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HIGHLIGHTED ARTICLES

Tunneling anisotropic magnetoresistance via molecular π orbitals of Pb dimers

Johannes Schöneberg, Paolo Ferriani, Stefan Heinze, Alexander Weismann, and Richard Berndt

Phys. Rev. B 97, 041114(R) (2018) - Published 22 January, 2018

Spin-orbit coupling (SOC) links spin space and real space and leads to solids with intriguing spin topologies and transport properties, such as anisotropic magnetoresistance (AMR). The orientation of a real-space symmetry axis with respect to the spin direction determines the size of SOC-induced changes of the electronic structure. To show this effect at the single-molecule level, the authors arrange Pb dimers on a ferromagnetic Fe layer and observe that the AMR resulting from their molecular orbitals depends strongly on the dimer orientation.

Environmentally sensitive theory of electronic and optical transitions in atomically thin semiconductors

Yeongsu Cho and Timothy C. Berkelbach

Phys. Rev. B 97, 041409(R) (2018) - Published 17 January, 2018

Due to their small size, atomically thin materials are expected to exhibit electronic properties that are highly sensitive to their environment. However, atomically thin semiconductors on a variety of substrates, as well as in their bulk layered phase, exhibit an absorption onset at roughly the same energy. The authors provide a semianalytic theory of the quasiparticle band gap in atomically thin semiconductors and show that environment-induced changes are almost exactly canceled by changes in the exciton binding energy, leaving the absorption onset nearly constant. The presented theory sets limits on the prospect of environmental engineering in atomically thin materials.

Renormalization of tensor networks using graph-independent local truncations

Markus Hauru, Clement Delcamp, and Sebastian Mizera

Phys. Rev. B 97, 045111 (2018) - Published 10 January, 2018

Implementing real-space renormalization using tensor networks has proven to be a useful approach for studying lattice systems. The key step in such methods is removing local correlations from a network. Here, the authors propose a way to do this that is fast, simple to implement, applicable to any network, and preserves geometry. This opens a new avenue for extending such methods to three-dimensional networks, as well as providing a competitive alternative to existing methods in two dimensions.

Universality of modular symmetries in two-dimensional magnetotransport

K. S. Olsen, H. S. Limseth, and C. A. Lütken

Phys. Rev. B 97, 045113 (2018) - Published 10 January, 2018

The quantum Hall effect has bagged several Nobel prizes and is a cornerstone of modern metrology, but after four decades it continues to strain our understanding of quantum physics. This comprehensive review of scaling experiments provides substantial support for the conjecture that the morass of Hall data conceals a new type of symmetry, known as modular symmetry [C. A. Lütken and G. G. Ross, Phys. Rev. B 45, 11837 (1992)]. These infinite discrete symmetries are central to many recent developments in mathematics and string theory, but have not previously been seen in nature.

Quantum multicriticality in disordered Weyl semimetals

Xunlong Luo, Baolong Xu, Tomi Ohtsuki, and Ryuichi Shindou

Phys. Rev. B 97, 045129 (2018) - Published 16 January, 2018

In the electronic band structure of materials, two-band touching points with linear dispersion always appear in pairs in momentum space. When the pair annihilates, the system undergoes a quantum phase transition from a Weyl semimetal (WSM) to a band insulator (BI), which is described by a new critical theory. This paper reveals that the critical theory hosts a novel disorder-driven quantum multicritical point (QMCP), which is encompassed by three quantum phases: WSM, BI, and diffusive metal (DM). The authors clarify scaling theories around the QMCP as well as all the phase boundaries among these three phases. The scaling theory is general and easily extended to other systems.

Bulk characterization of topological crystalline insulators: Stability under interactions and relations to symmetry enriched U(1) quantum spin liquids

Liujun Zou

Phys. Rev. B 97, 045130 (2018) - Published 16 January, 2018

The notion of symmetry protected distinctions among quantum phases has been well appreciated in understanding many-body systems. As a prominent example, recent studies on topological crystalline insulators (TCIs) indicate that these insulators are nontrivial if and only if the relevant crystalline (and some other) symmetries are preserved. By bulk-boundary correspondence, the authors study the properties of the bulk magnetic monopoles of some TCIs that are conceptually interesting and/or experimentally feasible, and argue that this bulk characterization is a more direct and unified physical description of a TCI. In doing so, the authors prove the stability of these TCIs with respect to interactions.

Machine learning spatial geometry from entanglement features

Yi-Zhuang You, Zhao Yang, and Xiao-Liang Qi

Phys. Rev. B 97, 045153 (2018) - Published 31 January, 2018

Machine learning is a fast developing area that finds applications in all disciplines of science. Here, the authors demonstrate that the machine learning (in particular deep learning) technique can be applied to understand the emergence of spatial geometry from learning the features of quantum many-body entanglement, an idea that was proposed in a recent study of the holography duality in quantum gravity. This work is the first to successfully demonstrate the idea of “geometry emerging from learning”.

Machine learning vortices at the Kosterlitz-Thouless transition

Matthew J. S. Beach, Anna Golubeva, and Roger G. Melko

Phys. Rev. B 97, 045207 (2018) - Published 25 January, 2018

The authors extend the recent successful application of neural networks fordistinguishing phases of matter to the case of topologically driven phase transitions. They demonstrate that supervised networks correctly identify the Kosterlitz-Thouless transition in the two-dimensional classical XY model. However, their analysis suggests that a naive classification of phases is based on bulk features, rather than on detecting local topological defects. While they show that it is possible to fine-tune a network to recognize vortices, it generally remains a difficult task to detect topological defects without apriori knowledge.

Valley-selective optical Stark effect probed by Kerr rotation

Trevor LaMountain, Hadallia Bergeron, Itamar Balla, Teodor K. Stanev, Mark C. Hersam, and Nathaniel P. Stern

Phys. Rev. B 97, 045307 (2018) - Published 25 January, 2018

The authors show here that Kerr rotation is a sensitive probe of valley-dependent energy splitting induced by the optical Stark effect in two-dimensional semiconductors. Kerr rotation rejects the polarization-independent background and probes a complementary dielectric response from established absorption-based techniques, allowing detection of shifts as small as 4 μeV - the lowest reported value so far. The authors apply this improved valley Stark spectroscopy to a wider range of materials by observing Stark shifts of two energetically distinct exciton species in MoS2, representing the first valley- and energy-selective Stark effect in a single material.

