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Statistical Multifragmentation in Thermodynamical Limit: An Exact Solution for Phase Transitions

2001/03/28 by K. A. Bugaev, M. I. Gorenstein, Bugaev, K. A. +6 · 2 citations
Chemistry · Materials Science · Physics and Astronomy · #Chemical Thermodynamics and Molecular Structure #Material Properties and Failure Mechanisms #Statistical Mechanics and Entropy #nucl-th

paper · pdf · doi:10.48550/arxiv.nucl-th/0103075

Proceedings of conference ``Quark Matter in Astro- and Particle Physics'', Rostock, Germany, November 27--29, 2000

arxiv created 2001/03/28 · arxiv updated 2009/12/01

Abstract

An exact analytical solution of the statistical multifragmentation model is found in thermodynamic limit. Excluded volume effects are taken into account in the thermodynamically self-consistent way. The model exhibits a 1-st order phase transition of the liquid-gas type. An extension of the model including the Fisher's term is also studied. The possibility of the second order phase transition at or above the critical point is discussed. The mixed phase region of the phase diagram, where the gas of nuclear fragments coexists with the infinite liquid condensate, is unambiguously identified. The peculiar thermodynamic properties of the model near the boundary between the mixed phase and the pure gaseous phase are studied. The results for the caloric curve and specific heat are presented and a physical picture of the nuclear liquid-gas phase transition is clarified.

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