Browse Issues:

HIGHLIGHTED ARTICLES

Ab initio theory of polarons: Formalism and applications

Weng Hong Sio, Carla Verdi, Samuel Poncé, and Feliciano Giustino

Phys. Rev. B 99, 235139 (2019) - Published 19 June, 2019

A new method enables abinitio calculations of large and small polarons on the same footing. The authors develop the theory and computational methodology required to determine the ground-state energy and wave functions of electron and hole polarons in semiconductors and insulators, without performing explicit supercell calculations. As initial applications, the authors investigate polarons in LiF and Li2O2.

Reconstructing entanglement Hamiltonian via entanglement eigenstates

W. Zhu, Zhoushen Huang, and Yin-Chen He

Phys. Rev. B 99, 235109 (2019) - Published 4 June, 2019

Entanglement-based measurements have proven to be beneficial in analyzing strong correlation effects in condensed matter systems. While diagnostics such as entanglement entropy and spectrum are numerically straightforward to obtain and thus widely used, the physically more illuminating object that the entanglement Hamiltonian is remains elusive, since its determination involves the daunting task of fully diagonalizing a many-body reduced density matrix. Here, the authors show how to circumvent this technical challenge and construct the entanglement Hamiltonian from a single entanglement eigenstate.

Periodic table for topological bands with non-Hermitian symmetries

Hengyun Zhou and Jong Yeon Lee

Phys. Rev. B 99, 235112 (2019) - Published 6 June, 2019

Classifications of symmetry-protected topological phases provide a framework to understand systematically the physical properties and potential applications of topological systems. Here, the authors derive a comprehensive 38-fold topological classification of non-Hermitian systems with generic non-Hermitian symmetry classes. Two independent generalizations of Kramers’ degeneracy to the non-Hermitian setting are presented. The nature of the non-Hermitian topological invariants obtained in this classification is explained through worked-out examples, thus providing a framework for the experimental design and engineering of non-Hermitian symmetry-protected topological systems.

Hierarchies of methods towards the exact Kohn-Sham correlation energy based on the adiabatic-connection fluctuation-dissipation theorem

Andreas Görling

Phys. Rev. B 99, 235120 (2019) - Published 10 June, 2019

A hierarchy of universally applicable density functional methods based on the adiabatic-connection fluctuation-dissipation theorem is introduced that can be systematically improved to treat electronic structures with increasing accuracy. Methods at the first rank of the hierarchy already can compete with established high-level wave-function methods and exhibit an attractive ratio of accuracy to computational effort. Strong correlation can be treated in a black-box manner based on a single Slater determinant: the Kohn-Sham determinant.

Orientation of the ground-state orbital in CeCoIn5 and CeRhIn5

M. Sundermann, A. Amorese, F. Strigari, B. Leedahl, L. H. Tjeng, M. W. Haverkort, H. Gretarsson, H. Yavaş, M. Moretti Sala, E. D. Bauer, P. F. S. Rosa, J. D. Thompson, and A. Severing

Phys. Rev. B 99, 235143 (2019) - Published 21 June, 2019

The 4f orbital shape correlates with the ground state of the strongly correlated CeMIn5 family, with M=Co, Rh, and Ir. The remaining question as to how these orbitals are oriented has now been answered through nonresonant inelastic x-ray scattering (NIXS) measurements. Quantitative analysis reveals a hybridization-induced contribution of the first excited crystal-field state to the ground state of superconducting CeCoIn5, an important finding that suggests a degeneracy larger than two and that constrains realistic calculations of the electronic structure.

Electron hydrodynamics with a polygonal Fermi surface

Caleb Q. Cook and Andrew Lucas

Phys. Rev. B 99, 235148 (2019) - Published 25 June, 2019

The authors identify a geometric effect that constrains scattering on polygonal Fermi surfaces and leads to an intermediate transport regime that alters traditional signatures of the ballistic-to-hydrodynamic crossover, including a modification of the well-known Gurzhi effect. In the hydrodynamic limit, the authors find a new dissipative “rotational viscosity”, which arises from anisotropy in the Fermi surface and opposes rotations of the electronic fluid. Finally, the authors revisit the putative hydrodynamic transport data in PdCoO2, an ultrapure metal with an approximately hexagonal Fermi surface.

