Browse Issues:

HIGHLIGHTED ARTICLES

Mapping momentum-dependent electron-phonon coupling and nonequilibrium phonon dynamics with ultrafast electron diffuse scattering

Mark J. Stern, Laurent P. René de Cotret, Martin R. Otto, Robert P. Chatelain, Jean-Philippe Boisvert, Mark Sutton, and Bradley J. Siwick

Phys. Rev. B 97, 165416 (2018) - Published 12 April, 2018

The nature of the coupling within and between lattice and charge degrees of freedom is central to condensed matter and materials physics. However, these interactions have so far resisted a comprehensive time-resolved experimental investigation. The authors demonstrate that ultrafast electron diffuse scattering provides direct, momentum-resolved measurements of the electron-phonon and phonon-phonon coupling strengths in graphite. Through the technique’s ability to follow individual phonon population dynamics with femtosecond time resolution, this method, complimented by angle-resolved photoemission spectroscopy, can provide a complete picture of the dynamics within and between electron and phonon subsystems, and help unravel the physics of complex phases where the intertwined nature of the electron-lattice systems determine material properties.

Revealing weak spin-orbit coupling effects on charge carriers in a π-conjugated polymer

H. Malissa, R. Miller, D. L. Baird, S. Jamali, G. Joshi, M. Bursch, S. Grimme, J. van Tol, J. M. Lupton, and C. Boehme

Phys. Rev. B 97, 161201(R) (2018) - Published 9 April, 2018

Spin-orbit coupling (SOC) effects on charge carriers in organic light emitting diodes (OLEDs) impact spin lifetimes, spin-transport properties, and magnetic-field effects. Previous attempts to measure SOC in organic semiconductors have been indirect. Here, the authors utilize quantum chemistry to predict the effect of SOC on magnetic resonance line shapes as determined by the microscopic -tensor. To test the predictions, they measure electrically detected magnetic resonance on OLEDs at high fields of up to 12T. The results indicate that the structural disorder of the polymer has only weak influence on SOC and that spin-related phenomena in OLEDs are fundamentally monomolecular in nature.

Detuning dependence of Rabi oscillations in an InAs self-assembled quantum dot ensemble

Takeshi Suzuki, Rohan Singh, Manfred Bayer, Arne Ludwig, Andreas D. Wieck, and Steven T. Cundiff

Phys. Rev. B 97, 161301(R) (2018) - Published 4 April, 2018

Inhomogeneous broadening in ensembles of semiconductor quantum dots (QDs) has hindered coherent operations due to the detuning effects, caused by the large fluctuation in the QD transition energy due to size dispersion. This difficulty is especially evident when using femtosecond laser pulses for excitation. Here, the authors successfully measure detuning-dependent coherent evolution for a QD ensemble by employing prepulse two-dimensional coherent spectroscopy. The dephasing mechanism is found to be significantly different from that observed using picosecond lasers. This work presents a novel method to explore collective phenomena, such as superfluorescence, as well as motivating future studies of coherent interactions in the femtosecond regime.

Distinguishing Majorana bound states from localized Andreev bound states by interferometry

Michael Hell, Karsten Flensberg, and Martin Leijnse

Phys. Rev. B 97, 161401(R) (2018) - Published 10 April, 2018

Up to now, transport spectroscopy of superconducting islands with strong spin-orbit coupling has revealed a robust zero-bias peak in various setups upon applying a magnetic field. While this observation is consistent with the formation of topologically nontrivial Majorana bound states, a careful distinction from topologically trivial Andreev bound states is a vital step. Here, the authors show that two-terminal Andreev bound states can be distinguished from two-terminal Majorana bound states by an interference experiment. Such experiments can be implemented by using current fabrication capabilities and may also be useful to probe quasiparticle poisoning rates for nonisolated islands.

Conditions for l=1 Pomeranchuk instability in a Fermi liquid

Yi-Ming Wu, Avraham Klein, and Andrey V. Chubukov

Phys. Rev. B 97, 165101 (2018) - Published 2 April, 2018

In a Fermi liquid, the stability of the Fermi surface to deformation is encoded in the angular moments of the interaction between quasiparticles via the Pomeranchuk criterion Fl -1. Interestingly, charge and spin conservation prevent interactions from destabilizing the l=1 channel even when Fl = -1, indicating that high-energy processes play a nontrivial role in the low-energy Fermi liquid dynamics. The authors identify, analytically and numerically, that conservation laws imply an equivalence between processes near and away from the Fermi surface, preventing l=1 instabilities. Then, they construct l=1 order parameters without this equivalence, identifying possible novel instabilities in strongly correlated electron systems.

X-cube model on generic lattices: Fracton phases and geometric order

Kevin Slagle and Yong Baek Kim

Phys. Rev. B 97, 165106 (2018) - Published 4 April, 2018

The authors present a generic lattice construction for a generalized X-cube model of fracton topological order and propose a coarser definition of phase of matter for fracton orders. Similar to other fracton models, this model hosts emergent subdimensional excitations, which are topologically robust excitations that are confined to only move along certain lines or surfaces. The model is constructed from stacks of intersecting surfaces, and the subdimensional excitations are confined to move only along these (possibly curved) surfaces or their intersections. Surprisingly, for certain curved intersecting surfaces, a robust ground-state degeneracy on a manifold with trivial topology can result.

Electron-plasmon and electron-phonon satellites in the angle-resolved photoelectron spectra of n-doped anatase TiO2

Fabio Caruso, Carla Verdi, Samuel Poncé, and Feliciano Giustino

Phys. Rev. B 97, 165113 (2018) - Published 9 April, 2018

In analogy to the case of crystal-lattice vibrations in polar compounds, the coupling to low-energy plasmons in highly doped semiconductors may influence profoundly the electron band structure, leading, e.g., to the relaxation of hot carriers, increase of electronic linewidths, and formation of satellites in the angle-resolved photoemission spectrum. A first-principles theory to account for these phenomena is developed here. Its application to the paradigmatic case of the photoemission spectrum of anatase TiO reveals a complex interplay of plasmon and phonon satellites.

