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Topological entanglement entropy of interacting disordered zigzag graphene ribbons

机译:互乱无序曲折石墨烯带的拓扑纠缠熵

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摘要

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. Our result for the entanglement spectrum in the presence of disorder is also consistent with the presence of a topologically ordered phase.
机译:相互作用无序的Zig形石墨烯纳米有分数电荷,是准一维的,并且显示指数小的间隙。 我们的数值计算表明,这些系统的拓扑纠缠熵具有小的有限但普遍值,与相互作用和疾病的强度无关。 为拓扑纠缠熵获得的结果表明,无紊乱的阶段是至关重要的并且在病症存在下变得不稳定。 我们在存在下存在的缠结光谱的结果也与拓扑有序相的存在相一致。

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