Anomalous attenuation of plasmons in strange metals and holography

Aurelio Romero-Bermúdez, Alexander Krikun, Koenraad Schalm, and Jan Zaanen

Phys. Rev. B 99, 235149 (2019) - Published 25 June, 2019

The plasmon is a ubiquitous collective mode in charged liquids. Due to the long-range Coulomb interaction, this mode is gapped and lives infinitely long at long wavelengths in Fermi liquids when the system is translationally invariant. In contrast, the authors show that in strongly entangled strange metals plasmons are always short lived, regardless of their wavelength, and decay into a quantum critical continuum, which replaces Landau damping at any wavelength.

Polaronic interacceptor hopping transport in intrinsically doped nickel oxide

Robert Karsthof, Marius Grundmann, Arthur Markus Anton, and Friedrich Kremer

Phys. Rev. B 99, 235201 (2019) - Published 20 June, 2019

The authors show here that electronic conduction in moderately to highly doped nickel oxide (NiO) occurs via interacceptor hopping of heavy, self-trapped charge carriers (polarons). These carriers remain localized around acceptors, and are transported by moving exclusively among those sites. This is in contrast to previous assumptions, namely that all NiO lattice sites take part in the electronic transport process (‘free’ small polaron hopping). Furthermore, disorder is demonstrated to play a vital role in the transport characteristics.

Optimal power and efficiency of single quantum dot heat engines: Theory and experiment

Martin Josefsson, Artis Svilans, Heiner Linke, and Martin Leijnse

Phys. Rev. B 99, 235432 (2019) - Published 27 June, 2019

As experimental implementations of highly efficient nanoscale heat engines based on quantum dots have recently come within our technological reach, there is need for a better understanding of how to best operate these devices. By combining theory and experiment, the authors present an investigation of how to optimize the power output of a single quantum dot heat engine. Furthermore, the impact that second order tunneling effects have on the efficiency is quantified and found to be significant for the experimental device.

ARTICLES

Electronic structure and strongly correlated systems

Magnetoelastic coupling in URu2Si2: Probing multipolar correlations in the hidden order state

Mark Wartenbe, Ryan E. Baumbach, Arkady Shekhter, Gregory S. Boebinger, Eric D. Bauer, Carolina Corvalán Moya, Neil Harrison, Ross D. McDonald, Myron B. Salamon, and Marcelo Jaime

Phys. Rev. B 99, 235101 (2019) - Published 3 June, 2019

Coupled-wire description of surface ADE topological order

Bo Han and Jeffrey C. Y. Teo

Phys. Rev. B 99, 235102 (2019) - Published 3 June, 2019

Ultrasoft pseudopotentials with kinetic energy density support: Implementing the Tran-Blaha potential

Albert P. Bartók and Jonathan R. Yates

Phys. Rev. B 99, 235103 (2019) - Published 3 June, 2019

Lattice dynamics, crystal-field excitations, and quadrupolar fluctuations of YbRu2Ge2

Mai Ye, E. W. Rosenberg, I. R. Fisher, and G. Blumberg

Phys. Rev. B 99, 235104 (2019) - Published 3 June, 2019

Efficient method to compute Z4 indices with glide symmetry and applications to the Möbius materials CeNiSn and UCoGe

Tsuneya Yoshida, Akito Daido, Norio Kawakami, and Youichi Yanase

Phys. Rev. B 99, 235105 (2019) - Published 3 June, 2019

Efficient evaluation of the polarization function in dynamical mean-field theory

Friedrich Krien

Phys. Rev. B 99, 235106 (2019) - Published 3 June, 2019

Ferromagnetic instability for the single-band Hubbard model in the strong-coupling regime

Yusuke Kamogawa, Joji Nasu, and Akihisa Koga

Phys. Rev. B 99, 235107 (2019) - Published 3 June, 2019

Spatial anisotropy of the Kondo screening cloud in a type-II Weyl semimetal

Lu-Ji Wang, Xing-Tai Hu, Lin Li, Dong-Hui Xu, Jin-Hua Sun, and Wei-Qiang Chen

Phys. Rev. B 99, 235108 (2019) - Published 4 June, 2019

Reconstructing entanglement Hamiltonian via entanglement eigenstates

W. Zhu, Zhoushen Huang, and Yin-Chen He

Phys. Rev. B 99, 235109 (2019) - Published 4 June, 2019

Entanglement-based measurements have proven to be beneficial in analyzing strong correlation effects in condensed matter systems. While diagnostics such as entanglement entropy and spectrum are numerically straightforward to obtain and thus widely used, the physically more illuminating object that the entanglement Hamiltonian is remains elusive, since its determination involves the daunting task of fully diagonalizing a many-body reduced density matrix. Here, the authors show how to circumvent this technical challenge and construct the entanglement Hamiltonian from a single entanglement eigenstate.

