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Scaling of the Rényi entropies in gapped quantum spin systems: Entanglement-driven order beyond symmetry breaking

Published 3 Aug 2012 in cond-mat.str-el, cond-mat.stat-mech, and quant-ph | (1208.0735v1)

Abstract: We investigate the scaling of the R\'enyi $\alpha$-entropies in one-dimensional gapped quantum spin models. We show that the block entropies with $\alpha > 2$ violate the area law monotonicity and exhibit damped oscillations. Depending on the existence of a factorized ground state, the oscillatory behavior occurs either below factorization or it extends indefinitely. The anomalous scaling corresponds to an entanglement-driven order that is independent of ground-state degeneracy and is revealed by a nonlocal order parameter defined as the sum of the single-copy entanglement over all blocks.

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