نتایج جستجو برای: dirac structure

تعداد نتایج: 1584028  

2008
Jayme Vaz

In this paper we show how to construct a Dirac operator on a lattice in complete analogy with the continuum. In fact we consider a more general problem, that is, the Dirac operator over an abelian finite group (for which a lattice is a particular example). Our results appear to be in direct connexion with the so called fermion doubling problem. In order to find this Dirac operator we need to in...

Journal: :Journal of physics. Condensed matter : an Institute of Physics journal 2015
Ş Kuru J Negro S Tristao

The aim of this article was to study the degeneracy of the energy spectrum in a nanotube under a transverse magnetic field. The massless Dirac-Weyl equation has been used to describe the low energy states of this system. The particular case of a singular magnetic field approximated by Dirac delta distributions is considered. It is shown that, under general symmetry conditions, there is a double...

Journal: :The journal of physical chemistry letters 2018
Aizhu Wang Xinrui Zhao Mingwen Zhao Xiaoming Zhang Yuanping Feng Feng Liu

Massless Kane fermions revealed in zinc-blende semiconductors have recently gained interest in the broad study of relativistic materials. In particular, two-dimensional (2D) Kane fermions were expected to be hybrids of pseudospin-1 and -1/2 Dirac fermions. Based on first-principles calculations, we demonstrated that 2D Kane fermions can be realized in a recently synthesized metal-organic framew...

2016
Kefeng Wang C. Petrovic

We report quasi-two-dimensional Dirac fermions and quantum magnetoresistance in LaAgBi2. The band structure shows several narrow bands with nearly linear energy dispersion and Diraccone-like points at the Fermi level. The quantum oscillation experiments revealed one quasi-twodimensional Fermi pocket and another complex pocket with small cyclotron resonant mass. The in-plane transverse magnetore...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2015
Inhee Lee Chung Koo Kim Jinho Lee Simon J L Billinge Ruidan Zhong John A Schneeloch Tiansheng Liu Tonica Valla John M Tranquada Genda Gu J C Séamus Davis

To achieve and use the most exotic electronic phenomena predicted for the surface states of 3D topological insulators (TIs), it is necessary to open a "Dirac-mass gap" in their spectrum by breaking time-reversal symmetry. Use of magnetic dopant atoms to generate a ferromagnetic state is the most widely applied approach. However, it is unknown how the spatial arrangements of the magnetic dopant ...

2015
Ling Lu Chen Fang Liang Fu Steven G. Johnson John D. Joannopoulos Marin Soljačić

A single Dirac cone on the surface is the hallmark of three-dimensional (3D) topological insulators, where the double degeneracy at the Dirac point is protected by time-reversal symmetry and the spin-splitting away from the point is provided by the spin-orbital coupling. Here we predict a single Dirac-cone surface state in a 3D photonic crystal, where the degeneracy at the Dirac point is protec...

2012
C. T. Chan X. Huang F. Liu Z. H. Hang

We show that by applying accidental degeneracy, we can obtain a triply-degenerate state at the zone center in the band diagram of two dimensional (2D) photonic crystal. The dispersion near the zone center comprises two linear bands and an additional flat band crossing at the same frequency. If this triply-degenerate state is formed by the degeneracy of monopole and dipole excitations, we show t...

Journal: :Journal of physics. Condensed matter : an Institute of Physics journal 2012
Bo Wang C Zhang Zhongshui Ma

We demonstrate that the trigonal warping observed in bilayer graphene is doubled in the presence of Rashba spin-orbit (RSO) coupling, i.e. the Dirac points along the three-fold symmetry axis are doubled. There are now seven Dirac points. Furthermore, the RSO interaction breaks the electron-hole symmetry of the magnetic band structure. The most intriguing feature is that the step of the quantum ...

Journal: :Nature communications 2016
Lukas Zhao Marcin Konczykowski Haiming Deng Inna Korzhovska Milan Begliarbekov Zhiyi Chen Evangelos Papalazarou Marino Marsi Luca Perfetti Andrzej Hruban Agnieszka Wołoś Lia Krusin-Elbaum

Topological insulators are potentially transformative quantum solids with metallic surface states which have Dirac band structure and are immune to disorder. Ubiquitous charged bulk defects, however, pull the Fermi energy into the bulk bands, denying access to surface charge transport. Here we demonstrate that irradiation with swift (∼2.5 MeV energy) electron beams allows to compensate these de...

2013
Pierre Delplace Álvaro Gómez-León Gloria Platero

We investigate the effect of an in-plane ac electric field coupled to electrons in the honeycomb lattice and show that it can be used to manipulate the Dirac points of the electronic structure. We find that the position of the Dirac points can be controlled by the amplitude and the polarization of the field for high-frequency drivings, providing a new platform to achieve their merging, a topolo...

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