In self‐gravitating stars, two dimensional or geophysical flows and in plasmas, long range interactions imply a lack of additivity for the energy; as a consequence, the usual thermodynamic limit is not appropriate. However, by contrast with many claims, the equilibrium statistical mechanics of such systems is a well understood subject. In this proceeding, we explain briefly the classical approach to equilibrium and non equilibrium statistical mechanics for these systems, starting from first principles. We emphasize recent and new results, mainly a classification of equilibrium phase transitions, new unobserved equilibrium phase transition, and out of equilibrium phase transitions. We briefly discuss what we consider as challenges in this field.
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11 January 2008
DYNAMICS AND THERMODYNAMICS OF SYSTEMS WITH LONG RANGE INTERACTIONS: Theory and Experiments
4–8 July 2007
Assisi (Perugia), Italy
Research Article|
January 11 2008
Equilibrium and out of equilibrium phase transitions in systems with long range interactions and in 2D flows Available to Purchase
Freddy Bouchet;
Freddy Bouchet
aInstitut Non Lineaire de Nice, INLN, UMR 6618, CNRS, UNSA, 1361 route des lucioles, 06 560 Valbonne—Sophia Antipolis, France
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Julien Barré;
Julien Barré
bUniversité de Nice‐Sophia Antipolis, Laboratoire J. A. Dieudonné, Parc Valrose, 06108 Nice Cedex 02, France
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Antoine Venaille
Antoine Venaille
cCoriolis‐LEGI, 21 avenue des Martyrs, 38000 Grenoble, France
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Freddy Bouchet
a
Julien Barré
b
Antoine Venaille
c
aInstitut Non Lineaire de Nice, INLN, UMR 6618, CNRS, UNSA, 1361 route des lucioles, 06 560 Valbonne—Sophia Antipolis, France
bUniversité de Nice‐Sophia Antipolis, Laboratoire J. A. Dieudonné, Parc Valrose, 06108 Nice Cedex 02, France
cCoriolis‐LEGI, 21 avenue des Martyrs, 38000 Grenoble, France
AIP Conf. Proc. 970, 117–152 (2008)
Citation
Freddy Bouchet, Julien Barré, Antoine Venaille; Equilibrium and out of equilibrium phase transitions in systems with long range interactions and in 2D flows. AIP Conf. Proc. 11 January 2008; 970 (1): 117–152. https://doi.org/10.1063/1.2839113
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