We analyze the irreversibility and the entropy production in nonequilibrium interacting particle systems described by a Fokker-Planck equation by the use of a suitable master equation representation. The irreversible character is provided either by nonconservative forces or by the contact with heat baths at distinct temperatures. The expression for the entropy production is deduced from a general definition, which is related to the probability of a trajectory in phase space and its time reversal, that makes no reference a priori to the dissipated power. Our formalism is applied to calculate the heat conductance in a simple system consisting of two Brownian particles each one in contact to a heat reservoir. We show also the connection betwee...
peer reviewedWe investigate how to coherently define entropy production for a process of transient r...
This volume provides a systematic mathematical exposition of the conceptual problems of nonequilibri...
Systems driven out of equilibrium display a rich variety of patterns and surprising response behavio...
We analyze the irreversibility and the entropy production in nonequilibrium interacting particle sys...
The entropy time rate of systems described by nonlinear Fokker-Planck equations-which are directly r...
Physical and chemical stochastic processes described by the master equation are investi-gated. The s...
We present a stochastic approach to nonequilibrium thermodynamics based on the expression of the ent...
We present a stochastic approach to nonequilibrium thermodynamics based on the expression of the ent...
There is a relation between the irreversibility of thermodynamic processes as expressed by the break...
Stochastic differential equations are important to model many complex systems. The Fokker-Planck equ...
Stochastic differential equations are important to model many complex systems. The Fokker-Planck equ...
The importance of irreversible entropy production is emphasized. The first and second laws of thermo...
Systems operating out of equilibrium exchange energy and matter with the environment, thus producing...
When systems are far from equilibrium, the temperature, the entropy and the thermodynamic entropy pr...
Abstract. In nature stationary nonequilibrium systems cannot exist on their own, rather they need to...
peer reviewedWe investigate how to coherently define entropy production for a process of transient r...
This volume provides a systematic mathematical exposition of the conceptual problems of nonequilibri...
Systems driven out of equilibrium display a rich variety of patterns and surprising response behavio...
We analyze the irreversibility and the entropy production in nonequilibrium interacting particle sys...
The entropy time rate of systems described by nonlinear Fokker-Planck equations-which are directly r...
Physical and chemical stochastic processes described by the master equation are investi-gated. The s...
We present a stochastic approach to nonequilibrium thermodynamics based on the expression of the ent...
We present a stochastic approach to nonequilibrium thermodynamics based on the expression of the ent...
There is a relation between the irreversibility of thermodynamic processes as expressed by the break...
Stochastic differential equations are important to model many complex systems. The Fokker-Planck equ...
Stochastic differential equations are important to model many complex systems. The Fokker-Planck equ...
The importance of irreversible entropy production is emphasized. The first and second laws of thermo...
Systems operating out of equilibrium exchange energy and matter with the environment, thus producing...
When systems are far from equilibrium, the temperature, the entropy and the thermodynamic entropy pr...
Abstract. In nature stationary nonequilibrium systems cannot exist on their own, rather they need to...
peer reviewedWe investigate how to coherently define entropy production for a process of transient r...
This volume provides a systematic mathematical exposition of the conceptual problems of nonequilibri...
Systems driven out of equilibrium display a rich variety of patterns and surprising response behavio...