Chern insulators for electromagnetic waves in electrical circuit networks

Rafael Haenel, Timothy Branch, and Marcel Franz

Phys. Rev. B 99, 235110 (2019) - Published 6 June, 2019

Performance of the spin-dependent Krieger-Li-Iafrate approximation in jellium slabs

C. M. Horowitz, S. Rigamonti, and C. R. Proetto

Phys. Rev. B 99, 235111 (2019) - Published 6 June, 2019

Periodic table for topological bands with non-Hermitian symmetries

Hengyun Zhou and Jong Yeon Lee

Phys. Rev. B 99, 235112 (2019) - Published 6 June, 2019

Classifications of symmetry-protected topological phases provide a framework to understand systematically the physical properties and potential applications of topological systems. Here, the authors derive a comprehensive 38-fold topological classification of non-Hermitian systems with generic non-Hermitian symmetry classes. Two independent generalizations of Kramers’ degeneracy to the non-Hermitian setting are presented. The nature of the non-Hermitian topological invariants obtained in this classification is explained through worked-out examples, thus providing a framework for the experimental design and engineering of non-Hermitian symmetry-protected topological systems.

Computation of intrinsic spin Hall conductivities from first principles using maximally localized Wannier functions

Ji Hoon Ryoo, Cheol-Hwan Park, and Ivo Souza

Phys. Rev. B 99, 235113 (2019) - Published 7 June, 2019

Composite fermion Hall conductivity and the half-filled Landau level

Prashant Kumar, S. Raghu, and Michael Mulligan

Phys. Rev. B 99, 235114 (2019) - Published 7 June, 2019

Simulating the out-of-equilibrium dynamics of local observables by trading entanglement for mixture

J. Surace, M. Piani, and L. Tagliacozzo

Phys. Rev. B 99, 235115 (2019) - Published 7 June, 2019

Optical signature of the pressure-induced dimerization in the honeycomb iridate αLi2IrO3

V. Hermann, J. Ebad-Allah, F. Freund, A. Jesche, A. A. Tsirlin, P. Gegenwart, and C. A. Kuntscher

Phys. Rev. B 99, 235116 (2019) - Published 7 June, 2019

Spectral function of Mott-insulating Hubbard ladders: From fractionalized excitations to coherent quasiparticles

Chun Yang and Adrian E. Feiguin

Phys. Rev. B 99, 235117 (2019) - Published 10 June, 2019

Flat-band engineering in tight-binding models: Beyond the nearest-neighbor hopping

Tomonari Mizoguchi and Masafumi Udagawa

Phys. Rev. B 99, 235118 (2019) - Published 10 June, 2019

Quantum anomalous Hall effect and gate-controllable topological phase transition in layered EuCd2As2

Chengwang Niu, Ning Mao, Xiangting Hu, Baibiao Huang, and Ying Dai

Phys. Rev. B 99, 235119 (2019) - Published 10 June, 2019

Hierarchies of methods towards the exact Kohn-Sham correlation energy based on the adiabatic-connection fluctuation-dissipation theorem

Andreas Görling

Phys. Rev. B 99, 235120 (2019) - Published 10 June, 2019

A hierarchy of universally applicable density functional methods based on the adiabatic-connection fluctuation-dissipation theorem is introduced that can be systematically improved to treat electronic structures with increasing accuracy. Methods at the first rank of the hierarchy already can compete with established high-level wave-function methods and exhibit an attractive ratio of accuracy to computational effort. Strong correlation can be treated in a black-box manner based on a single Slater determinant: the Kohn-Sham determinant.

