This study focuses on fluctuating classical systems in contact with a thermal bath, and whose configurational energetics undergoes cyclic transformations due to interaction with external perturbing agents. Under the assumptions that the configurational dynamics is a stochastic Markov process in the overdamped regime and that the nonequilibrium configurational distribution remains close to the underlying equilibrium one, we derived an analytic approximation of the average dissipated energy per cycle in the asymptotic limit (i.e., after many cycles of perturbation). The energy dissipation is then readily translated into average entropy production, per cycle, in the environment. The accuracy of the approximation was tested by comparing the out...
We give a proof of transient fluctuation relations for the entropy production (dissipation function)...
The fluctuation-dissipation (FD) theorem is a fundamental result for systems near thermodynamic equi...
When an isolated system is brought in contact with a heat bath, its final energy is random and follo...
This study focuses on fluctuating classical systems in contact with a thermal bath, and whose config...
Abstract. We consider three examples of dissipative dynamical systems involving many degrees of free...
We study the energy flow between a one-dimensional oscillator and a chaotic system with two degrees ...
In the realm of statistical physics, a system can be studied for its response to an external stimulu...
We consider three examples of dissipative dynamical systems involving many degrees of freedom, drive...
6 pages, 4 figuresInternational audienceThe influence of dissipation on the fluctuation statistics o...
The influence of dissipation on the fluctuation statistics of the total energy is investigated throu...
15 pages, 7 figuresThe definition of a nonequilibrium temperature through generalized fluctuation-di...
This work deals with thermostated fluctuating systems subjected to driven transformations of the int...
Understanding the physics of non-equilibrium systems remains one of the major open questions in stat...
39 pages, 6 figuresWe discuss an extension of the fluctuation theorem to stochastic models that, in ...
Systems that are driven out of thermal equilibrium typically dissipate random quantities of energy o...
We give a proof of transient fluctuation relations for the entropy production (dissipation function)...
The fluctuation-dissipation (FD) theorem is a fundamental result for systems near thermodynamic equi...
When an isolated system is brought in contact with a heat bath, its final energy is random and follo...
This study focuses on fluctuating classical systems in contact with a thermal bath, and whose config...
Abstract. We consider three examples of dissipative dynamical systems involving many degrees of free...
We study the energy flow between a one-dimensional oscillator and a chaotic system with two degrees ...
In the realm of statistical physics, a system can be studied for its response to an external stimulu...
We consider three examples of dissipative dynamical systems involving many degrees of freedom, drive...
6 pages, 4 figuresInternational audienceThe influence of dissipation on the fluctuation statistics o...
The influence of dissipation on the fluctuation statistics of the total energy is investigated throu...
15 pages, 7 figuresThe definition of a nonequilibrium temperature through generalized fluctuation-di...
This work deals with thermostated fluctuating systems subjected to driven transformations of the int...
Understanding the physics of non-equilibrium systems remains one of the major open questions in stat...
39 pages, 6 figuresWe discuss an extension of the fluctuation theorem to stochastic models that, in ...
Systems that are driven out of thermal equilibrium typically dissipate random quantities of energy o...
We give a proof of transient fluctuation relations for the entropy production (dissipation function)...
The fluctuation-dissipation (FD) theorem is a fundamental result for systems near thermodynamic equi...
When an isolated system is brought in contact with a heat bath, its final energy is random and follo...