نتایج جستجو برای: dirac semimetal

تعداد نتایج: 20016  

Journal: :Physical review letters 2018
Timo Schumann Luca Galletti David A Kealhofer Honggyu Kim Manik Goyal Susanne Stemmer

The magnetotransport properties of epitaxial films of Cd_{3}As_{2}, a paradigm three-dimensional Dirac semimetal, are investigated. We show that an energy gap opens in the bulk electronic states of sufficiently thin films and, at low temperatures, carriers residing in surface states dominate the electrical transport. The carriers in these states are sufficiently mobile to give rise to a quantiz...

2013
T. P. Kaloni M. Tahir U. Schwingenschlögl

We study a superlattice of silicene and hexagonal boron nitride by first principles calculations and demonstrate that the interaction between the layers of the superlattice is very small. As a consequence, quasi free-standing silicene is realized in this superlattice. In particular, the Dirac cone of silicene is preserved. Due to the wide band gap of hexagonal boron nitride, the superlattice re...

2017
Jayita Nayak Shu-Chun Wu Nitesh Kumar Chandra Shekhar Sanjay Singh Jörg Fink Emile E D Rienks Gerhard H Fecher Stuart S P Parkin Binghai Yan Claudia Felser

The rare-earth monopnictide LaBi exhibits exotic magneto-transport properties, including an extremely large and anisotropic magnetoresistance. Experimental evidence for topological surface states is still missing although band inversions have been postulated to induce a topological phase in LaBi. In this work, we have revealed the existence of surface states of LaBi through the observation of t...

2012
S. Banerjee W. E. Pickett

We extend the semiclassical study of fermionic particle-hole symmetric semi-Dirac (more appropriately, semiDirac semi-Weyl) dispersion of quasiparticles, εK = ± √ (k2 x/2m) + (vky)) = ±ε0 √ K4 x +K2 y in dimensionless units, discovered computationally in oxide heterostructures by Pardo and collaborators. This unique system is a highly anisotropic sister phase of both (symmetric) graphene and wh...

2016
Philip J W Moll Andrew C Potter Nityan L Nair B J Ramshaw K A Modic Scott Riggs Bin Zeng Nirmal J Ghimire Eric D Bauer Robert Kealhofer Filip Ronning James G Analytis

Electrons in materials with linear dispersion behave as massless Weyl- or Dirac-quasiparticles, and continue to intrigue due to their close resemblance to elusive ultra-relativistic particles as well as their potential for future electronics. Yet the experimental signatures of Weyl-fermions are often subtle and indirect, in particular if they coexist with conventional, massive quasiparticles. H...

2015
Junzhi Cao Sihang Liang Cheng Zhang Yanwen Liu Junwei Huang Zhao Jin Zhi-Gang Chen Zhijun Wang Qisi Wang Jun Zhao Shiyan Li Xi Dai Jin Zou Zhengcai Xia Liang Li Faxian Xiu

Three-dimensional topological Dirac semimetals (TDSs) are a new kind of Dirac materials that exhibit linear energy dispersion in the bulk and can be viewed as three-dimensional graphene. It has been proposed that TDSs can be driven to other exotic phases like Weyl semimetals, topological insulators and topological superconductors by breaking certain symmetries. Here we report the first transpor...

Journal: :CoRR 2017
Andreas Pieper Georg Hager Holger Fehske

We introduce PVSC-DTM, a highly parallel and SIMD-vectorized library and code generator based on a domain-specific language tailored to implement the specific stencil-like algorithms that can describe Dirac and topological materials such as graphene and topological insulators in a matrix-free way. The generated hybrid-parallel (MPI+OpenMP) code is significantly faster than matrix-based approach...

Journal: :Science 2014
Z K Liu B Zhou Y Zhang Z J Wang H M Weng D Prabhakaran S-K Mo Z X Shen Z Fang X Dai Z Hussain Y L Chen

Three-dimensional (3D) topological Dirac semimetals (TDSs) represent an unusual state of quantum matter that can be viewed as "3D graphene." In contrast to 2D Dirac fermions in graphene or on the surface of 3D topological insulators, TDSs possess 3D Dirac fermions in the bulk. By investigating the electronic structure of Na3Bi with angle-resolved photoemission spectroscopy, we detected 3D Dirac...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2017
Silu Huang Jisun Kim W A Shelton E W Plummer Rongying Jin

The subject of topological materials has attracted immense attention in condensed-matter physics because they host new quantum states of matter containing Dirac, Majorana, or Weyl fermions. Although Majorana fermions can only exist on the surface of topological superconductors, Dirac and Weyl fermions can be realized in both 2D and 3D materials. The latter are semimetals with Dirac/Weyl cones e...

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