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Entanglement Entropy of a Massive Fermion on a Torus

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arxiv 1301.0336 v1 pith:CUNAPSFN submitted 2013-01-02 hep-th cond-mat.stat-mechquant-ph

classification hep-thcond-mat.stat-mechquant-ph
keywords entropiesfermionmassiverenyibosonizationcorrectionsdiracentanglement
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The Renyi entropies of a massless Dirac fermion on a circle with chemical potential are calculated analytically at nonzero temperature by using the bosonization method. The bosonization of a massive Dirac fermion to the sine-Gordon model lets us obtain the small mass corrections to the entropies. We numerically compute the Renyi entropies by putting a massive fermion on the lattice and find agreement between the analytic and numerical results. In the presence of a mass gap, we show that corrections to Renyi and entanglement entropies in the limit m >> T scale as exp(-m/T). We also show that when there is ground state degeneracy in the gapless case, the limits m to zero and T to zero do not commute.

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  1. Entanglement of a chiral scalar on the torus

    hep-th 2024-12 conditional novelty 6.0 of 10

    The authors derive the exact resolvent and entanglement entropy for a chiral scalar on a circle at arbitrary temperature, reproducing known plane and cylinder limits.

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