Lieb-Schultz-Mattis-type filling constraints in the 1651 magnetic space groups

Haruki Watanabe

Phys. Rev. B 97, 165117 (2018) - Published 11 April, 2018

Knowing the electron filling alone is sometimes sufficient to eliminate the possibility of featureless insulators, since the material with a certain filling must exhibit either spontaneous symmetry breaking with concomitant gapless excitations or fractionalization. The last possibility is theoretically and experimentally the most exciting scenario; it is believed to occur in quantum spin liquids. The absence of magnetic ordering is usually taken as a prerequisite for such exotic phases, but the filling constraint explored in this paper will be a guiding principle in the search for a phase with coexisting topological and magnetic order.

Quantum oscillations in nodal line systems

Hui Yang, Roderich Moessner, and Lih-King Lim

Phys. Rev. B 97, 165118 (2018) - Published 11 April, 2018

Nodal line systems are a new class of three-dimensional topological semimetals of great current interest. They are characterized by energy-band touching that forms a closed loop in momentum space and exhibits a topological π Berry phase in loops linking the nodal line. The authors study their associated magnetic quantum oscillation signatures for Fermi surfaces of various geometries. Landau levels of extremal orbits and their associated Berry phase are computed. They can serve as basic topological signatures in magnetic transport measurement of nodal line systems.

Charge and current orders in the spin-fermion model with overlapping hot spots

Pavel A. Volkov and Konstantin B. Efetov

Phys. Rev. B 97, 165125 (2018) - Published 16 April, 2018

Recent experiments have revealed a variety of symmetry-breaking phenomena inherent to the pseudogap state of underdoped cuprates. The authors consider emergent phases in a model where the interaction between fermions and antiferromagnetic fluctuations affects two extended regions of the Fermi surface instead of isolated ‘hot spots.’ Surprisingly, this leads to a rich phase diagram including various charge and staggered bond current orders. The uncovered phases share some features with the experimental signatures of the pseudogap state. The results open up perspectives for new types of particle-hole order in itinerant systems with strong spin fluctuations.

Reinvestigating the surface and bulk electronic properties of Cd3As2

S. Roth, H. Lee, A. Sterzi, M. Zacchigna, A. Politano, R. Sankar, F. C. Chou, G. Di Santo, L. Petaccia, O. V. Yazyev, and A. Crepaldi

Phys. Rev. B 97, 165439 (2018) - Published 30 April, 2018

Cd3As2 with its linearly dispersing bulk state is generally considered an archetype of the three-dimensional Dirac semimetal phase. The present investigation of its electronic properties calls for a revision of this crude assumption. Indeed, Cd3As2 exhibits both a surface state and two bulk bands, dispersing across the Fermi level. Hence, all these states must contribute to the unique material electrical transport properties, but with very different effective masses, band velocities, and different binding energies with respect to the chemical potential. This results in possible ambipolar charge carrier transport at the surface.

RAPID COMMUNICATIONS

Electronic structure and strongly correlated systems

Exotic states of matter with polariton chains

Kirill P. Kalinin, Pavlos G. Lagoudakis, and Natalia G. Berloff

Phys. Rev. B 97, 161101(R) (2018) - Published 4 April, 2018

Symmetry-enforced stability of interacting Weyl and Dirac semimetals

Johan Carlström and Emil J. Bergholtz

Phys. Rev. B 97, 161102(R) (2018) - Published 5 April, 2018

Ferromagnetic Peierls insulator state in AMg4Mn6O15(A=K,Rb,Cs)

T. Yamaguchi, K. Sugimoto, Y. Ohta, Y. Tanaka, and H. Sato

Phys. Rev. B 97, 161103(R) (2018) - Published 5 April, 2018

Terahertz radiation by subpicosecond spin-polarized photocurrent originating from Dirac electrons in a Rashba-type polar semiconductor

Yuto Kinoshita, Noriaki Kida, Tatsuya Miyamoto, Manabu Kanou, Takao Sasagawa, and Hiroshi Okamoto

Phys. Rev. B 97, 161104(R) (2018) - Published 5 April, 2018

Microhartree precision in density functional theory calculations

Andris Gulans, Anton Kozhevnikov, and Claudia Draxl

Phys. Rev. B 97, 161105(R) (2018) - Published 6 April, 2018

Fe4Nb2O9: A magnetoelectric antiferromagnet

Antoine Maignan and Christine Martin

Phys. Rev. B 97, 161106(R) (2018) - Published 9 April, 2018

Topological Z2 resonating-valence-bond spin liquid on the square lattice

Ji-Yao Chen and Didier Poilblanc

Phys. Rev. B 97, 161107(R) (2018) - Published 11 April, 2018

Mechanism for subgap optical conductivity in honeycomb Kitaev materials

Adrien Bolens, Hosho Katsura, Masao Ogata, and Seiji Miyashita

Phys. Rev. B 97, 161108(R) (2018) - Published 13 April, 2018

Formation of an incoherent metallic state in Rh-doped Sr2IrO4

A. Louat, F. Bert, L. Serrier-Garcia, F. Bertran, P. Le Fèvre, J. Rault, and V. Brouet

Phys. Rev. B 97, 161109(R) (2018) - Published 16 April, 2018

Density matrix renormalization group for a highly degenerate quantum system: Sliding environment block approach

Peter Schmitteckert

Phys. Rev. B 97, 161110(R) (2018) - Published 20 April, 2018

Trivial topological phase of CaAgP and the topological nodal-line transition in CaAg(P1xAsx)

N. Xu, Y. T. Qian, Q. S. Wu, G. Autès, C. E. Matt, B. Q. Lv, M. Y. Yao, V. N. Strocov, E. Pomjakushina, K. Conder, N. C. Plumb, M. Radovic, O. V. Yazyev, T. Qian, H. Ding, J. Mesot, and M. Shi

