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Topological entanglement entropy of interacting disordered zigzag graphene ribbons

Published 27 Nov 2020 in cond-mat.str-el, cond-mat.mes-hall, hep-th, and quant-ph | (2011.13720v2)

Abstract: Interacting disordered zigzag graphene nanoribbons have fractional charges, are quasi-one-dimensional, and display an exponentially small gap. Our numerical computations showed that the topological entanglement entropy of these systems has a small finite but universal value, independent of the strength of the interaction and the disorder. The result that was obtained for the topological entanglement entropy shows that the disorder-free phase is critical and becomes unstable in the presence of disorder.

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