Characterization of the charge density wave transition and observation of the amplitude mode in LaAuSb2

C. N. Kuo, D. Shen, B. S. Li, Nguyen Nhat Quyen, W. Y. Tzeng, C. W. Luo, L. M. Wang, Y. K. Kuo, and C. S. Lue

Phys. Rev. B 99, 235121 (2019) - Published 10 June, 2019

Ab initio path integral Monte Carlo approach to the static and dynamic density response of the uniform electron gas

S. Groth, T. Dornheim, and J. Vorberger

Phys. Rev. B 99, 235122 (2019) - Published 10 June, 2019

Fingerprints of the conformal anomaly in the thermoelectric transport in Dirac and Weyl semimetals

Vicente Arjona, Maxim N. Chernodub, and María A. H. Vozmediano

Phys. Rev. B 99, 235123 (2019) - Published 10 June, 2019

Thermal radiation as a probe of one-dimensional electron liquids

Wade DeGottardi, Michael J. Gullans, Suraj Hegde, Smitha Vishveshwara, and Mohammad Hafezi

Phys. Rev. B 99, 235124 (2019) - Published 11 June, 2019

Symmetry representation approach to topological invariants in C2zT-symmetric systems

Junyeong Ahn and Bohm-Jung Yang

Phys. Rev. B 99, 235125 (2019) - Published 11 June, 2019

Pressure-induced reentrant transition in NbS3 phases: Combined Raman scattering and x-ray diffraction study

M. Abdel-Hafiez, R. Thiyagarajan, A. Majumdar, R. Ahuja, W. Luo, A. N. Vasiliev, A. A. Maarouf, S. G. Zybtsev, V. Ya. Pokrovskii, S. V. Zaitsev-Zotov, V. V. Pavlovskiy, Woei Wu Pai, W. Yang, and L. V. Kulik

Phys. Rev. B 99, 235126 (2019) - Published 12 June, 2019

Mechanisms to enhance the capacitance beyond the classical limits in capacitors with free-electron-like electrodes

Javier Junquera, Pablo García-Fernández, and Massimiliano Stengel

Phys. Rev. B 99, 235127 (2019) - Published 12 June, 2019

Enhanced correlations and superconductivity in weakly interacting partially flat-band systems: A determinantal quantum Monte Carlo study

Edwin W. Huang, Mohammad-Sadegh Vaezi, Zohar Nussinov, and Abolhassan Vaezi

Phys. Rev. B 99, 235128 (2019) - Published 13 June, 2019

Magnetic and electronic properties of B-site-ordered double-perovskite oxide La2CrMnO6 thin films

K. Yoshimatsu, J. Ishimaru, K. Watarai, K. Yamamoto, Y. Hirata, H. Wadati, Y. Takeda, K. Horiba, H. Kumigashira, O. Sakata, and A. Ohtomo

Phys. Rev. B 99, 235129 (2019) - Published 13 June, 2019

Inversion and magnetic quantum oscillations in the symmetric periodic Anderson model

Panch Ram and Brijesh Kumar

Phys. Rev. B 99, 235130 (2019) - Published 13 June, 2019

Classifying local fractal subsystem symmetry-protected topological phases

Trithep Devakul

Phys. Rev. B 99, 235131 (2019) - Published 14 June, 2019

Higher-order bosonic topological phases in spin models

Oleg Dubinkin and Taylor L. Hughes

Phys. Rev. B 99, 235132 (2019) - Published 14 June, 2019

Unconventional orbital ordering and emergent dimensional reduction in fulleride superconductors

Shintaro Hoshino, Philipp Werner, and Ryotaro Arita

Phys. Rev. B 99, 235133 (2019) - Published 17 June, 2019

Effect of the chiral anomaly on circular dichroism and Hall angle in doped and tilted Weyl semimetals

Ashutosh Singh and J. P. Carbotte

Phys. Rev. B 99, 235134 (2019) - Published 17 June, 2019

Low offset frequency 1/f flicker noise in spin-torque vortex oscillators

Steffen Wittrock, Sumito Tsunegi, Kay Yakushiji, Akio Fukushima, Hitoshi Kubota, Paolo Bortolotti, Ursula Ebels, Shinji Yuasa, Gilles Cibiel, Serge Galliou, Enrico Rubiola, and Vincent Cros

Phys. Rev. B 99, 235135 (2019) - Published 17 June, 2019

Scattering mechanisms and electrical transport near an Ising nematic quantum critical point

Xiaoyu Wang and Erez Berg

Phys. Rev. B 99, 235136 (2019) - Published 17 June, 2019

Topological quantum field theory for Abelian topological phases and loop braiding statistics in (3+1)-dimensions