Phys. Rev. B 97, 161111(R) (2018) - Published 23 April, 2018

Pulsating flow and boundary layers in viscous electronic hydrodynamics

Roderich Moessner, Piotr Surówka, and Piotr Witkowski

Phys. Rev. B 97, 161112(R) (2018) - Published 23 April, 2018

Topological transport in Dirac nodal-line semimetals

W. B. Rui, Y. X. Zhao, and Andreas P. Schnyder

Phys. Rev. B 97, 161113(R) (2018) - Published 25 April, 2018

Out-of-time-order correlators in finite open systems

S. V. Syzranov, A. V. Gorshkov, and V. Galitski

Phys. Rev. B 97, 161114(R) (2018) - Published 26 April, 2018

Experimental realization of a feedback optical parametric amplifier with four-wave mixing

Xiaozhou Pan, Hui Chen, Tianxiang Wei, Jun Zhang, Alberto M. Marino, Nicolas Treps, Ryan T. Glasser, and Jietai Jing

Phys. Rev. B 97, 161115(R) (2018) - Published 26 April, 2018

Kondo-like behavior near the magnetic instability in SmB6: Temperature and pressure dependences of the Sm valence

N. Emi, N. Kawamura, M. Mizumaki, T. Koyama, N. Ishimatsu, G. Pristáš, T. Kagayama, K. Shimizu, Y. Osanai, F. Iga, and T. Mito

Phys. Rev. B 97, 161116(R) (2018) - Published 30 April, 2018

Semiconductors I: bulk

Revealing weak spin-orbit coupling effects on charge carriers in a π-conjugated polymer

H. Malissa, R. Miller, D. L. Baird, S. Jamali, G. Joshi, M. Bursch, S. Grimme, J. van Tol, J. M. Lupton, and C. Boehme

Phys. Rev. B 97, 161201(R) (2018) - Published 9 April, 2018

Spin-orbit coupling (SOC) effects on charge carriers in organic light emitting diodes (OLEDs) impact spin lifetimes, spin-transport properties, and magnetic-field effects. Previous attempts to measure SOC in organic semiconductors have been indirect. Here, the authors utilize quantum chemistry to predict the effect of SOC on magnetic resonance line shapes as determined by the microscopic -tensor. To test the predictions, they measure electrically detected magnetic resonance on OLEDs at high fields of up to 12T. The results indicate that the structural disorder of the polymer has only weak influence on SOC and that spin-related phenomena in OLEDs are fundamentally monomolecular in nature.

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

Detuning dependence of Rabi oscillations in an InAs self-assembled quantum dot ensemble

Takeshi Suzuki, Rohan Singh, Manfred Bayer, Arne Ludwig, Andreas D. Wieck, and Steven T. Cundiff

Phys. Rev. B 97, 161301(R) (2018) - Published 4 April, 2018

Inhomogeneous broadening in ensembles of semiconductor quantum dots (QDs) has hindered coherent operations due to the detuning effects, caused by the large fluctuation in the QD transition energy due to size dispersion. This difficulty is especially evident when using femtosecond laser pulses for excitation. Here, the authors successfully measure detuning-dependent coherent evolution for a QD ensemble by employing prepulse two-dimensional coherent spectroscopy. The dephasing mechanism is found to be significantly different from that observed using picosecond lasers. This work presents a novel method to explore collective phenomena, such as superfluorescence, as well as motivating future studies of coherent interactions in the femtosecond regime.

Chiral solitons in spinor polariton rings

D. A. Zezyulin, D. R. Gulevich, D. V. Skryabin, and I. A. Shelykh

Phys. Rev. B 97, 161302(R) (2018) - Published 12 April, 2018

Ultrafast carrier dynamics in a GaN/Al0.18Ga0.82N superlattice

Felix Mahler, Jens W. Tomm, Klaus Reimann, Michael Woerner, Thomas Elsaesser, Christos Flytzanis, Veit Hoffmann, and Markus Weyers

Phys. Rev. B 97, 161303(R) (2018) - Published 23 April, 2018

Surface physics, nanoscale physics, low-dimensional systems

Distinguishing Majorana bound states from localized Andreev bound states by interferometry

Michael Hell, Karsten Flensberg, and Martin Leijnse

Phys. Rev. B 97, 161401(R) (2018) - Published 10 April, 2018

Up to now, transport spectroscopy of superconducting islands with strong spin-orbit coupling has revealed a robust zero-bias peak in various setups upon applying a magnetic field. While this observation is consistent with the formation of topologically nontrivial Majorana bound states, a careful distinction from topologically trivial Andreev bound states is a vital step. Here, the authors show that two-terminal Andreev bound states can be distinguished from two-terminal Majorana bound states by an interference experiment. Such experiments can be implemented by using current fabrication capabilities and may also be useful to probe quasiparticle poisoning rates for nonisolated islands.

Large magnetoresistance by Pauli blockade in hydrogenated graphene

J. Guillemette, N. Hemsworth, A. Vlasov, J. Kirman, F. Mahvash, P. L. Lévesque, M. Siaj, R. Martel, G. Gervais, S. Studenikin, A. Sachrajda, and T. Szkopek

Phys. Rev. B 97, 161402(R) (2018) - Published 18 April, 2018

Superlubrication by phonon confinement

Noriyuki Wada, Makoto Ishikawa, Takuma Shiga, Junichiro Shiomi, Masaru Suzuki, and Kouji Miura

Phys. Rev. B 97, 161403(R) (2018) - Published 18 April, 2018

Dirac dispersion generates unusually large Nernst effect in Weyl semimetals

Sarah J. Watzman, Timothy M. McCormick, Chandra Shekhar, Shu-Chun Wu, Yan Sun, Arati Prakash, Claudia Felser, Nandini Trivedi, and Joseph P. Heremans