Bethe-Boltzmann hydrodynamics and spin transport in the XXZ chain

Vir B. Bulchandani, Romain Vasseur, Christoph Karrasch, and Joel E. Moore

Phys. Rev. B 97, 045407 (2018) - Published 8 January, 2018

The anomalous nature of spin transport in the XXZ quantum spin chain has been a topic of theoretical interest for some time. Here, the integrability of the underlying dynamics leads to a ballistic component of the spin current, characterized by a spin Drude weight, which measures the degree of divergence of the zero-frequency spin conductivity. However, this quantity had previously proven to be beyond the reach of standard Bethe ansatz techniques. Here, the authors show that a recently developed hydrodynamic formalism for quantum integrable models may be used to compute the spin Drude weight. They also propose a numerical scheme to obtain hydrodynamic predictions for finite-time energy transport. This suggests that the hydrodynamic approach captures completely the ballistic component that dominates transport at long times and distances in the gapless regime of the XXZ model.

Illumination-induced nonequilibrium charge states in self-assembled quantum dots

Sascha R. Valentin, Jonathan Schwinger, Pia Eickelmann, Patrick A. Labud, Andreas D. Wieck, Björn Sothmann, and Arne Ludwig

Phys. Rev. B 97, 045416 (2018) - Published 16 January, 2018

The detection via capacitance-voltage measurements of nonequilibrium electron states in semiconductor quantum dots are reported here for the first time. A nonequilibrium setting is generated by external illumination of the quantum dots. By carefully tuning the dot properties, it is possible to render the nonequilibrium states long-lived, allowing for their subsequent detection.

RAPID COMMUNICATIONS

Electronic structure and strongly correlated systems

Berry curvature dipole in Weyl semimetal materials: An ab initio study

Yang Zhang, Yan Sun, and Binghai Yan

Phys. Rev. B 97, 041101(R) (2018) - Published 3 January, 2018

Dispersive magnetic and electronic excitations in iridate perovskites probed by oxygen K-edge resonant inelastic x-ray scattering

Xingye Lu, Paul Olalde-Velasco, Yaobo Huang, Valentina Bisogni, Jonathan Pelliciari, Sara Fatale, Marcus Dantz, James G. Vale, E. C. Hunter, Johan Chang, Vladimir N. Strocov, R. S. Perry, Marco Grioni, D. F. McMorrow, Henrik M. Rønnow, and Thorsten Schmitt

Phys. Rev. B 97, 041102(R) (2018) - Published 3 January, 2018

Extended phase diagram of RNiC2 family: Linear scaling of the Peierls temperature

Marta Roman, Judyta Strychalska-Nowak, Tomasz Klimczuk, and Kamil K. Kolincio

Phys. Rev. B 97, 041103(R) (2018) - Published 4 January, 2018

Magnetic and noncentrosymmetric Weyl fermion semimetals in the RAlGe family of compounds (R=rareearth)

Guoqing Chang, Bahadur Singh, Su-Yang Xu, Guang Bian, Shin-Ming Huang, Chuang-Han Hsu, Ilya Belopolski, Nasser Alidoust, Daniel S. Sanchez, Hao Zheng, Hong Lu, Xiao Zhang, Yi Bian, Tay-Rong Chang, Horng-Tay Jeng, Arun Bansil, Han Hsu, Shuang Jia, Titus Neupert, Hsin Lin, and M. Zahid Hasan

Phys. Rev. B 97, 041104(R) (2018) - Published 9 January, 2018

Manipulating light-wave-controlled charges into a spin-asymmetric flow: Petahertz frequency control of spins

Youngjae Kim and J. D. Lee

Phys. Rev. B 97, 041105(R) (2018) - Published 9 January, 2018

Topological Zak phase in strongly coupled LC circuits

Tal Goren, Kirill Plekhanov, Félicien Appas, and Karyn Le Hur

Phys. Rev. B 97, 041106(R) (2018) - Published 10 January, 2018

Microscopic mechanism for the unusual antiferromagnetic order and the pressure-induced transition to ferromagnetism in USb2

Marcin M. Wysokiński

Phys. Rev. B 97, 041107(R) (2018) - Published 12 January, 2018

Steady-state Hall response and quantum geometry of driven-dissipative lattices

Tomoki Ozawa

Phys. Rev. B 97, 041108(R) (2018) - Published 16 January, 2018

Edge insulating topological phases in a two-dimensional superconductor with long-range pairing

L. Lepori, D. Giuliano, and S. Paganelli

Phys. Rev. B 97, 041109(R) (2018) - Published 17 January, 2018

Correlation function diagnostics for type-I fracton phases

Trithep Devakul, S. A. Parameswaran, and S. L. Sondhi

Phys. Rev. B 97, 041110(R) (2018) - Published 18 January, 2018

Thermodynamic signature of Dirac electrons across a possible topological transition in ZrTe5

Nityan L. Nair, Philipp T. Dumitrescu, Sanyum Channa, Sinéad M. Griffin, Jeffrey B. Neaton, Andrew C. Potter, and James G. Analytis

Phys. Rev. B 97, 041111(R) (2018) - Published 22 January, 2018

Soft antiphase tilt of oxygen octahedra in the hybrid improper multiferroic Ca3Mn1.9Ti0.1O7

Feng Ye, Jinchen Wang, Jieming Sheng, C. Hoffmann, T. Gu, H. J. Xiang, Wei Tian, J. J. Molaison, A. M. dos Santos, M. Matsuda, B. C. Chakoumakos, J. A. Fernandez-Baca, X. Tong, Bin Gao, Jae Wook Kim, and S.-W. Cheong

Phys. Rev. B 97, 041112(R) (2018) - Published 19 January, 2018

Existence of electron and hole pockets and partial gap opening in the correlated semimetal Ca3Ru2O7

Hui Xing, Libin Wen, Chenyi Shen, Jiaming He, Xinxin Cai, Jin Peng, Shun Wang, Mingliang Tian, Zhu-An Xu, Wei Ku, Zhiqiang Mao, and Ying Liu

Phys. Rev. B 97, 041113(R) (2018) - Published 19 January, 2018

Tunneling anisotropic magnetoresistance via molecular π orbitals of Pb dimers

Johannes Schöneberg, Paolo Ferriani, Stefan Heinze, Alexander Weismann, and Richard Berndt

Phys. Rev. B 97, 041114(R) (2018) - Published 22 January, 2018

Spin-orbit coupling (SOC) links spin space and real space and leads to solids with intriguing spin topologies and transport properties, such as anisotropic magnetoresistance (AMR). The orientation of a real-space symmetry axis with respect to the spin direction determines the size of SOC-induced changes of the electronic structure. To show this effect at the single-molecule level, the authors arrange Pb dimers on a ferromagnetic Fe layer and observe that the AMR resulting from their molecular orbitals depends strongly on the dimer orientation.

