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Power injected in dissipative systems and the fluctuation theorem
Authors:S Aumaître  S Fauve  S McNamara  P Poggi
Institution:(1) Laboratoire de Physique Statistique, école Normale Supérieure, 24 rue Lhomond, 75005 Paris, France, FR;(2) European Centre for Atomic and Molecular Computations, école Normale Supérieure de Lyon, 46 allée d'Italie, 69007 Lyon, France, FR;(3) Dipartimento di Ingegneria Civile, University of Firenze, Via S. Marta 3, 50139 Firenze, Italy, IT
Abstract:We consider three examples of dissipative dynamical systems involving many degrees of freedom, driven far from equilibrium by a constant or time dependent forcing. We study the statistical properties of the injected and dissipated power as well as the fluctuations of the total energy of these systems. The three systems under consideration are: a shell model of turbulence, a gas of hard spheres colliding inelastically and excited by a vibrating piston, and a Burridge-Knopoff spring-block model. Although they involve different types of forcing and dissipation, we show that the statistics of the injected power obey the “fluctuation theorem" demonstrated in the case of time reversible dissipative systems maintained at constant total energy, or in the case of some stochastic processes. Although this may be only a consequence of the theory of large deviations, this allows a possible definition of “temperature" for a dissipative system out of equilibrium. We consider how this “temperature" scales with the energy and the number of degrees of freedom in the different systems under consideration. Received 26 June 2000 and Received in final form 24 October 2000
Keywords:PACS  05  40  -a Fluctuation phenomena  random processes  noise  and Brownian motion –  05  45  -a Nonlinear dynamics and nonlinear          dynamical systems
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