Fluctuating entropy production is studied for a set of linearly coupled complex fields. The general result is applied to non-equilibrium fluctuating hydrodynamic equations for coarse-grained fields (density, temperature, and velocity), in the framework of model granular fluids. We find that the average entropy production, obtained from the microscopic stochastic description, can be expressed in terms of macroscopic quantities, in analogy with linear non-equilibrium thermodynamics. We consider the specific cases of driven granular fluids with two different kinds of thermostat and the homogeneous cooling regime. In all cases, the average entropy production turns out to be the product of a thermodynamic force and a current: the former depends ...
International audienceActive-matter systems operate far from equilibrium because of the continuous e...
Active-matter systems operate far from equilibrium because of the continuous energy injection at the...
Active-matter systems operate far from equilibrium because of the continuous energy injection at the...
Fluctuating entropy production is studied for a set of linearly coupled complex fields. The general ...
Entropy and the fluctuation-dissipation theorem are at the heart of statistical mechan-ics near equi...
This thesis investigates irreversible dynamics. It is shown analytically that the recent Fluctuation...
This thesis investigates irreversible dynamics. It is shown analytically that the recent Fluctuation...
Entropy and the fluctuation-dissipation theorem are at the heart of statistical mechan-ics near equi...
This brief offers a concise presentation of granular fluids from the point of view of non-equilibri...
Systems driven out of equilibrium display a rich variety of patterns and surprising response behavio...
For a colloidal particle driven by a constant force across a periodic potential, we investigate the ...
Many complex fluids can be described by continuum hydrodynamic field equations, to which noise must ...
For a colloidal particle driven by a constant force across a periodic potential, we investigate the ...
AbstractGranular materials display more abundant dissipation phenomena than ordinary materials. In t...
We introduce a model described in terms of a scalar velocity field on a 1D lattice, evolving through...
International audienceActive-matter systems operate far from equilibrium because of the continuous e...
Active-matter systems operate far from equilibrium because of the continuous energy injection at the...
Active-matter systems operate far from equilibrium because of the continuous energy injection at the...
Fluctuating entropy production is studied for a set of linearly coupled complex fields. The general ...
Entropy and the fluctuation-dissipation theorem are at the heart of statistical mechan-ics near equi...
This thesis investigates irreversible dynamics. It is shown analytically that the recent Fluctuation...
This thesis investigates irreversible dynamics. It is shown analytically that the recent Fluctuation...
Entropy and the fluctuation-dissipation theorem are at the heart of statistical mechan-ics near equi...
This brief offers a concise presentation of granular fluids from the point of view of non-equilibri...
Systems driven out of equilibrium display a rich variety of patterns and surprising response behavio...
For a colloidal particle driven by a constant force across a periodic potential, we investigate the ...
Many complex fluids can be described by continuum hydrodynamic field equations, to which noise must ...
For a colloidal particle driven by a constant force across a periodic potential, we investigate the ...
AbstractGranular materials display more abundant dissipation phenomena than ordinary materials. In t...
We introduce a model described in terms of a scalar velocity field on a 1D lattice, evolving through...
International audienceActive-matter systems operate far from equilibrium because of the continuous e...
Active-matter systems operate far from equilibrium because of the continuous energy injection at the...
Active-matter systems operate far from equilibrium because of the continuous energy injection at the...