Efficient charge-spin conversion and magnetization switching through the Rashba effect at topological-insulator/Ag interfaces

Shuyuan Shi, Aizhu Wang, Yi Wang, Rajagopalan Ramaswamy, Lei Shen, Jisoo Moon, Dapeng Zhu, Jiawei Yu, Seongshik Oh, Yuanping Feng, and Hyunsoo Yang

Phys. Rev. B 97, 041115(R) (2018) - Published 23 January, 2018

Appearance of the universal value e2/h of the zero-bias conductance in a Weyl semimetal-superconductor junction

Song-Bo Zhang, Fabrizio Dolcini, Daniel Breunig, and Björn Trauzettel

Phys. Rev. B 97, 041116(R) (2018) - Published 25 January, 2018

Compatible orders and fermion-induced emergent symmetry in Dirac systems

Lukas Janssen, Igor F. Herbut, and Michael M. Scherer

Phys. Rev. B 97, 041117(R) (2018) - Published 29 January, 2018

Semiconductors I: bulk

Direct observation of the lowest indirect exciton state in the bulk of hexagonal boron nitride

R. Schuster, C. Habenicht, M. Ahmad, M. Knupfer, and B. Büchner

Phys. Rev. B 97, 041201(R) (2018) - Published 5 January, 2018

Landau levels with magnetic tunneling in a Weyl semimetal and magnetoconductance of a ballistic pn junction

D. R. Saykin, K. S. Tikhonov, and Ya. I. Rodionov

Phys. Rev. B 97, 041202(R) (2018) - Published 16 January, 2018

Flat band in disorder-driven non-Hermitian Weyl semimetals

A. A. Zyuzin and A. Yu. Zyuzin

Phys. Rev. B 97, 041203(R) (2018) - Published 18 January, 2018

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

Spin temperature concept verified by optical magnetometry of nuclear spins

M. Vladimirova, S. Cronenberger, D. Scalbert, I. I. Ryzhov, V. S. Zapasskii, G. G. Kozlov, A. Lemaître, and K. V. Kavokin

Phys. Rev. B 97, 041301(R) (2018) - Published 8 January, 2018

Quantum exciton-polariton networks through inverse four-wave mixing

T. C. H. Liew and Y. G. Rubo

Phys. Rev. B 97, 041302(R) (2018) - Published 10 January, 2018

Crystal orientation dependence of the spin-orbit coupling in InAs nanowires

T. S. Jespersen, P. Krogstrup, A. M. Lunde, R. Tanta, T. Kanne, E. Johnson, and J. Nygård

Phys. Rev. B 97, 041303(R) (2018) - Published 19 January, 2018

Controllable continuous evolution of electronic states in a single quantum ring

Tapash Chakraborty, Aram Manaselyan, Manuk Barseghyan, and David Laroze

Phys. Rev. B 97, 041304(R) (2018) - Published 31 January, 2018

Surface physics, nanoscale physics, low-dimensional systems

Interband π-like plasmon in silicene grown on silver

A. Sindona, A. Cupolillo, F. Alessandro, M. Pisarra, D. C. Coello Fiallos, S. M. Osman, and L. S. Caputi

Phys. Rev. B 97, 041401(R) (2018) - Published 3 January, 2018

Plasmon-exciton polaritons in two-dimensional semiconductor/metal interfaces

P. A. D. Gonçalves, L. P. Bertelsen, Sanshui Xiao, and N. Asger Mortensen

Phys. Rev. B 97, 041402(R) (2018) - Published 5 January, 2018

Contributions of oxygen vacancies and titanium interstitials to band-gap states of reduced titania

Jingfeng Li, Rémi Lazzari, Stéphane Chenot, and Jacques Jupille

Phys. Rev. B 97, 041403(R) (2018) - Published 9 January, 2018

Structural distortions in monolayers of binary semiconductors

Poonam Kumari, Saikat Debnath, and Priya Mahadevan

Phys. Rev. B 97, 041404(R) (2018) - Published 10 January, 2018

Large valley splitting in monolayer WS2 by proximity coupling to an insulating antiferromagnetic substrate

Lei Xu, Ming Yang, Lei Shen, Jun Zhou, Tao Zhu, and Yuan Ping Feng

Phys. Rev. B 97, 041405(R) (2018) - Published 10 January, 2018

Spectral correlations in Anderson insulating wires

M. Marinho and T. Micklitz

Phys. Rev. B 97, 041406(R) (2018) - Published 11 January, 2018

Spin filtering via resonant reflection of relativistic surface states

I. A. Nechaev and E. E. Krasovskii

Phys. Rev. B 97, 041407(R) (2018) - Published 16 January, 2018

Signatures of electronic nematicity in (111) LaAlO3/SrTiO3 interfaces

S. Davis, Z. Huang, K. Han, Ariando, T. Venkatesan, and V. Chandrasekhar

Phys. Rev. B 97, 041408(R) (2018) - Published 16 January, 2018

Environmentally sensitive theory of electronic and optical transitions in atomically thin semiconductors

Yeongsu Cho and Timothy C. Berkelbach

Phys. Rev. B 97, 041409(R) (2018) - Published 17 January, 2018

Due to their small size, atomically thin materials are expected to exhibit electronic properties that are highly sensitive to their environment. However, atomically thin semiconductors on a variety of substrates, as well as in their bulk layered phase, exhibit an absorption onset at roughly the same energy. The authors provide a semianalytic theory of the quasiparticle band gap in atomically thin semiconductors and show that environment-induced changes are almost exactly canceled by changes in the exciton binding energy, leaving the absorption onset nearly constant. The presented theory sets limits on the prospect of environmental engineering in atomically thin materials.

Dimensionality-driven orthorhombic MoTe2 at room temperature

Rui He, Shazhou Zhong, Hyun Ho Kim, Gaihua Ye, Zhipeng Ye, Logan Winford, Daniel McHaffie, Ivana Rilak, Fangchu Chen, Xuan Luo, Yuping Sun, and Adam W. Tsen

Phys. Rev. B 97, 041410(R) (2018) - Published 18 January, 2018

Probing electron-hole components of subgap states in Coulomb blockaded Majorana islands

Esben Bork Hansen, Jeroen Danon, and Karsten Flensberg

Phys. Rev. B 97, 041411(R) (2018) - Published 24 January, 2018

Emission noise and high frequency cut-off of the Kondo effect in a quantum dot

R. Delagrange, J. Basset, H. Bouchiat, and R. Deblock

Phys. Rev. B 97, 041412(R) (2018) - Published 29 January, 2018

Coupling of charge, lattice, orbital, and spin degrees of freedom in charge density waves in 1TTaS2

