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September 13, 2006Physical Review Letters106 citationsOpen Access

Luttinger Liquid at the Edge of Undoped Graphene in a Strong Magnetic Field

HFH. A. FertigLBL. Brey

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Abstract

We demonstrate that an undoped two-dimensional carbon plane (graphene) whose bulk is in the integer quantum Hall regime supports a nonchiral Luttinger liquid at an armchair edge. This behavior arises due to the unusual dispersion of the noninteracting edge states, causing a crossing of bands with different valley and spin indices at the edge. We demonstrate that this stabilizes a domain wall structure with a spontaneously ordered phase degree of freedom. This coherent domain wall supports gapless charged excitations, and has a power law tunneling I-V with a nonintegral exponent. In proximity to a bulk lead, the edge may undergo a quantum phase transition between the Luttinger liquid phase and a metallic state.

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Fertig et al. (2006) studied this question.

synapsesocial.com/papers/69d90149183921ebcaae458chttps://doi.org/10.1103/physrevlett.97.116805
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