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arxiv: 0909.5638 · v2 · pith:STCRCJDQnew · submitted 2009-09-30 · ❄️ cond-mat.stat-mech

Microcanonical entropy of the spherical model with nearest-neighbour interactions

classification ❄️ cond-mat.stat-mech
keywords microcanonicalentropysphericalcanonicalconcaveinteractionsmodelnearest-neighbour
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For the spherical model with nearest-neighbour interactions, the microcanonical entropy s(e,m) is computed analytically in the thermodynamic limit for all accessible values of the energy e and the magnetization m per spin. The entropy function is found to be concave (albeit not strictly concave), implying that the microcanonical and the canonical ensembles are equivalent, despite the long-range nature of the spherical constraint the spins have to obey. Two transition lines are identified in the (e,m)-plane, separating a paramagnetic phase from a ferromagnetic and an antiferromagnetic one. The resulting microcanonical phase diagram is compared to the more familiar canonical one.

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