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arxiv: 1003.2347 · v2 · submitted 2010-03-11 · ❄️ cond-mat.stat-mech · cond-mat.quant-gas· quant-ph

Nonequivalence of ensembles for long-range quantum spin systems in optical lattices

classification ❄️ cond-mat.stat-mech cond-mat.quant-gasquant-ph
keywords long-rangemicrocanonicalmodelopticalensembleslatticequantumanisotropic
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Motivated by the anisotropic long-range nature of the interactions between cold dipolar atoms or molecules in an optical lattice, we study the anisotropic quantum Heisenberg model with Curie-Weiss-type long-range interactions. Absence of a heat bath in optical lattice experiments suggests a study of this model within the microcanonical ensemble. The microcanonical entropy is calculated analytically, and nonequivalence of microcanonical and canonical ensembles is found for a range of anisotropy parameters. From the shape of the entropy it follows that the Curie-Weiss Heisenberg model is indistinguishable from the Curie-Weiss Ising model in canonical thermodynamics, although their microcanonical thermodynamics differs. Qualitatively, the observed features of nonequivalent ensembles are expected to be relevant for long-range quantum spin systems realized in optical lattice experiments.

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