The classical wave-particle Hamiltonian is considered in its generalized version, where two modes are assumed to interact with the coevolving charged particles. The equilibrium statistical mechanics solution of the model is worked out analytically, both in the canonical and the microcanonical ensembles. The competition between the two modes is shown to yield ensemble inequivalence, at variance with the standard scenario where just one wave is allowed to develop. As a consequence, both temperature jumps and negative specific heat can show up in the microcanonical ensemble. The relevance of these findings for both plasma physics and free electron laser applications is discussed.

Ensemble inequivalence in systems with wave-particle interaction / Tarcísio N. Teles; Duccio Fanelli; and Stefano Ruffo. - In: PHYSICAL REVIEW. E, STATISTICAL, NONLINEAR AND SOFT MATTER PHYSICS. - ISSN 1550-2376. - STAMPA. - 89:(2014), pp. 050101-1-050101-5.

Ensemble inequivalence in systems with wave-particle interaction

FANELLI, DUCCIO;RUFFO, STEFANO
2014

Abstract

The classical wave-particle Hamiltonian is considered in its generalized version, where two modes are assumed to interact with the coevolving charged particles. The equilibrium statistical mechanics solution of the model is worked out analytically, both in the canonical and the microcanonical ensembles. The competition between the two modes is shown to yield ensemble inequivalence, at variance with the standard scenario where just one wave is allowed to develop. As a consequence, both temperature jumps and negative specific heat can show up in the microcanonical ensemble. The relevance of these findings for both plasma physics and free electron laser applications is discussed.
2014
89
050101-1
050101-5
Tarcísio N. Teles; Duccio Fanelli; and Stefano Ruffo
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/864546
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