Phys. Rev. B 97, 161404(R) (2018) - Published 18 April, 2018

Tunable plasmonic toroidal terahertz metamodulator

Burak Gerislioglu, Arash Ahmadivand, and Nezih Pala

Phys. Rev. B 97, 161405(R) (2018) - Published 19 April, 2018

Temperature-dependent layer breathing modes in two-dimensional materials

Indrajit Maity, Prabal K. Maiti, and Manish Jain

Phys. Rev. B 97, 161406(R) (2018) - Published 24 April, 2018

Quantum friction in two-dimensional topological materials

M. Belén Farias, Wilton J. M. Kort-Kamp, and Diego A. R. Dalvit

Phys. Rev. B 97, 161407(R) (2018) - Published 24 April, 2018

Impurity-induced states in superconducting heterostructures

Dong E. Liu, Enrico Rossi, and Roman M. Lutchyn

Phys. Rev. B 97, 161408(R) (2018) - Published 26 April, 2018

ARTICLES

Electronic structure and strongly correlated systems

Conditions for l=1 Pomeranchuk instability in a Fermi liquid

Yi-Ming Wu, Avraham Klein, and Andrey V. Chubukov

Phys. Rev. B 97, 165101 (2018) - Published 2 April, 2018

In a Fermi liquid, the stability of the Fermi surface to deformation is encoded in the angular moments of the interaction between quasiparticles via the Pomeranchuk criterion Fl -1. Interestingly, charge and spin conservation prevent interactions from destabilizing the l=1 channel even when Fl = -1, indicating that high-energy processes play a nontrivial role in the low-energy Fermi liquid dynamics. The authors identify, analytically and numerically, that conservation laws imply an equivalence between processes near and away from the Fermi surface, preventing l=1 instabilities. Then, they construct l=1 order parameters without this equivalence, identifying possible novel instabilities in strongly correlated electron systems.

Importance of the van Hove singularity in superconducting PdTe2

Kyoo Kim, Sooran Kim, J. S. Kim, Heejung Kim, J.-H. Park, and B. I. Min

Phys. Rev. B 97, 165102 (2018) - Published 3 April, 2018

Quantum anomalies in nodal line semimetals

A. A. Burkov

Phys. Rev. B 97, 165104 (2018) - Published 3 April, 2018

Tuning the magnetism of the top-layer FeAs on BaFe2As2(001): First-principles study

Bing-Jing Zhang, Kai Liu, and Zhong-Yi Lu

Phys. Rev. B 97, 165105 (2018) - Published 4 April, 2018

X-cube model on generic lattices: Fracton phases and geometric order

Kevin Slagle and Yong Baek Kim

Phys. Rev. B 97, 165106 (2018) - Published 4 April, 2018

The authors present a generic lattice construction for a generalized X-cube model of fracton topological order and propose a coarser definition of phase of matter for fracton orders. Similar to other fracton models, this model hosts emergent subdimensional excitations, which are topologically robust excitations that are confined to only move along certain lines or surfaces. The model is constructed from stacks of intersecting surfaces, and the subdimensional excitations are confined to move only along these (possibly curved) surfaces or their intersections. Surprisingly, for certain curved intersecting surfaces, a robust ground-state degeneracy on a manifold with trivial topology can result.

Spreading of correlations in the Falicov-Kimball model

Andreas J. Herrmann, Andrey E. Antipov, and Philipp Werner

Phys. Rev. B 97, 165107 (2018) - Published 5 April, 2018

Dehybridization of f and d states in the heavy-fermion system YbRh2Si2

D. Leuenberger, J. A. Sobota, S.-L. Yang, H. Pfau, D.-J. Kim, S.-K. Mo, Z. Fisk, P. S. Kirchmann, and Z.-X. Shen

Phys. Rev. B 97, 165108 (2018) - Published 6 April, 2018

2p-insulator heterointerfaces: Creation of half-metallicity and anionogenic ferromagnetism via double exchange

Baomin Zhang, Chonglong Cao, Guowei Li, Feng Li, Weixiao Ji, Shufeng Zhang, Miaojuan Ren, Haikun Zhang, Rui-Qin Zhang, Zhicheng Zhong, Zhe Yuan, Shengjun Yuan, and Graeme R. Blake

Phys. Rev. B 97, 165109 (2018) - Published 6 April, 2018

d+id chiral superconductivity in a triangular lattice from trigonal bipyramidal complexes

Chen Lu, Li-Da Zhang, Xianxin Wu, Fan Yang, and Jiangping Hu

Phys. Rev. B 97, 165110 (2018) - Published 6 April, 2018

Optical nonlinearities of excitons in monolayer MoS2

Daniel B. S. Soh, Christopher Rogers, Dodd J. Gray, Eric Chatterjee, and Hideo Mabuchi

Phys. Rev. B 97, 165111 (2018) - Published 6 April, 2018

Converting topological insulators into topological metals within the tetradymite family

K.-W. Chen, N. Aryal, J. Dai, D. Graf, S. Zhang, S. Das, P. Le Fèvre, F. Bertran, R. Yukawa, K. Horiba, H. Kumigashira, E. Frantzeskakis, F. Fortuna, L. Balicas, A. F. Santander-Syro, E. Manousakis, and R. E. Baumbach

Phys. Rev. B 97, 165112 (2018) - Published 9 April, 2018

Electron-plasmon and electron-phonon satellites in the angle-resolved photoelectron spectra of n-doped anatase TiO2

Fabio Caruso, Carla Verdi, Samuel Poncé, and Feliciano Giustino

Phys. Rev. B 97, 165113 (2018) - Published 9 April, 2018

In analogy to the case of crystal-lattice vibrations in polar compounds, the coupling to low-energy plasmons in highly doped semiconductors may influence profoundly the electron band structure, leading, e.g., to the relaxation of hot carriers, increase of electronic linewidths, and formation of satellites in the angle-resolved photoemission spectrum. A first-principles theory to account for these phenomena is developed here. Its application to the paradigmatic case of the photoemission spectrum of anatase TiO reveals a complex interplay of plasmon and phonon satellites.

