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On the Mean-Field Spherical Model
Authors:Michael Kastner  Oliver Schnetz
Affiliation:1. Physikalisches Institut, Lehrstuhl für Theoretische Physik I, Universit?t Bayreuth, 95440, Bayreuth, Germany
2. Institut für Theoretische Physik III, Friedrich-Alexander-Universit?t Erlangen-Nürnberg, Staudtstra?e 7, 91058, Erlangen, Germany
Abstract:Exact solutions are obtained for the mean-field spherical model, with or without an external magnetic field, for any finite or infinite number N of degrees of freedom, both in the microcanonical and in the canonical ensemble. The canonical result allows for an exact discussion of the loci/ of the Fisher zeros of the canonical partition function. The microcanonical entropy is found to be nonanalytic for arbitrary finite N. The mean-field spherical model of finite size N is shown to be equivalent to a mixed isovector/isotensor σ-model on a lattice of two sites. Partial equivalence of statistical ensembles is observed for the mean-field spherical model in the thermodynamic limit. A discussion of the topology of certain state space submanifolds yields insights into the relation of these topological quantities to the thermodynamic behavior of the system in the presence of ensemble nonequivalence.
Keywords:Phase transitions  Spherical model  Microcanonical  Canonical  Ensemble nonequivalence  Partial equivalence  Fisher zeros of the partition function       N  1 σ  -model  Mixed isovector/isotensor σ  -model  Model equivalence  Topological approach
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