arXiv · 1105.5467
Berry Phase and Traversal Time in Asymmetric Graphene Structures
Abstract
The Berry phase and the group-velocity-based traversal time have been calculated for an asymmetric non-contacted or contacted graphene structure, and significant differences have been observed compared to semiconductor heterostructures. These differences are related to the specific, Dirac-like evolution law of charge carriers in graphene, which introduces a new type of asymmetry. When contacted with electrodes, the symmetry of the Dirac equation is broken by the Schrodinger-type electrons in contacts, so that the Berry phase and traversal time behavior in contacted and non-contacted graphene differ significantly.
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Daniela Dragoman. 2011-05-27. Berry Phase and Traversal Time in Asymmetric Graphene Structures. https://doi.org/10.1016/j.physe.2011.12.015
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