Topological Luttinger liquids from decorated domain walls

Daniel E. Parker, Thomas Scaffidi, and Romain Vasseur

Phys. Rev. B 97, 165114 (2018) - Published 9 April, 2018

Partially filled Landau level at even denominators: A vortex metal with a Berry phase

Yizhi You

Phys. Rev. B 97, 165115 (2018) - Published 9 April, 2018

Anomalous metallic state with strong charge fluctuations in BaxTi8O16+δ revealed by hard x-ray photoemission spectroscopy

S. Dash, T. Kajita, M. Okawa, T. Saitoh, E. Ikenaga, N. L. Saini, T. Katsufuji, and T. Mizokawa

Phys. Rev. B 97, 165116 (2018) - Published 10 April, 2018

Lieb-Schultz-Mattis-type filling constraints in the 1651 magnetic space groups

Haruki Watanabe

Phys. Rev. B 97, 165117 (2018) - Published 11 April, 2018

Knowing the electron filling alone is sometimes sufficient to eliminate the possibility of featureless insulators, since the material with a certain filling must exhibit either spontaneous symmetry breaking with concomitant gapless excitations or fractionalization. The last possibility is theoretically and experimentally the most exciting scenario; it is believed to occur in quantum spin liquids. The absence of magnetic ordering is usually taken as a prerequisite for such exotic phases, but the filling constraint explored in this paper will be a guiding principle in the search for a phase with coexisting topological and magnetic order.

Quantum oscillations in nodal line systems

Hui Yang, Roderich Moessner, and Lih-King Lim

Phys. Rev. B 97, 165118 (2018) - Published 11 April, 2018

Nodal line systems are a new class of three-dimensional topological semimetals of great current interest. They are characterized by energy-band touching that forms a closed loop in momentum space and exhibits a topological π Berry phase in loops linking the nodal line. The authors study their associated magnetic quantum oscillation signatures for Fermi surfaces of various geometries. Landau levels of extremal orbits and their associated Berry phase are computed. They can serve as basic topological signatures in magnetic transport measurement of nodal line systems.

Enhanced pairing susceptibility in a photodoped two-orbital Hubbard model

Philipp Werner, Hugo U. R. Strand, Shintaro Hoshino, Yuta Murakami, and Martin Eckstein

Phys. Rev. B 97, 165119 (2018) - Published 11 April, 2018

Fermi-surface topology of the heavy-fermion system Ce2PtIn8

J. Klotz, K. Götze, E. L. Green, A. Demuer, H. Shishido, T. Ishida, H. Harima, J. Wosnitza, and I. Sheikin

Phys. Rev. B 97, 165120 (2018) - Published 13 April, 2018

Reduction of the ordered magnetic moment and its relationship to Kondo coherence in Ce1xLaxCu2Ge2

B. G. Ueland, N. H. Jo, A. Sapkota, W. Tian, M. Masters, H. Hodovanets, S. S. Downing, C. Schmidt, R. J. McQueeney, S. L. Bud'ko, A. Kreyssig, P. C. Canfield, and A. I. Goldman

Phys. Rev. B 97, 165121 (2018) - Published 13 April, 2018

Coherent detection of THz-induced sideband emission from excitons in the nonperturbative regime

K. Uchida, T. Otobe, T. Mochizuki, C. Kim, M. Yoshita, K. Tanaka, H. Akiyama, L. N. Pfeiffer, K. W. West, and H. Hirori

Phys. Rev. B 97, 165122 (2018) - Published 13 April, 2018

Entanglement negativity bounds for fermionic Gaussian states

Jens Eisert, Viktor Eisler, and Zoltán Zimborás

Phys. Rev. B 97, 165123 (2018) - Published 13 April, 2018

Theory of the disordered ν=52 quantum thermal Hall state: Emergent symmetry and phase diagram

Biao Lian and Juven Wang

Phys. Rev. B 97, 165124 (2018) - Published 16 April, 2018

Charge and current orders in the spin-fermion model with overlapping hot spots

Pavel A. Volkov and Konstantin B. Efetov

Phys. Rev. B 97, 165125 (2018) - Published 16 April, 2018

Recent experiments have revealed a variety of symmetry-breaking phenomena inherent to the pseudogap state of underdoped cuprates. The authors consider emergent phases in a model where the interaction between fermions and antiferromagnetic fluctuations affects two extended regions of the Fermi surface instead of isolated ‘hot spots.’ Surprisingly, this leads to a rich phase diagram including various charge and staggered bond current orders. The uncovered phases share some features with the experimental signatures of the pseudogap state. The results open up perspectives for new types of particle-hole order in itinerant systems with strong spin fluctuations.

Theory-restricted resonant x-ray reflectometry of quantum materials

Katrin Fürsich, Volodymyr B. Zabolotnyy, Enrico Schierle, Lenart Dudy, Ozan Kirilmaz, Michael Sing, Ralph Claessen, Robert J. Green, Maurits W. Haverkort, and Vladimir Hinkov

Phys. Rev. B 97, 165126 (2018) - Published 16 April, 2018

Magnetic excitation and local magnetic susceptibility of the excitonic insulator Ta2NiSe5 investigated by Se77 NMR

Shang Li, Shunsuke Kawai, Yoshiaki Kobayashi, and Masayuki Itoh

Phys. Rev. B 97, 165127 (2018) - Published 17 April, 2018

Link between the photonic and electronic topological phases in artificial graphene

Sylvain Lannebère and Mário G. Silveirinha

Phys. Rev. B 97, 165128 (2018) - Published 18 April, 2018

Deformation and stability of surface states in Dirac semimetals

Mehdi Kargarian, Yuan-Ming Lu, and Mohit Randeria

Phys. Rev. B 97, 165129 (2018) - Published 18 April, 2018

Location of the valence band maximum in the band structure of anisotropic 1TReSe2

P. Eickholt, J. Noky, E. F. Schwier, K. Shimada, K. Miyamoto, T. Okuda, C. Datzer, M. Drüppel, P. Krüger, M. Rohlfing, and M. Donath

Phys. Rev. B 97, 165130 (2018) - Published 18 April, 2018

Multistage electronic nematic transitions in cuprate superconductors: A functional-renormalization-group analysis