Seho Yi, Zhenyu Zhang, and Jun-Hyung Cho

Phys. Rev. B 97, 041413(R) (2018) - Published 29 January, 2018

Strain manipulation of Majorana fermions in graphene armchair nanoribbons

Zhen-Hua Wang, Eduardo V. Castro, and Hai-Qing Lin

Phys. Rev. B 97, 041414(R) (2018) - Published 30 January, 2018

Dynamic current susceptibility as a probe of Majorana bound states in nanowire-based Josephson junctions

Mircea Trif, Olesia Dmytruk, Hélène Bouchiat, Ramón Aguado, and Pascal Simon

Phys. Rev. B 97, 041415(R) (2018) - Published 31 January, 2018

Probing the energy reactance with adiabatically driven quantum dots

María Florencia Ludovico, Liliana Arrachea, Michael Moskalets, and David Sánchez

Phys. Rev. B 97, 041416(R) (2018) - Published 31 January, 2018

ARTICLES

Electronic structure and strongly correlated systems

Quantum Monte Carlo study of the metal-to-insulator transition on a honeycomb lattice with 1/r interactions

Li Chen and Lucas K. Wagner

Phys. Rev. B 97, 045101 (2018) - Published 3 January, 2018

Structural and metal-insulator transitions in rhenium-based double perovskites via orbital ordering

Alex Taekyung Lee and Chris A. Marianetti

Phys. Rev. B 97, 045102 (2018) - Published 3 January, 2018

Spin-1 two-impurity Kondo problem on a lattice

A. Allerdt, R. Žitko, and A. E. Feiguin

Phys. Rev. B 97, 045103 (2018) - Published 5 January, 2018

Possible phases of the spin-12 XXZ model on a honeycomb lattice by boson-vortex duality

Han Ma

Phys. Rev. B 97, 045104 (2018) - Published 5 January, 2018

Kinetic theory of transport for inhomogeneous electron fluids

Andrew Lucas and Sean A. Hartnoll

Phys. Rev. B 97, 045105 (2018) - Published 5 January, 2018

Topological phases in the non-Hermitian Su-Schrieffer-Heeger model

Simon Lieu

Phys. Rev. B 97, 045106 (2018) - Published 8 January, 2018

Tunable magnetism and spin-polarized electronic transport in graphene mediated by molecular functionalization of extended defects

J. B. de Oliveira, I. S. S. de Oliveira, J. E. Padilha, and R. H. Miwa

Phys. Rev. B 97, 045107 (2018) - Published 9 January, 2018

Multiple crossovers and coherent states in a Mott-Peierls insulator

O. Nájera, M. Civelli, V. Dobrosavljević, and M. J. Rozenberg

Phys. Rev. B 97, 045108 (2018) - Published 9 January, 2018

Observation of a two-dimensional Fermi surface and Dirac dispersion in YbMnSb2

Robert Kealhofer, Sooyoung Jang, Sinéad M. Griffin, Caolan John, Katherine A. Benavides, Spencer Doyle, T. Helm, Philip J. W. Moll, Jeffrey B. Neaton, Julia Y. Chan, J. D. Denlinger, and James G. Analytis

Phys. Rev. B 97, 045109 (2018) - Published 10 January, 2018

Dual roles of f electrons in mixing Al 3p character into d-orbital conduction bands for lanthanide and actinide dialuminides

Alison B. Altman, C. D. Pemmaraju, Selim Alayoglu, John Arnold, Eric D. Bauer, Corwin H. Booth, Zachary Fisk, Joseph I. Pacold, David Prendergast, David K. Shuh, Tolek Tyliszczak, Jian Wang, and Stefan G. Minasian

Phys. Rev. B 97, 045110 (2018) - Published 10 January, 2018

Renormalization of tensor networks using graph-independent local truncations

Markus Hauru, Clement Delcamp, and Sebastian Mizera

Phys. Rev. B 97, 045111 (2018) - Published 10 January, 2018

Implementing real-space renormalization using tensor networks has proven to be a useful approach for studying lattice systems. The key step in such methods is removing local correlations from a network. Here, the authors propose a way to do this that is fast, simple to implement, applicable to any network, and preserves geometry. This opens a new avenue for extending such methods to three-dimensional networks, as well as providing a competitive alternative to existing methods in two dimensions.

Kondo hybridization and quantum criticality in βYbAlB4 by laser ARPES

Cédric Bareille, Shintaro Suzuki, Mitsuhiro Nakayama, Kenta Kuroda, Andriy H. Nevidomskyy, Yosuke Matsumoto, Satoru Nakatsuji, Takeshi Kondo, and Shik Shin

Phys. Rev. B 97, 045112 (2018) - Published 10 January, 2018

Universality of modular symmetries in two-dimensional magnetotransport

K. S. Olsen, H. S. Limseth, and C. A. Lütken

Phys. Rev. B 97, 045113 (2018) - Published 10 January, 2018

The quantum Hall effect has bagged several Nobel prizes and is a cornerstone of modern metrology, but after four decades it continues to strain our understanding of quantum physics. This comprehensive review of scaling experiments provides substantial support for the conjecture that the morass of Hall data conceals a new type of symmetry, known as modular symmetry [C. A. Lütken and G. G. Ross, Phys. Rev. B 45, 11837 (1992)]. These infinite discrete symmetries are central to many recent developments in mathematics and string theory, but have not previously been seen in nature.

Electrodynamic properties of an artificial heterostructured superconducting cuprate

A. Perucchi, P. Di Pietro, S. Lupi, R. Sopracase, A. Tebano, G. Giovannetti, F. Petocchi, M. Capone, and D. Di Castro

Phys. Rev. B 97, 045114 (2018) - Published 11 January, 2018

Improper magnetic ferroelectricity of nearly pure electronic nature in helicoidal spiral CaMn7O12

Jin Soo Lim, Diomedes Saldana-Greco, and Andrew M. Rappe

Phys. Rev. B 97, 045115 (2018) - Published 11 January, 2018

Efficient electron open boundaries for simulating electrochemical cells

Mario G. Zauchner, Andrew P. Horsfield, and Tchavdar N. Todorov

Phys. Rev. B 97, 045116 (2018) - Published 12 January, 2018

Impact of the charge density wave state in the electrodynamic response of ZrTe3xSex: Optical evidence for a pseudogap phase

M. Chinotti, J. Ethiraj, C. Mirri, Xiangde Zhu, Lijun Li, C. Petrovic, and L. Degiorgi

Phys. Rev. B 97, 045117 (2018) - Published 12 January, 2018

Breakdown of single spin-fluid model in the heavily hole-doped superconductor CsFe2As2

