In dissipative dynamical systems phase space volumes contract, on average. Therefore, the invariant measure on the attractor is singular with respect to the Lebesgue measure. As noted by Ruelle, a generic perturbation pushes the state out of the attractor, hence the statistical features of the perturbation and, in particular, of the relaxation cannot be understood solely in terms of the unperturbed dynamics on the attractor. This remark seems to seriously limit the applicability of the standard fluctuation-dissipation procedure in the statistical mechanics of nonequilibrium (dissipative) systems. In this letter we show that the singular character of the steady state does not constitute a serious limitation in the case of systems with many d...
We introduce a general formulation of the fluctuation-dissipation relations (FDRs) holding also in f...
The Fluctuation Relation (FR) is an asymptotic result on the distribution of certain observables ave...
The Fluctuation Relation (FR) is an asymptotic result on the distribution of certain observables ave...
Dynamical systems are considered dissipative when they asymptotically produce a net contraction of v...
The fluctuation-dissipation (FD) theorem is a fundamental result for systems near thermodynamic equi...
Abstract. Within the abstract framework of dynamical system theory we describe a general approach to...
We give a proof of transient fluctuation relations for the entropy production (dissipation function)...
Within the abstract framework of dynamical system theory we describe a general approach to the trans...
We discuss the fluctuation properties of equilibrium chaotic systems with constraints such as isokin...
In equilibrium, the fluctuation-dissipation theorem (FDT) expresses the response of an observable to...
In this paper we review some recent progress in the field of non-equilibrium linear response theory....
In this paper we review some recent progress in the field of non-equilibrium linear response theory....
In this paper we review some recent progress in the field of non-equilibrium linear response theory....
In this paper we review some recent progress in the field of non-equilibrium linear response theory....
We give a proof of transient fluctuation relations for the entropy production (dissipation function)...
We introduce a general formulation of the fluctuation-dissipation relations (FDRs) holding also in f...
The Fluctuation Relation (FR) is an asymptotic result on the distribution of certain observables ave...
The Fluctuation Relation (FR) is an asymptotic result on the distribution of certain observables ave...
Dynamical systems are considered dissipative when they asymptotically produce a net contraction of v...
The fluctuation-dissipation (FD) theorem is a fundamental result for systems near thermodynamic equi...
Abstract. Within the abstract framework of dynamical system theory we describe a general approach to...
We give a proof of transient fluctuation relations for the entropy production (dissipation function)...
Within the abstract framework of dynamical system theory we describe a general approach to the trans...
We discuss the fluctuation properties of equilibrium chaotic systems with constraints such as isokin...
In equilibrium, the fluctuation-dissipation theorem (FDT) expresses the response of an observable to...
In this paper we review some recent progress in the field of non-equilibrium linear response theory....
In this paper we review some recent progress in the field of non-equilibrium linear response theory....
In this paper we review some recent progress in the field of non-equilibrium linear response theory....
In this paper we review some recent progress in the field of non-equilibrium linear response theory....
We give a proof of transient fluctuation relations for the entropy production (dissipation function)...
We introduce a general formulation of the fluctuation-dissipation relations (FDRs) holding also in f...
The Fluctuation Relation (FR) is an asymptotic result on the distribution of certain observables ave...
The Fluctuation Relation (FR) is an asymptotic result on the distribution of certain observables ave...