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      Spin qubits in graphene quantum dots

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          Abstract

          We propose how to form spin qubits in graphene. A crucial requirement to achieve this goal is to find quantum dot states where the usual valley degeneracy in bulk graphene is lifted. We show that this problem can be avoided in quantum dots based on ribbons of graphene with semiconducting armchair boundaries. For such a setup, we find the energies and the exact wave functions of bound states, which are required for localized qubits. Additionally, we show that spin qubits in graphene can not only be coupled between nearest neighbor quantum dots via Heisenberg exchange interaction but also over long distances. This remarkable feature is a direct consequence of the quasi-relativistic spectrum of graphene.

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          Author and article information

          Journal
          09 November 2006
          2007-01-19
          Article
          10.1038/nphys544
          cond-mat/0611252
          5e87a608-af66-417b-9f7a-d8be76175ac6
          History
          Custom metadata
          Nature Phys. 3, 192 (2007)
          10 pages, 9 figures
          cond-mat.mes-hall

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