D. Zhao, S. J. Li, N. Z. Wang, J. Li, D. W. Song, L. X. Zheng, L. P. Nie, X. G. Luo, T. Wu, and X. H. Chen

Phys. Rev. B 97, 045118 (2018) - Published 16 January, 2018

Sequential structural and antiferromagnetic transitions in BaFe2Se3 under pressure

Yang Zhang, Ling-Fang Lin, Jun-Jie Zhang, Elbio Dagotto, and Shuai Dong

Phys. Rev. B 97, 045119 (2018) - Published 16 January, 2018

Topological flat Wannier-Stark bands

A. R. Kolovsky, A. Ramachandran, and S. Flach

Phys. Rev. B 97, 045120 (2018) - Published 16 January, 2018

Ab initio study of the Coulomb interaction in NbxCo clusters: Strong on-site versus weak nonlocal screening

L. Peters, E. Şaşıoğlu, I. Mertig, and M. I. Katsnelson

Phys. Rev. B 97, 045121 (2018) - Published 16 January, 2018

Probing the ionic dielectric constant contribution in the ferroelectric phase of the Fabre salts

Mariano de Souza, Lucas Squillante, Cesar Sônego, Paulo Menegasso, Pascale Foury-Leylekian, and Jean-Paul Pouget

Phys. Rev. B 97, 045122 (2018) - Published 16 January, 2018

Terahertz spectroscopic evidence of low-energy excitations in NdNiO3

Rakesh Rana, Parul Pandey, V. Eswara Phanindra, S. S. Prabhu, and D. S. Rana

Phys. Rev. B 97, 045123 (2018) - Published 16 January, 2018

Entanglement branching operator

Kenji Harada

Phys. Rev. B 97, 045124 (2018) - Published 16 January, 2018

Error estimates for extrapolations with matrix-product states

C. Hubig, J. Haegeman, and U. Schollwöck

Phys. Rev. B 97, 045125 (2018) - Published 16 January, 2018

Chern insulators in singular geometries

Ai-Lei He, Wei-Wei Luo, Yi-Fei Wang, and Chang-De Gong

Phys. Rev. B 97, 045126 (2018) - Published 16 January, 2018

Current cross-correlation in the Anderson impurity model with exchange interaction

Rui Sakano, Akira Oguri, Yunori Nishikawa, and Eisuke Abe

Phys. Rev. B 97, 045127 (2018) - Published 16 January, 2018

Direct observation of heavy quasiparticles in the Kondo-lattice compound CeIn3

Yun Zhang, Wei Feng, Xia Lou, Tianlun Yu, Xiegang Zhu, Shiyong Tan, Bingkai Yuan, Yi Liu, Haiyan Lu, Donghua Xie, Qin Liu, Wen Zhang, Xuebing Luo, Yaobo Huang, Lizhu Luo, Zhengjun Zhang, Xinchun Lai, and Qiuyun Chen

Phys. Rev. B 97, 045128 (2018) - Published 16 January, 2018

Quantum multicriticality in disordered Weyl semimetals

Xunlong Luo, Baolong Xu, Tomi Ohtsuki, and Ryuichi Shindou

Phys. Rev. B 97, 045129 (2018) - Published 16 January, 2018

In the electronic band structure of materials, two-band touching points with linear dispersion always appear in pairs in momentum space. When the pair annihilates, the system undergoes a quantum phase transition from a Weyl semimetal (WSM) to a band insulator (BI), which is described by a new critical theory. This paper reveals that the critical theory hosts a novel disorder-driven quantum multicritical point (QMCP), which is encompassed by three quantum phases: WSM, BI, and diffusive metal (DM). The authors clarify scaling theories around the QMCP as well as all the phase boundaries among these three phases. The scaling theory is general and easily extended to other systems.

Bulk characterization of topological crystalline insulators: Stability under interactions and relations to symmetry enriched U(1) quantum spin liquids

Liujun Zou

Phys. Rev. B 97, 045130 (2018) - Published 16 January, 2018

The notion of symmetry protected distinctions among quantum phases has been well appreciated in understanding many-body systems. As a prominent example, recent studies on topological crystalline insulators (TCIs) indicate that these insulators are nontrivial if and only if the relevant crystalline (and some other) symmetries are preserved. By bulk-boundary correspondence, the authors study the properties of the bulk magnetic monopoles of some TCIs that are conceptually interesting and/or experimentally feasible, and argue that this bulk characterization is a more direct and unified physical description of a TCI. In doing so, the authors prove the stability of these TCIs with respect to interactions.

Nonsymmorphic-symmetry-protected hourglass Dirac loop, nodal line, and Dirac point in bulk and monolayer X3SiTe6 (X = Ta, Nb)

Si Li, Ying Liu, Shan-Shan Wang, Zhi-Ming Yu, Shan Guan, Xian-Lei Sheng, Yugui Yao, and Shengyuan A. Yang

Phys. Rev. B 97, 045131 (2018) - Published 16 January, 2018

Engineering the Kondo state in two-dimensional semiconducting phosphorene

Rohit Babar and Mukul Kabir

Phys. Rev. B 97, 045132 (2018) - Published 17 January, 2018

Charge density wave states in tantalum dichalcogenides

David C. Miller, Subhendra D. Mahanti, and Phillip M. Duxbury

Phys. Rev. B 97, 045133 (2018) - Published 17 January, 2018

Evolution of ground-state wave function in CeCoIn5 upon Cd or Sn doping

K. Chen, F. Strigari, M. Sundermann, Z. Hu, Z. Fisk, E. D. Bauer, P. F. S. Rosa, J. L. Sarrao, J. D. Thompson, J. Herrero-Martin, E. Pellegrin, D. Betto, K. Kummer, A. Tanaka, S. Wirth, and A. Severing

Phys. Rev. B 97, 045134 (2018) - Published 17 January, 2018

Viscosity of a multichannel one-dimensional Fermi gas

Wade DeGottardi and K. A. Matveev

Phys. Rev. B 97, 045135 (2018) - Published 18 January, 2018

Coupling of molecular motion and electronic state in the organic molecular dimer Mott insulator β-(BEDT-TTF)2ICl2

Masashi Sawada, Shuhei Fukuoka, and Atsushi Kawamoto

Phys. Rev. B 97, 045136 (2018) - Published 19 January, 2018

Direct observation of double exchange in ferromagnetic La0.7Sr0.3CoO3 by broadband ellipsometry

P. Friš, D. Munzar, O. Caha, and A. Dubroka

Phys. Rev. B 97, 045137 (2018) - Published 19 January, 2018

Competition among various charge-inhomogeneous states and d-wave superconducting state in Hubbard models on square lattices