Qing-Rui Wang, Meng Cheng, Chenjie Wang, and Zheng-Cheng Gu

Phys. Rev. B 99, 235137 (2019) - Published 18 June, 2019

Suppression of charge density wave order by disorder in Pd-intercalated ErTe3

J. A. W. Straquadine, F. Weber, S. Rosenkranz, A. H. Said, and I. R. Fisher

Phys. Rev. B 99, 235138 (2019) - Published 19 June, 2019

Ab initio theory of polarons: Formalism and applications

Weng Hong Sio, Carla Verdi, Samuel Poncé, and Feliciano Giustino

Phys. Rev. B 99, 235139 (2019) - Published 19 June, 2019

A new method enables abinitio calculations of large and small polarons on the same footing. The authors develop the theory and computational methodology required to determine the ground-state energy and wave functions of electron and hole polarons in semiconductors and insulators, without performing explicit supercell calculations. As initial applications, the authors investigate polarons in LiF and Li2O2.

Microscopic polarization and magnetization fields in extended systems

Perry T. Mahon, Rodrigo A. Muniz, and J. E. Sipe

Phys. Rev. B 99, 235140 (2019) - Published 20 June, 2019

Mean-field approximations for short-range four-body interactions at ν=35

Bartosz Kuśmierz, Arkadiusz Wójs, and G. J. Sreejith

Phys. Rev. B 99, 235141 (2019) - Published 20 June, 2019

Auxiliary field quantum Monte Carlo for multiband Hubbard models: Controlling the sign and phase problems to capture Hund's physics

Hongxia Hao, Brenda M. Rubenstein, and Hao Shi

Phys. Rev. B 99, 235142 (2019) - Published 20 June, 2019

Orientation of the ground-state orbital in CeCoIn5 and CeRhIn5

M. Sundermann, A. Amorese, F. Strigari, B. Leedahl, L. H. Tjeng, M. W. Haverkort, H. Gretarsson, H. Yavaş, M. Moretti Sala, E. D. Bauer, P. F. S. Rosa, J. D. Thompson, and A. Severing

Phys. Rev. B 99, 235143 (2019) - Published 21 June, 2019

The 4f orbital shape correlates with the ground state of the strongly correlated CeMIn5 family, with M=Co, Rh, and Ir. The remaining question as to how these orbitals are oriented has now been answered through nonresonant inelastic x-ray scattering (NIXS) measurements. Quantitative analysis reveals a hybridization-induced contribution of the first excited crystal-field state to the ground state of superconducting CeCoIn5, an important finding that suggests a degeneracy larger than two and that constrains realistic calculations of the electronic structure.

Parity anomaly from the Hamiltonian point of view

Matthew F. Lapa

Phys. Rev. B 99, 235144 (2019) - Published 21 June, 2019

First-principles many-body models for electron transport through molecular nanomagnets

A. Chiesa, E. Macaluso, P. Santini, S. Carretta, and E. Pavarini

Phys. Rev. B 99, 235145 (2019) - Published 24 June, 2019

Instability of the f-electron state in URu2Si2xPx probed using high magnetic fields

K. Huang, K.-W. Chen, A. Gallagher, Y. Lai, L. Nelson, D. Graf, and R. E. Baumbach

Phys. Rev. B 99, 235146 (2019) - Published 24 June, 2019

Charge and nematic orders in AFe2As2(A=Rb,Cs) superconductors

M. Moroni, G. Prando, S. Aswartham, I. Morozov, Z. Bukowski, B. Büchner, H. J. Grafe, and P. Carretta

Phys. Rev. B 99, 235147 (2019) - Published 24 June, 2019

Electron hydrodynamics with a polygonal Fermi surface

Caleb Q. Cook and Andrew Lucas

Phys. Rev. B 99, 235148 (2019) - Published 25 June, 2019

The authors identify a geometric effect that constrains scattering on polygonal Fermi surfaces and leads to an intermediate transport regime that alters traditional signatures of the ballistic-to-hydrodynamic crossover, including a modification of the well-known Gurzhi effect. In the hydrodynamic limit, the authors find a new dissipative “rotational viscosity”, which arises from anisotropy in the Fermi surface and opposes rotations of the electronic fluid. Finally, the authors revisit the putative hydrodynamic transport data in PdCoO2, an ultrapure metal with an approximately hexagonal Fermi surface.