Masahisa Tsuchiizu, Kouki Kawaguchi, Youichi Yamakawa, and Hiroshi Kontani

Phys. Rev. B 97, 165131 (2018) - Published 19 April, 2018

Configurational forces in electronic structure calculations using Kohn-Sham density functional theory

Phani Motamarri and Vikram Gavini

Phys. Rev. B 97, 165132 (2018) - Published 20 April, 2018

Scaling of the polarization amplitude in quantum many-body systems in one dimension

Ryohei Kobayashi, Yuya O. Nakagawa, Yoshiki Fukusumi, and Masaki Oshikawa

Phys. Rev. B 97, 165133 (2018) - Published 20 April, 2018

Transient and Sharvin resistances of Luttinger liquids

Thomas Kloss, Joseph Weston, and Xavier Waintal

Phys. Rev. B 97, 165134 (2018) - Published 23 April, 2018

First-order metal-insulator transitions in the extended Hubbard model due to self-consistent screening of the effective interaction

M. Schüler, E. G. C. P. van Loon, M. I. Katsnelson, and T. O. Wehling

Phys. Rev. B 97, 165135 (2018) - Published 23 April, 2018

Matrix product state description of Halperin states

V. Crépel, B. Estienne, B. A. Bernevig, P. Lecheminant, and N. Regnault

Phys. Rev. B 97, 165136 (2018) - Published 23 April, 2018

Effect of anti-site disorder on magnetism in La2NiMnO6

Somnath Pal, Sharada Govinda, Manik Goyal, Soham Mukherjee, Banabir Pal, Rana Saha, A. Sundaresan, Somnath Jana, Olof Karis, John W. Freeland, and D. D. Sarma

Phys. Rev. B 97, 165137 (2018) - Published 25 April, 2018

Time-dependent generalized Gibbs ensembles in open quantum systems

Florian Lange, Zala Lenarčič, and Achim Rosch

Phys. Rev. B 97, 165138 (2018) - Published 26 April, 2018

Hanle model of a spin-orbit coupled Bose-Einstein condensate of excitons in semiconductor quantum wells

S. V. Andreev and A. V. Nalitov

Phys. Rev. B 97, 165139 (2018) - Published 26 April, 2018

Projective truncation approximation for equations of motion of two-time Green's functions

Peng Fan, Ke Yang, Kou-Han Ma, and Ning-Hua Tong

Phys. Rev. B 97, 165140 (2018) - Published 27 April, 2018

Gapless topological order, gravity, and black holes

Alex Rasmussen and Adam S. Jermyn

Phys. Rev. B 97, 165141 (2018) - Published 30 April, 2018

Photoinduced half-integer quantized conductance plateaus in topological-insulator/superconductor heterostructures

Han Hoe Yap, Longwen Zhou, Ching Hua Lee, and Jiangbin Gong

Phys. Rev. B 97, 165142 (2018) - Published 30 April, 2018

Filling-driven Mott transition in SU(N) Hubbard models

Seung-Sup B. Lee, Jan von Delft, and Andreas Weichselbaum

Phys. Rev. B 97, 165143 (2018) - Published 30 April, 2018

Semiconductors I: bulk

Photophysics of GaN single-photon emitters in the visible spectral range

Amanuel M. Berhane, Kwang-Yong Jeong, Carlo Bradac, Michael Walsh, Dirk Englund, Milos Toth, and Igor Aharonovich

Phys. Rev. B 97, 165202 (2018) - Published 12 April, 2018

Anisotropy and phonon modes from analysis of the dielectric function tensor and the inverse dielectric function tensor of monoclinic yttrium orthosilicate

A. Mock, R. Korlacki, S. Knight, and M. Schubert

Phys. Rev. B 97, 165203 (2018) - Published 17 April, 2018

Multimode Jahn-Teller effect in bulk systems: A case of the NV0 center in diamond

Jianhua Zhang, Cai-Zhuang Wang, Zizhong Zhu, Qing Huo Liu, and Kai-Ming Ho

Phys. Rev. B 97, 165204 (2018) - Published 18 April, 2018

Electro-optical properties of Cu2O for P excitons in the regime of Franz-Keldysh oscillations

Sylwia Zielińska-Raczyńska, David Ziemkiewicz, and Gerard Czajkowski

Phys. Rev. B 97, 165205 (2018) - Published 19 April, 2018

Spin-lattice relaxation of optically polarized nuclei in p-type GaAs

M. Kotur, R. I. Dzhioev, M. Vladimirova, R. V. Cherbunin, P. S. Sokolov, D. R. Yakovlev, M. Bayer, D. Suter, and K. V. Kavokin

Phys. Rev. B 97, 165206 (2018) - Published 24 April, 2018

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

Pairing-dependent superconductivity gap and nonholonomic Andreev reflection in Weyl semimetal/Weyl superconductor heterojunctions

Jun Fang, Wenye Duan, Junfeng Liu, Chao Zhang, and Zhongshui Ma

Phys. Rev. B 97, 165301 (2018) - Published 4 April, 2018

Two-terminal charge tunneling: Disentangling Majorana zero modes from partially separated Andreev bound states in semiconductor-superconductor heterostructures

Christopher Moore, Tudor D. Stanescu, and Sumanta Tewari

Phys. Rev. B 97, 165302 (2018) - Published 6 April, 2018

Electrical control of a confined electron spin in a silicene quantum dot

Bartłomiej Szafran, Alina Mreńca-Kolasińska, Bartłomiej Rzeszotarski, and Dariusz Żebrowski

Phys. Rev. B 97, 165303 (2018) - Published 9 April, 2018

Hybrid k·p tight-binding model for intersubband optics in atomically thin InSe films