Kota Ido, Takahiro Ohgoe, and Masatoshi Imada

Phys. Rev. B 97, 045138 (2018) - Published 22 January, 2018

Quantum tricritical point in the temperature-pressure-magnetic field phase diagram of CeTiGe3

Udhara S. Kaluarachchi, Valentin Taufour, Sergey L. Bud'ko, and Paul C. Canfield

Phys. Rev. B 97, 045139 (2018) - Published 22 January, 2018

Topological invariants for Floquet-Bloch systems with chiral, time-reversal, or particle-hole symmetry

Bastian Höckendorf, Andreas Alvermann, and Holger Fehske

Phys. Rev. B 97, 045140 (2018) - Published 22 January, 2018

Optical signatures of exciton polarons from diagrammatic Monte Carlo

A. S. Mishchenko, G. De Filippis, V. Cataudella, N. Nagaosa, and H. Fehske

Phys. Rev. B 97, 045141 (2018) - Published 22 January, 2018

Type-I and type-II topological nodal superconductors with s-wave interaction

Beibing Huang, Xiaosen Yang, Ning Xu, and Ming Gong

Phys. Rev. B 97, 045142 (2018) - Published 23 January, 2018

Direct observation of a surface resonance state and surface band inversion control in black phosphorus

N. Ehlen, A. Sanna, B. V. Senkovskiy, L. Petaccia, A. V. Fedorov, G. Profeta, and A. Grüneis

Phys. Rev. B 97, 045143 (2018) - Published 24 January, 2018

Width of the charge-transfer peak in the SU(N) impurity Anderson model and its relevance to nonequilibrium transport

J. Fernández, F. Lisandrini, P. Roura-Bas, C. Gazza, and A. A. Aligia

Phys. Rev. B 97, 045144 (2018) - Published 25 January, 2018

Variational optimization algorithms for uniform matrix product states

V. Zauner-Stauber, L. Vanderstraeten, M. T. Fishman, F. Verstraete, and J. Haegeman

Phys. Rev. B 97, 045145 (2018) - Published 25 January, 2018

Finite-temperature dynamics of the Mott insulating Hubbard chain

Alberto Nocera, Fabian H. L. Essler, and Adrian E. Feiguin

Phys. Rev. B 97, 045146 (2018) - Published 29 January, 2018

Fate of dynamical phase transitions at finite temperatures and in open systems

N. Sedlmayr, M. Fleischhauer, and J. Sirker

Phys. Rev. B 97, 045147 (2018) - Published 30 January, 2018

Kondo effect with Weyl semimetal Fermi arcs

Da Ma, Hua Chen, Haiwen Liu, and X. C. Xie

Phys. Rev. B 97, 045148 (2018) - Published 30 January, 2018

Topologically invariant double Dirac states in bismuth-based perovskites: Consequence of ambivalent charge states and covalent bonding

Bramhachari Khamari, Ravi Kashikar, and B. R. K. Nanda

Phys. Rev. B 97, 045149 (2018) - Published 30 January, 2018

Doping and tilting on optics in noncentrosymmetric multi-Weyl semimetals

S. P. Mukherjee and J. P. Carbotte

Phys. Rev. B 97, 045150 (2018) - Published 30 January, 2018

Elemental chalcogens as a minimal model for combined charge and orbital order

Ana Silva, Jans Henke, and Jasper van Wezel

Phys. Rev. B 97, 045151 (2018) - Published 30 January, 2018

Quantum oscillations in insulators with neutral Fermi surfaces

Inti Sodemann, Debanjan Chowdhury, and T. Senthil

Phys. Rev. B 97, 045152 (2018) - Published 31 January, 2018

Machine learning spatial geometry from entanglement features

Yi-Zhuang You, Zhao Yang, and Xiao-Liang Qi

Phys. Rev. B 97, 045153 (2018) - Published 31 January, 2018

Machine learning is a fast developing area that finds applications in all disciplines of science. Here, the authors demonstrate that the machine learning (in particular deep learning) technique can be applied to understand the emergence of spatial geometry from learning the features of quantum many-body entanglement, an idea that was proposed in a recent study of the holography duality in quantum gravity. This work is the first to successfully demonstrate the idea of “geometry emerging from learning”.

Semiconductors I: bulk

First-principles study of electron and hole mobilities of Si and GaAs

Jinlong Ma, Arun S. Nissimagoudar, and Wu Li

Phys. Rev. B 97, 045201 (2018) - Published 4 January, 2018

Four-phonon scattering reduces intrinsic thermal conductivity of graphene and the contributions from flexural phonons

Tianli Feng and Xiulin Ruan

Phys. Rev. B 97, 045202 (2018) - Published 5 January, 2018

Dangling bond defects in SiC: An ab initio study

Blair R. Tuttle

Phys. Rev. B 97, 045203 (2018) - Published 10 January, 2018

Continuous wave protocol for simultaneous polarization and optical detection of P1-center electron spin resonance

E. J. Kamp, B. Carvajal, and N. Samarth

Phys. Rev. B 97, 045204 (2018) - Published 10 January, 2018

Quasiballistic heat removal from small sources studied from first principles

Bjorn Vermeersch and Natalio Mingo

Phys. Rev. B 97, 045205 (2018) - Published 11 January, 2018

Photoluminescence excitation study of split-vacancy centers in diamond

E. A. Ekimov, P. S. Sherin, V. S. Krivobok, S. G. Lyapin, V. A. Gavva, and M. V. Kondrin

Phys. Rev. B 97, 045206 (2018) - Published 17 January, 2018

Machine learning vortices at the Kosterlitz-Thouless transition

Matthew J. S. Beach, Anna Golubeva, and Roger G. Melko

Phys. Rev. B 97, 045207 (2018) - Published 25 January, 2018

The authors extend the recent successful application of neural networks fordistinguishing phases of matter to the case of topologically driven phase transitions. They demonstrate that supervised networks correctly identify the Kosterlitz-Thouless transition in the two-dimensional classical XY model. However, their analysis suggests that a naive classification of phases is based on bulk features, rather than on detecting local topological defects. While they show that it is possible to fine-tune a network to recognize vortices, it generally remains a difficult task to detect topological defects without apriori knowledge.