Anomalous attenuation of plasmons in strange metals and holography

Aurelio Romero-Bermúdez, Alexander Krikun, Koenraad Schalm, and Jan Zaanen

Phys. Rev. B 99, 235149 (2019) - Published 25 June, 2019

The plasmon is a ubiquitous collective mode in charged liquids. Due to the long-range Coulomb interaction, this mode is gapped and lives infinitely long at long wavelengths in Fermi liquids when the system is translationally invariant. In contrast, the authors show that in strongly entangled strange metals plasmons are always short lived, regardless of their wavelength, and decay into a quantum critical continuum, which replaces Landau damping at any wavelength.

Solid-state platform for space-time engineering: The 8Pmmn borophene sheet

T. Farajollahpour, Z. Faraei, and S. A. Jafari

Phys. Rev. B 99, 235150 (2019) - Published 26 June, 2019

Crystal field and hyperfine structure of Er3+167 in YPO4:Er single crystals: High-resolution optical and EPR spectroscopy

M. N. Popova, S. A. Klimin, S. A. Moiseev, K. I. Gerasimov, M. M. Minnegaliev, E. I. Baibekov, G. S. Shakurov, M. Bettinelli, and M. C. Chou

Phys. Rev. B 99, 235151 (2019) - Published 26 June, 2019

Anomalous electron transport in epitaxial NdNiO3 films

Shashank Kumar Ojha, Sujay Ray, Tanmoy Das, S. Middey, Sagar Sarkar, Priya Mahadevan, Zhen Wang, Yimei Zhu, Xiaoran Liu, M. Kareev, and J. Chakhalian

Phys. Rev. B 99, 235153 (2019) - Published 27 June, 2019

Symmetry-enforced Dirac points in antiferromagnetic semiconductors

V. V. Kabanov

Phys. Rev. B 99, 235154 (2019) - Published 27 June, 2019

Thermoelectric power and its correlation with conductivity in NbS3 whiskers

S. G. Zybtsev, V. Ya. Pokrovskii, V. F. Nasretdinova, S. V. Zaitsev-Zotov, V. V. Pryadun, E. S. Kozlyakova, O. S. Volkova, A. N. Vasiliev, Woei Wu Pai, and D. Starešinić

Phys. Rev. B 99, 235155 (2019) - Published 27 June, 2019

Cavity quantum electrodynamical Chern insulator: Towards light-induced quantized anomalous Hall effect in graphene

Xiao Wang, Enrico Ronca, and Michael A. Sentef

Phys. Rev. B 99, 235156 (2019) - Published 28 June, 2019

Interaction-induced edge states in HgTe/CdTe quantum wells under a magnetic field

Zewei Chen and Tai Kai Ng

Phys. Rev. B 99, 235157 (2019) - Published 28 June, 2019

Semiconductors I: bulk

Polaronic interacceptor hopping transport in intrinsically doped nickel oxide

Robert Karsthof, Marius Grundmann, Arthur Markus Anton, and Friedrich Kremer

Phys. Rev. B 99, 235201 (2019) - Published 20 June, 2019

The authors show here that electronic conduction in moderately to highly doped nickel oxide (NiO) occurs via interacceptor hopping of heavy, self-trapped charge carriers (polarons). These carriers remain localized around acceptors, and are transported by moving exclusively among those sites. This is in contrast to previous assumptions, namely that all NiO lattice sites take part in the electronic transport process (‘free’ small polaron hopping). Furthermore, disorder is demonstrated to play a vital role in the transport characteristics.

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

Spin relaxation time of donor-bound electrons in a CdTe quantum well

G. Garcia-Arellano, F. Bernardot, G. Karczewski, C. Testelin, and M. Chamarro

Phys. Rev. B 99, 235301 (2019) - Published 4 June, 2019

Time-resolved buildup of twisted indirect exchange interaction in two-dimensional systems

V. A. Stephanovich, E. V. Kirichenko, V. K. Dugaev, J. Barnaś, and J. Berakdar

Phys. Rev. B 99, 235302 (2019) - Published 17 June, 2019

Quantum and transport mobilities of a Na3Bi-based three-dimensional Dirac system

H. F. Yuan, W. Xu, X. N. Zhao, D. Song, G. R. Zhang, Y. M. Xiao, L. Ding, and F. M. Peeters

Phys. Rev. B 99, 235303 (2019) - Published 17 June, 2019

Generalized statistical dynamical theory of x-ray diffraction by imperfect multilayer crystal structures with defects