S. J. Magorrian, A. Ceferino, V. Zólyomi, and V. I. Fal'ko

Phys. Rev. B 97, 165304 (2018) - Published 12 April, 2018

Bogolon-mediated electron capture by impurities in hybrid Bose-Fermi systems

M. V. Boev, V. M. Kovalev, and I. G. Savenko

Phys. Rev. B 97, 165305 (2018) - Published 13 April, 2018

Interlayer excitons in MoSe2/WSe2 heterostructures from first principles

Roland Gillen and Janina Maultzsch

Phys. Rev. B 97, 165306 (2018) - Published 16 April, 2018

Temperature effect on the coupling between coherent longitudinal phonons and plasmons in n-type and p-type GaAs

Jianbo Hu, Hang Zhang, Yi Sun, Oleg V. Misochko, and Kazutaka G. Nakamura

Phys. Rev. B 97, 165307 (2018) - Published 25 April, 2018

Current rectification in a double quantum dot through fermionic reservoir engineering

Daniel Malz and Andreas Nunnenkamp

Phys. Rev. B 97, 165308 (2018) - Published 27 April, 2018

Surface physics, nanoscale physics, low-dimensional systems

Tuning Rashba spin-orbit coupling in homogeneous semiconductor nanowires

Paweł Wójcik, Andrea Bertoni, and Guido Goldoni

Phys. Rev. B 97, 165401 (2018) - Published 2 April, 2018

Trends on band alignments: Validity of Anderson's rule in SnS2- and SnSe2-based van der Waals heterostructures

Daniel S. Koda, Friedhelm Bechstedt, Marcelo Marques, and Lara K. Teles

Phys. Rev. B 97, 165402 (2018) - Published 3 April, 2018

Modeling the physisorption of graphene on metals

Jianmin Tao, Hong Tang, Abhirup Patra, Puskar Bhattarai, and John P. Perdew

Phys. Rev. B 97, 165403 (2018) - Published 4 April, 2018

Preserving half-metallic surface states in CrO2: Insights into surface reconstruction rules

Bei Deng, X. Q. Shi, L. Chen, and S. Y. Tong

Phys. Rev. B 97, 165404 (2018) - Published 4 April, 2018

Efficient method for computing the electronic transport properties of a multiterminal system

Leandro R. F. Lima, Amintor Dusko, and Caio Lewenkopf

Phys. Rev. B 97, 165405 (2018) - Published 4 April, 2018

Resistivity scaling due to electron surface scattering in thin metal layers

Tianji Zhou and Daniel Gall

Phys. Rev. B 97, 165406 (2018) - Published 5 April, 2018

Spin-resolved electron waiting times in a quantum-dot spin valve

Gaomin Tang, Fuming Xu, Shuo Mi, and Jian Wang

Phys. Rev. B 97, 165407 (2018) - Published 5 April, 2018

Realistic picture of helical edge states in HgTe quantum wells

S. S. Krishtopenko and F. Teppe

Phys. Rev. B 97, 165408 (2018) - Published 6 April, 2018

Layer-dependent second-order Raman intensity of MoS2 and WSe2: Influence of intervalley scattering

Qingkai Qian, Zhaofu Zhang, and Kevin J. Chen

Phys. Rev. B 97, 165409 (2018) - Published 9 April, 2018

Temperature-driven evolution of critical points, interlayer coupling, and layer polarization in bilayer MoS2

Luojun Du, Tingting Zhang, Mengzhou Liao, Guibin Liu, Shuopei Wang, Rui He, Zhipeng Ye, Hua Yu, Rong Yang, Dongxia Shi, Yugui Yao, and Guangyu Zhang

Phys. Rev. B 97, 165410 (2018) - Published 9 April, 2018

Electronic properties of one-dimensional nanostructures of the Bi2Se3 topological insulator

Naunidh Virk, Gabriel Autès, and Oleg V. Yazyev

Phys. Rev. B 97, 165411 (2018) - Published 9 April, 2018

All-optical in-depth detection of the acoustic wave emitted by a single gold nanorod

Feng Xu, Yannick Guillet, Serge Ravaine, and Bertrand Audoin

Phys. Rev. B 97, 165412 (2018) - Published 9 April, 2018

Excitation and characterization of image potential state electrons on quasi-free-standing graphene

Yi Lin, Yunzhe Li, Jerzy T. Sadowski, Wencan Jin, Jerry I. Dadap, Mark S. Hybertsen, and Richard M. Osgood, Jr.

Phys. Rev. B 97, 165413 (2018) - Published 9 April, 2018

Anomalous Hall effect in the van der Waals bonded ferromagnet Fe3xGeTe2

Yu Liu (刘育), Eli Stavitski, Klaus Attenkofer, and C. Petrovic

Phys. Rev. B 97, 165415 (2018) - Published 9 April, 2018

Mapping momentum-dependent electron-phonon coupling and nonequilibrium phonon dynamics with ultrafast electron diffuse scattering

Mark J. Stern, Laurent P. René de Cotret, Martin R. Otto, Robert P. Chatelain, Jean-Philippe Boisvert, Mark Sutton, and Bradley J. Siwick

Phys. Rev. B 97, 165416 (2018) - Published 12 April, 2018

The nature of the coupling within and between lattice and charge degrees of freedom is central to condensed matter and materials physics. However, these interactions have so far resisted a comprehensive time-resolved experimental investigation. The authors demonstrate that ultrafast electron diffuse scattering provides direct, momentum-resolved measurements of the electron-phonon and phonon-phonon coupling strengths in graphite. Through the technique’s ability to follow individual phonon population dynamics with femtosecond time resolution, this method, complimented by angle-resolved photoemission spectroscopy, can provide a complete picture of the dynamics within and between electron and phonon subsystems, and help unravel the physics of complex phases where the intertwined nature of the electron-lattice systems determine material properties.