Intrinsic and extrinsic electrical and thermal transport of bulk black phosphorus

Sile Hu, Junsen Xiang, Meng Lv, Jiahao Zhang, Hengcan Zhao, Chunhong Li, Genfu Chen, Wenhong Wang, and Peijie Sun

Phys. Rev. B 97, 045209 (2018) - Published 26 January, 2018

Anomalous behavior of the excited state of the A exciton in bulk WS2

Vishwas Jindal, Sumi Bhuyan, Thorsten Deilmann, and Sandip Ghosh

Phys. Rev. B 97, 045211 (2018) - Published 31 January, 2018

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

Ballistic electron channels including weakly protected topological states in delaminated bilayer graphene

T. L. M. Lane, M. Anđelković, J. R. Wallbank, L. Covaci, F. M. Peeters, and V. I. Fal'ko

Phys. Rev. B 97, 045301 (2018) - Published 11 January, 2018

Charge and spin control of ultrafast electron and hole dynamics in single CdSe/ZnSe quantum dots

C. Hinz, P. Gumbsheimer, C. Traum, M. Holtkemper, B. Bauer, J. Haase, S. Mahapatra, A. Frey, K. Brunner, D. E. Reiter, T. Kuhn, D. V. Seletskiy, and A. Leitenstorfer

Phys. Rev. B 97, 045302 (2018) - Published 12 January, 2018

Stable switching among high-order modes in polariton condensates

Yongbao Sun, Yoseob Yoon, Saeed Khan, Li Ge, Mark Steger, Loren N. Pfeiffer, Ken West, Hakan E. Türeci, David W. Snoke, and Keith A. Nelson

Phys. Rev. B 97, 045303 (2018) - Published 22 January, 2018

Reduced interface spin polarization by antiferromagnetically coupled Mn segregated to the Co2MnSi/GaAs (001) interface

Ashutosh Rath, Chockalingam Sivakumar, C. Sun, Sahil J. Patel, Jong Seok Jeong, J. Feng, G. Stecklein, Paul A. Crowell, Chris J. Palmstrøm, William H. Butler, and Paul M. Voyles

Phys. Rev. B 97, 045304 (2018) - Published 22 January, 2018

Direct determination of the zero-field splitting for a single Co2+ ion embedded in a CdTe/ZnTe quantum dot

J. Kobak, A. Bogucki, T. Smoleński, M. Papaj, M. Koperski, M. Potemski, P. Kossacki, A. Golnik, and W. Pacuski

Phys. Rev. B 97, 045305 (2018) - Published 23 January, 2018

Extended orbital modeling of spin qubits in double quantum dots

Zack White and Guy Ramon

Phys. Rev. B 97, 045306 (2018) - Published 23 January, 2018

Valley-selective optical Stark effect probed by Kerr rotation

Trevor LaMountain, Hadallia Bergeron, Itamar Balla, Teodor K. Stanev, Mark C. Hersam, and Nathaniel P. Stern

Phys. Rev. B 97, 045307 (2018) - Published 25 January, 2018

The authors show here that Kerr rotation is a sensitive probe of valley-dependent energy splitting induced by the optical Stark effect in two-dimensional semiconductors. Kerr rotation rejects the polarization-independent background and probes a complementary dielectric response from established absorption-based techniques, allowing detection of shifts as small as 4 μeV - the lowest reported value so far. The authors apply this improved valley Stark spectroscopy to a wider range of materials by observing Stark shifts of two energetically distinct exciton species in MoS2, representing the first valley- and energy-selective Stark effect in a single material.

Anomalous helicity-dependent photocurrent in the topological insulator (Bi0.5Sb0.5)2Te3 on a GaAs substrate

Dong-Xia Qu, Xiaoyu Che, Xufeng Kou, Lei Pan, Jonathan Crowhurst, Michael R. Armstrong, Jonathan Dubois, Kang L. Wang, and George F. Chapline

Phys. Rev. B 97, 045308 (2018) - Published 24 January, 2018

Surface physics, nanoscale physics, low-dimensional systems

Dynamics of a quantum emitter resonantly coupled to both external field and localized surface plasmon

Khachatur V. Nerkararyan, Torgom S. Yezekyan, and Sergey I. Bozhevolnyi

Phys. Rev. B 97, 045401 (2018) - Published 3 January, 2018

Nonlinear, anisotropic, and giant photoconductivity in intrinsic and doped graphene

Ashutosh Singh, Saikat Ghosh, and Amit Agarwal

Phys. Rev. B 97, 045402 (2018) - Published 3 January, 2018

Controlling conductivity by quantum well states in ultrathin Bi(111) films

P. Kröger, D. Abdelbarey, M. Siemens, D. Lükermann, S. Sologub, H. Pfnür, and C. Tegenkamp

Phys. Rev. B 97, 045403 (2018) - Published 3 January, 2018

Topological phase detection in Rashba nanowires with a quantum dot

Denis Chevallier, Paweł Szumniak, Silas Hoffman, Daniel Loss, and Jelena Klinovaja

Phys. Rev. B 97, 045404 (2018) - Published 3 January, 2018

A silicon-based single-electron interferometer coupled to a fermionic sea

Anasua Chatterjee, Sergey N. Shevchenko, Sylvain Barraud, Rubén M. Otxoa, Franco Nori, John J. L. Morton, and M. Fernando Gonzalez-Zalba

Phys. Rev. B 97, 045405 (2018) - Published 3 January, 2018

Higher-order Fermi-liquid corrections for an Anderson impurity away from half filling : Equilibrium properties

Akira Oguri and A. C. Hewson

Phys. Rev. B 97, 045406 (2018) - Published 4 January, 2018

Bethe-Boltzmann hydrodynamics and spin transport in the XXZ chain

Vir B. Bulchandani, Romain Vasseur, Christoph Karrasch, and Joel E. Moore

Phys. Rev. B 97, 045407 (2018) - Published 8 January, 2018

The anomalous nature of spin transport in the XXZ quantum spin chain has been a topic of theoretical interest for some time. Here, the integrability of the underlying dynamics leads to a ballistic component of the spin current, characterized by a spin Drude weight, which measures the degree of divergence of the zero-frequency spin conductivity. However, this quantity had previously proven to be beyond the reach of standard Bethe ansatz techniques. Here, the authors show that a recently developed hydrodynamic formalism for quantum integrable models may be used to compute the spin Drude weight. They also propose a numerical scheme to obtain hydrodynamic predictions for finite-time energy transport. This suggests that the hydrodynamic approach captures completely the ballistic component that dominates transport at long times and distances in the gapless regime of the XXZ model.

