Title of article :
Electronic properties of graphene with a topological defect Original Research Article
Author/Authors :
Yu.A. Sitenko، نويسنده , , N.D. Vlasii، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2007
Abstract :
Various types of topological defects in graphene are considered in the framework of the continuum model for long-wavelength electronic excitations, which is based on the Dirac–Weyl equation. The condition for the electronic wave function is specified, and we show that a topological defect can be presented as a pseudomagnetic vortex at the apex of a graphitic nanocone; the flux of the vortex is related to the deficit angle of the cone. The cases of all possible types of pentagonal defects, as well as several types of heptagonal defects (with the numbers of heptagons up to three, and six) are analyzed. The density of states and the ground state charge are determined.
Keywords :
Self-adjoint extension , Density of states , Dirac–Weyl equation , Graphitic nanocones , Vortex , Disclinations
Journal title :
Nuclear Physics B
Journal title :
Nuclear Physics B