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arXiv:1109.4608 [cond-mat.mes-hall]AbstractReferencesReviewsResources

The Zak phase and the existence of edge states in graphene

P. Delplace, D. Ullmo, G. Montambaux

Published 2011-09-21Version 1

We develop a method to predict the existence of edge states in graphene ribbons for a large class of boundaries. This approach is based on the bulk-edge correspondence between the quantized value of the Zak phase Z(k), which is a Berry phase across an appropriately chosen one-dimensional Brillouin zone, and the existence of a localized state of momentum k at the boundary of the ribbon. This bulk-edge correspondence is rigorously demonstrated for a one dimensional toy model as well as for graphene ribbons with zigzag edges. The range of k for which edge states exist in a graphene ribbon is then calculated for arbitrary orientations of the edges. Finally, we show that the introduction of an anisotropy leads to a topological transition in terms of the Zak phase, which modifies the localization properties at the edges. Our approach gives a new geometrical understanding of edge states, it con?firms and generalizes the results of several previous works.

Comments: 14 pages, 19 figures
Journal: Phys. Rev. B 84, 195452 (2011)
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