S. I. Olikhovskii, V. B. Molodkin, E. G. Len, E. S. Skakunova, and S. V. Lizunova

Phys. Rev. B 99, 235304 (2019) - Published 18 June, 2019

Surface physics, nanoscale physics, low-dimensional systems

Raman-active modes of 1TWTe2 under tensile strain: A first-principles prediction

Wei Yang, Zi-Yang Yuan, Ying-Qi Luo, Yu Yang, Fa-Wei Zheng, Zong-Hai Hu, Xiao-Hui Wang, Yuan-An Liu, and Ping Zhang

Phys. Rev. B 99, 235401 (2019) - Published 4 June, 2019

Pseudospin-1 wave scattering that defies chaos Q-spoiling and Klein tunneling

Hong-Ya Xu and Ying-Cheng Lai

Phys. Rev. B 99, 235403 (2019) - Published 4 June, 2019

Superconductivity in twisted graphene NbSe2 heterostructures

Yohanes S. Gani, Hadar Steinberg, and Enrico Rossi

Phys. Rev. B 99, 235404 (2019) - Published 5 June, 2019

Low-dissipation edge currents without edge states

Justin C. W. Song and Giovanni Vignale

Phys. Rev. B 99, 235405 (2019) - Published 6 June, 2019

Band structure and topological properties of twisted double bilayer graphene

Mikito Koshino

Phys. Rev. B 99, 235406 (2019) - Published 6 June, 2019

Enhanced graphene-light interaction assisted by magnetic plasmons in metallic nanogroove arrays

Wei Wang, Yuhang Zhu, Hong Zhang, Longyu Qing, Li Lei, Daimin Li, and Juemin Yi

Phys. Rev. B 99, 235407 (2019) - Published 6 June, 2019

Topology and localization of a periodically driven Kitaev model

I. C. Fulga, M. Maksymenko, M. T. Rieder, N. H. Lindner, and E. Berg

Phys. Rev. B 99, 235408 (2019) - Published 6 June, 2019

Optical forces from near-field directionalities in planar structures

Jack J. Kingsley-Smith, Michela F. Picardi, Lei Wei, Anatoly V. Zayats, and Francisco J. Rodríguez-Fortuño

Phys. Rev. B 99, 235410 (2019) - Published 10 June, 2019

Dynamics of surface graphene ripplocations on a flat graphite substrate

Alexander V. Savin, Elena A. Korznikova, and Sergey V. Dmitriev

Phys. Rev. B 99, 235411 (2019) - Published 11 June, 2019

Amplification and regulation of periodic nanostructures in multipulse ultrashort laser-induced surface evolution by electromagnetic-hydrodynamic simulations

Anton Rudenko, Cyril Mauclair, Florence Garrelie, Razvan Stoian, and Jean-Philippe Colombier

Phys. Rev. B 99, 235412 (2019) - Published 11 June, 2019

Thermoelectric transport properties of borophane

Moslem Zare

Phys. Rev. B 99, 235413 (2019) - Published 11 June, 2019

Spectral near-field thermal emission extraction by optical waveguides

Jiayu Li, Jeffrey Wuenschell, Youngseok Jee, Paul R. Ohodnicki, and Sheng Shen

Phys. Rev. B 99, 235414 (2019) - Published 12 June, 2019

First-principles quantum corrections for carrier correlations in double-layer two-dimensional heterostructures

Martin-Isbjörn Trappe, Derek Y. H. Ho, and Shaffique Adam

Phys. Rev. B 99, 235415 (2019) - Published 13 June, 2019

Electron pairing in nanostructures driven by an oscillating field

O. V. Kibis

Phys. Rev. B 99, 235416 (2019) - Published 14 June, 2019

Flat bands in twisted double bilayer graphene

Narasimha Raju Chebrolu, Bheema Lingam Chittari, and Jeil Jung

Phys. Rev. B 99, 235417 (2019) - Published 17 June, 2019

Electric field induced enhancement of photovoltaic effects in graphene nanoribbons

Sara Zamani and Rouhollah Farghadan

Phys. Rev. B 99, 235418 (2019) - Published 17 June, 2019

Full electrostatic control of quantum interference in an extended trenched Josephson junction

Stefano Guiducci, Matteo Carrega, Fabio Taddei, Giorgio Biasiol, Hervé Courtois, Fabio Beltram, and Stefan Heun

