Anisotropy induced localization of pseudo-relativistic spin states in graphene double quantum wire structures

作者:Villegas Cesar E P*; Tavares Marcos R S; Marques G E
来源:Nanotechnology, 2010, 21(36): 365401.
DOI:10.1088/0957-4484/21/36/365401

摘要

We study the single-particle properties of Dirac Fermions confined to a double quantum wire system based on graphene. We map out the spatial regions where electrons in a given subband display the largest occupation probability induced by spatial anisotropic effects associated to the interaction strength between the graphene wires and the substrate. Here, the graphene-substrate interaction is considered as an ad hoc parameter which destroys the zero-gap observed in the relativistic Dirac cone characteristic of graphene electronic energy dispersions. Furthermore, the results indicate that the character of quasi-extended spin states, viewed by multisubband probability density function, is highly sensitive to spatial asymmetries and to the graphene-substrate interaction strength.

  • 出版日期2010-9-10