Super-Planckian far-field radiative heat transfer

V. Fernández-Hurtado, A. I. Fernández-Domínguez, J. Feist, F. J. García-Vidal, and J. C. Cuevas

Phys. Rev. B 97, 045408 (2018) - Published 8 January, 2018

Unidirectional invisibility and PT symmetry with graphene

Mustafa Sarısaman and Murat Tas

Phys. Rev. B 97, 045409 (2018) - Published 9 January, 2018

Building topological quantum circuits: Majorana nanowire junctions

Tudor D. Stanescu and Sankar Das Sarma

Phys. Rev. B 97, 045410 (2018) - Published 9 January, 2018

Spin transport in two-layer-CVD-hBN/graphene/hBN heterostructures

M. Gurram, S. Omar, S. Zihlmann, P. Makk, Q. C. Li, Y. F. Zhang, C. Schönenberger, and B. J. van Wees

Phys. Rev. B 97, 045411 (2018) - Published 9 January, 2018

Fluctuational electrodynamics for nonlinear materials in and out of thermal equilibrium

Heino Soo and Matthias Krüger

Phys. Rev. B 97, 045412 (2018) - Published 11 January, 2018

Generating atomically sharp pn junctions in graphene and testing quantum electron optics on the nanoscale

Ke-Ke Bai, Jiao-Jiao Zhou, Yi-Cong Wei, Jia-Bin Qiao, Yi-Wen Liu, Hai-Wen Liu, Hua Jiang, and Lin He

Phys. Rev. B 97, 045413 (2018) - Published 12 January, 2018

Spin transport in high-mobility graphene on WS2 substrate with electric-field tunable proximity spin-orbit interaction

S. Omar and B. J. van Wees

Phys. Rev. B 97, 045414 (2018) - Published 16 January, 2018

Majorana Kramers pairs in Rashba double nanowires with interactions and disorder

Manisha Thakurathi, Pascal Simon, Ipsita Mandal, Jelena Klinovaja, and Daniel Loss

Phys. Rev. B 97, 045415 (2018) - Published 16 January, 2018

Illumination-induced nonequilibrium charge states in self-assembled quantum dots

Sascha R. Valentin, Jonathan Schwinger, Pia Eickelmann, Patrick A. Labud, Andreas D. Wieck, Björn Sothmann, and Arne Ludwig

Phys. Rev. B 97, 045416 (2018) - Published 16 January, 2018

The detection via capacitance-voltage measurements of nonequilibrium electron states in semiconductor quantum dots are reported here for the first time. A nonequilibrium setting is generated by external illumination of the quantum dots. By carefully tuning the dot properties, it is possible to render the nonequilibrium states long-lived, allowing for their subsequent detection.

Selective adsorption of toluene-3,4-dithiol on Si(553)-Au surfaces

Svetlana Suchkova, Conor Hogan, Friedhelm Bechstedt, Eugen Speiser, and Norbert Esser

Phys. Rev. B 97, 045417 (2018) - Published 17 January, 2018

Spin-selective electron transfer in a quantum dot array

Shumpei Masuda, Kuan Yen Tan, and Mikio Nakahara

Phys. Rev. B 97, 045418 (2018) - Published 17 January, 2018

Renormalization of the Majorana bound state decay length in a perpendicular magnetic field

M. P. Nowak and P. Wójcik

Phys. Rev. B 97, 045419 (2018) - Published 17 January, 2018

Hidden edge Dirac point and robust quantum edge transport in InAs/GaSb quantum wells

Chang-An Li, Song-Bo Zhang, and Shun-Qing Shen

Phys. Rev. B 97, 045420 (2018) - Published 18 January, 2018

Andreev rectifier: A nonlocal conductance signature of topological phase transitions

T. Ö. Rosdahl, A. Vuik, M. Kjaergaard, and A. R. Akhmerov

Phys. Rev. B 97, 045421 (2018) - Published 22 January, 2018

Tuning topological phase transitions in hexagonal photonic lattices made of triangular rods

Hsun-Chi Chan and Guang-Yu Guo

Phys. Rev. B 97, 045422 (2018) - Published 22 January, 2018

Doubled Shapiro steps in a topological Josephson junction

Yu-Hang Li, Juntao Song, Jie Liu, Hua Jiang, Qing-Feng Sun, and X. C. Xie

Phys. Rev. B 97, 045423 (2018) - Published 22 January, 2018

Quasi-two-dimensional thermoelectricity in SnSe

V. Tayari, B. V. Senkovskiy, D. Rybkovskiy, N. Ehlen, A. Fedorov, C.-Y. Chen, J. Avila, M. Asensio, A. Perucchi, P. di Pietro, L. Yashina, I. Fakih, N. Hemsworth, M. Petrescu, G. Gervais, A. Grüneis, and T. Szkopek

Phys. Rev. B 97, 045424 (2018) - Published 24 January, 2018

Impact ionization and transport properties of hexagonal boron nitride in a constant-voltage measurement

Yoshiaki Hattori, Takashi Taniguchi, Kenji Watanabe, and Kosuke Nagashio

Phys. Rev. B 97, 045425 (2018) - Published 24 January, 2018

Approximate quasiparticle correction for calculations of the energy gap in two-dimensional materials

I. Guilhon, D. S. Koda, L. G. Ferreira, M. Marques, and L. K. Teles

Phys. Rev. B 97, 045426 (2018) - Published 24 January, 2018

van der Waals torque and force between anisotropic topological insulator slabs

Bing-Sui Lu

Phys. Rev. B 97, 045427 (2018) - Published 25 January, 2018

Polarization and plasmons in hot photoexcited graphene

A. Freddie Page, Joachim M. Hamm, and Ortwin Hess

Phys. Rev. B 97, 045428 (2018) - Published 29 January, 2018

Specularity of longitudinal acoustic phonons at rough surfaces

Dhruv Gelda, Marc G. Ghossoub, Krishna Valavala, Jun Ma, Manjunath C. Rajagopal, and Sanjiv Sinha

Phys. Rev. B 97, 045429 (2018) - Published 26 January, 2018

The 4πkz periodicity in photoemission from graphite

Fumihiko Matsui, Hiroaki Nishikawa, Hiroshi Daimon, Matthias Muntwiler, Masaru Takizawa, Hidetoshi Namba, and Thomas Greber

Phys. Rev. B 97, 045430 (2018) - Published 29 January, 2018

Crosstalk error correction through dynamical decoupling of single-qubit gates in capacitively coupled singlet-triplet semiconductor spin qubits

Donovan Buterakos, Robert E. Throckmorton, and S. Das Sarma

Phys. Rev. B 97, 045431 (2018) - Published 29 January, 2018

Broadband and wide-angle nonreciprocity with a non-Hermitian metamaterial

David R. Barton, III, Hadiseh Alaeian, Mark Lawrence, and Jennifer Dionne

Phys. Rev. B 97, 045432 (2018) - Published 29 January, 2018

Magnetic field assisted transmission of THz waves through a graphene layer combined with a periodically perforated metallic film

Yu. V. Bludov, M. I. Vasilevskiy, and N. M. R. Peres

Phys. Rev. B 97, 045433 (2018) - Published 31 January, 2018

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