Phys. Rev. B 99, 235419 (2019) - Published 18 June, 2019

Majorana qubit readout using longitudinal qubit-resonator interaction

Arne L. Grimsmo and Thomas B. Smith

Phys. Rev. B 99, 235420 (2019) - Published 19 June, 2019

Effect of resonant impurity scattering of carriers on the Drude-peak broadening in uniaxially strained graphene

V. O. Shubnyi, Y. V. Skrypnyk, S. G. Sharapov, and V. M. Loktev

Phys. Rev. B 99, 235421 (2019) - Published 19 June, 2019

Mesoscopic effects in the heat conductance of superconducting-normal-superconducting and normal-superconducting junctions

Fatemeh Hajiloo, Fabian Hassler, and Janine Splettstoesser

Phys. Rev. B 99, 235422 (2019) - Published 20 June, 2019

Topologically nontrivial photonic nodal surface in a photonic metamaterial

Minkyung Kim, Dasol Lee, Dongwoo Lee, and Junsuk Rho

Phys. Rev. B 99, 235423 (2019) - Published 20 June, 2019

Wave-packet dynamics in multilayer phosphorene

S. M. Cunha, D. R. da Costa, G. O. de Sousa, Andrey Chaves, J. Milton Pereira, Jr., and G. A. Farias

Phys. Rev. B 99, 235424 (2019) - Published 21 June, 2019

Phonon thermal transport in βNX(X=P,As,Sb) monolayers: A first-principles study of the interplay between harmonic and anharmonic phonon properties

Armin Taheri, Carlos Da Silva, and Cristina H. Amon

Phys. Rev. B 99, 235425 (2019) - Published 21 June, 2019

Comb tensor networks

Natalia Chepiga and Steven R. White

Phys. Rev. B 99, 235426 (2019) - Published 24 June, 2019

Majorana zero modes in regular B-form single-stranded DNA proximity-coupled to an s-wave superconductor

Han-Zhao Tang, Qing-Feng Sun, Jian-Jun Liu, and Ying-Tao Zhang

Phys. Rev. B 99, 235427 (2019) - Published 24 June, 2019

Hydrogenation: An effective strategy to improve the thermoelectric properties of multilayer silicene

Y. F. Li, G. H. Tang, and B. Fu

Phys. Rev. B 99, 235428 (2019) - Published 25 June, 2019

Surface second-harmonic generation from metallic-nanoparticle configurations: A transformation-optics approach

K. Nireekshan Reddy, Parry Y. Chen, Antonio I. Fernández-Domínguez, and Yonatan Sivan

Phys. Rev. B 99, 235429 (2019) - Published 25 June, 2019

Topological superconductivity at finite temperatures in proximitized magnetic nanowires

Anna Gorczyca-Goraj, Tadeusz Domański, and Maciej M. Maśka

Phys. Rev. B 99, 235430 (2019) - Published 26 June, 2019

Normal and anomalous electron-hole pairs in a quantum conductor driven by a voltage pulse

X. K. Yue and Y. Yin

Phys. Rev. B 99, 235431 (2019) - Published 26 June, 2019

Optimal power and efficiency of single quantum dot heat engines: Theory and experiment

Martin Josefsson, Artis Svilans, Heiner Linke, and Martin Leijnse

Phys. Rev. B 99, 235432 (2019) - Published 27 June, 2019

As experimental implementations of highly efficient nanoscale heat engines based on quantum dots have recently come within our technological reach, there is need for a better understanding of how to best operate these devices. By combining theory and experiment, the authors present an investigation of how to optimize the power output of a single quantum dot heat engine. Furthermore, the impact that second order tunneling effects have on the efficiency is quantified and found to be significant for the experimental device.

Nonlinear optical selection rules of excitons in monolayer transition metal dichalcogenides

Alireza Taghizadeh and T. G. Pedersen

Phys. Rev. B 99, 235433 (2019) - Published 28 June, 2019

Structure determination of hydrogen-terminated 4H-SiC(0001) by LEED

Hiroshi Ando, Anton Visikovskiy, Takeshi Nakagawa, Seigi Mizuno, and Satoru Tanaka

Phys. Rev. B 99, 235434 (2019) - Published 28 June, 2019

Effects of dissipation on solitons in the hydrodynamic regime of graphene

Thomas Zdyrski and John McGreevy

Phys. Rev. B 99, 235435 (2019) - Published 28 June, 2019

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