Computational study of the shift of the G band of double-walled carbon nanotubes due to interlayer interactions

Valentin N. Popov, Dmitry I. Levshov, Jean-Louis Sauvajol, and Matthieu Paillet

Phys. Rev. B 97, 165417 (2018) - Published 12 April, 2018

Inelastic vibrational bulk and surface losses of swift electrons in ionic nanostructures

Ulrich Hohenester, Andreas Trügler, Philip E. Batson, and Maureen J. Lagos

Phys. Rev. B 97, 165418 (2018) - Published 13 April, 2018

Complexes of dipolar excitons in layered quasi-two-dimensional nanostructures

Igor V. Bondarev and Maria R. Vladimirova

Phys. Rev. B 97, 165419 (2018) - Published 16 April, 2018

Electrochemical capacitance modulation in an interacting mesoscopic capacitor induced by internal charge transfer

Wei Liu, Jianhong He, Huazhong Guo, and Jie Gao

Phys. Rev. B 97, 165420 (2018) - Published 16 April, 2018

Probing quasi-one-dimensional band structures by plasmon spectroscopy

T. Lichtenstein, Z. Mamiyev, C. Braun, S. Sanna, W. G. Schmidt, C. Tegenkamp, and H. Pfnür

Phys. Rev. B 97, 165421 (2018) - Published 17 April, 2018

Strong modification of thin film properties due to screening across the interface

S. G. Altendorf, A. Reisner, B. Tam, F. Meneghin, S. Wirth, and L. H. Tjeng

Phys. Rev. B 97, 165422 (2018) - Published 17 April, 2018

Nonlocal response with local optics

Jiantao Kong, Alexander J. Shvonski, and Krzysztof Kempa

Phys. Rev. B 97, 165423 (2018) - Published 19 April, 2018

Optical Kerr effect in graphene: Theoretical analysis of the optical heterodyne detection technique

N. A. Savostianova and S. A. Mikhailov

Phys. Rev. B 97, 165424 (2018) - Published 19 April, 2018

Metallization of a Rashba wire by a superconducting layer in the strong-proximity regime

Christopher Reeg, Daniel Loss, and Jelena Klinovaja

Phys. Rev. B 97, 165425 (2018) - Published 19 April, 2018

Topological phase transitions and quantum Hall effect in the graphene family

P. Ledwith, W. J. M. Kort-Kamp, and D. A. R. Dalvit

Phys. Rev. B 97, 165426 (2018) - Published 20 April, 2018

Photonic engineering of highly linearly polarized quantum dot emission at telecommunication wavelengths

P. Mrowiński, M. Emmerling, C. Schneider, J. P. Reithmaier, J. Misiewicz, S. Höfling, and G. Sęk

Phys. Rev. B 97, 165427 (2018) - Published 20 April, 2018

Control of two-dimensional electronic states at anatase TiO2(001) surface by K adsorption

R. Yukawa, M. Minohara, D. Shiga, M. Kitamura, T. Mitsuhashi, M. Kobayashi, K. Horiba, and H. Kumigashira

Phys. Rev. B 97, 165428 (2018) - Published 23 April, 2018

Tuning transport properties of graphene three-terminal structures by mechanical deformation

V. Torres, D. Faria, and A. Latgé

Phys. Rev. B 97, 165429 (2018) - Published 23 April, 2018

Modulation of Kekulé adatom ordering due to strain in graphene

L. González-Árraga, F. Guinea, and P. San-Jose

Phys. Rev. B 97, 165430 (2018) - Published 23 April, 2018

Quantum mechanical treatment of large spin baths

Robin Röhrig, Philipp Schering, Lars B. Gravert, Benedikt Fauseweh, and Götz S. Uhrig

Phys. Rev. B 97, 165431 (2018) - Published 23 April, 2018

Quest for Casimir repulsion between Chern-Simons surfaces

Ignat Fialkovsky, Nail Khusnutdinov, and Dmitri Vassilevich

Phys. Rev. B 97, 165432 (2018) - Published 24 April, 2018

Enhancing the nonlinear thermoelectric response of a correlated quantum dot in the Kondo regime by asymmetrical coupling to the leads

Diego Pérez Daroca, Pablo Roura-Bas, and Armando A. Aligia

Phys. Rev. B 97, 165433 (2018) - Published 25 April, 2018

Universal Majorana thermoelectric noise

Sergey Smirnov

Phys. Rev. B 97, 165434 (2018) - Published 26 April, 2018

Quasiparticle interference of Fermi arc states in the type-II Weyl semimetal candidate WTe2

Yuan Yuan, Xing Yang, Lang Peng, Zhi-Jun Wang, Jian Li, Chang-Jiang Yi, Jing-Jing Xian, You-Guo Shi, and Ying-Shuang Fu

Phys. Rev. B 97, 165435 (2018) - Published 26 April, 2018

Using spiral chain models for study of nanoscroll structures

Alexander V. Savin, Ruslan A. Sakovich, and Mikhail A. Mazo

Phys. Rev. B 97, 165436 (2018) - Published 26 April, 2018

Surface-mode-assisted amplification of radiative heat transfer between nanoparticles

Riccardo Messina, Svend-Age Biehs, and Philippe Ben-Abdallah

Phys. Rev. B 97, 165437 (2018) - Published 27 April, 2018

Ab initio study of the electron-phonon coupling at the Cr(001) surface

L. Peters, A. N. Rudenko, and M. I. Katsnelson

Phys. Rev. B 97, 165438 (2018) - Published 30 April, 2018

Reinvestigating the surface and bulk electronic properties of Cd3As2

S. Roth, H. Lee, A. Sterzi, M. Zacchigna, A. Politano, R. Sankar, F. C. Chou, G. Di Santo, L. Petaccia, O. V. Yazyev, and A. Crepaldi

Phys. Rev. B 97, 165439 (2018) - Published 30 April, 2018

Cd3As2 with its linearly dispersing bulk state is generally considered an archetype of the three-dimensional Dirac semimetal phase. The present investigation of its electronic properties calls for a revision of this crude assumption. Indeed, Cd3As2 exhibits both a surface state and two bulk bands, dispersing across the Fermi level. Hence, all these states must contribute to the unique material electrical transport properties, but with very different effective masses, band velocities, and different binding energies with respect to the chemical potential. This results in possible ambipolar charge carrier transport at the surface.

Sign In to Your Journals Account

Filter

Filter

Article Lookup

Enter a citation