, and Chen Fang

Phys. Rev. B 106, 174512 (2022) - Published 21 November, 2022

Topological superconductors have drawn wide interest as they host Majorana zero modes potentially useful in quantum computation. The crystalline symmetries remarkably enrich the family of topological superconductors. Here, the authors present a real-space method, called the “wire construction”, to construct two-dimensional topological superconductors. A complete classification of 2D topological crystalline superconductors in class DIII is obtained, with anomalous boundary states enumerated. The new method provides a real-space picture for understanding topological superconductors, and should guide the discovery of realistic topological superconducting materials.

Spin singlet and quasiparticle excitations in cuprate superconductors

M. Mezidi, A. Alekhin, G. D. Gu, D. Colson, S. Houver, M. Cazayous, Y. Gallais, and A. Sacuto

Phys. Rev. B 106, 174513 (2022) - Published 23 November, 2022

Superconductivity from repulsive interactions on the kagome lattice

Astrid T. Rømer, Shinibali Bhattacharyya, Roser Valentí, Morten H. Christensen, and Brian M. Andersen

Phys. Rev. B 106, 174514 (2022) - Published 23 November, 2022

High critical field superconductivity at ambient pressure in MoB2 stabilized in the P6/mmm structure via Nb substitution

A. C. Hire, S. Sinha, J. Lim, J. S. Kim, P. M. Dee, L. Fanfarillo, J. J. Hamlin, R. G. Hennig, P. J. Hirschfeld, and G. R. Stewart

Phys. Rev. B 106, 174515 (2022) - Published 28 November, 2022

Classical-quantum correspondence of special and extraordinary-log criticality: Villain's bridge

Yanan Sun, Jin Lyu, and Jian-Ping Lv

Phys. Rev. B 106, 174516 (2022) - Published 28 November, 2022

Engineering Yang-Lee anyons via Majorana bound states

Takumi Sanno, Masahiko G. Yamada, Takeshi Mizushima, and Satoshi Fujimoto

Phys. Rev. B 106, 174517 (2022) - Published 28 November, 2022

Heat capacity double transitions in time-reversal symmetry broken superconductors

Henrik S. Røising, Glenn Wagner, Mercè Roig, Astrid T. Rømer, and Brian M. Andersen

Phys. Rev. B 106, 174518 (2022) - Published 29 November, 2022

Emergent topological superconductivity in Bi-intercalated van der Waals layered SiTe2

Zhen Zhang, Jing-Yang You, Bo Gu, and Gang Su

Phys. Rev. B 106, 174519 (2022) - Published 29 November, 2022

Tip-induced superconductivity enhancement in single-crystalline PdSb by point-contact spectroscopy

Chufan Chen, Dongting Zhang, Rohit Kumar, Yanan Zhang, Ge Ye, Lichang Yin, Jiawen Zhang, Huiqiu Yuan, Chao Cao, and Xin Lu

Phys. Rev. B 106, 174520 (2022) - Published 30 November, 2022

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