We derive a general lower bound on distributions of entropy production in interacting active matter systems. The bound is tight in the limit that interparticle correlations are small and short-ranged, which we explore in four canonical active matter models. In all models studied, the bound is weak where collective fluctuations result in long-ranged correlations, which subsequently links the locations of phase transitions to enhanced entropy production fluctuations. We develop a theory for the onset of enhanced fluctuations and relate it to specific phase transitions in active Brownian particles. We also derive optimal control forces that realize the dynamics necessary to tune dissipation and manipulate the system between phases. In so doing...
Systems driven out of equilibrium display a rich variety of patterns and surprising response behavio...
Entropy and the fluctuation-dissipation theorem are at the heart of statistical mechan-ics near equi...
Dabelow L, Bo S, Eichhorn R. Irreversibility in Active Matter Systems: Fluctuation Theorem and Mutua...
We derive a general lower bound on distributions of entropy production in interacting active matter ...
Active-matter systems operate far from equilibrium because of the continuous energy injection at the...
Within the Rayleigh-Helmholtz model of active Brownian particles, activity is due to a nonlinear vel...
Active matter systems are driven out of thermal equilibrium by a lack of generalized Stokes-Einstein...
Active systems evade the rules of equilibrium thermodynamics by constantly dissipating energy at the...
Active matter systems are driven out of thermal equilibrium by a lack of generalized Stokes-Einstein...
For a colloidal particle driven by a constant force across a periodic potential, we investigate the ...
Entropy and the fluctuation-dissipation theorem are at the heart of statistical mechan-ics near equi...
International audienceJaynes' information theory formalism of statistical mechanics is applied to th...
For a colloidal particle driven by a constant force across a periodic potential, we investigate the ...
The effect of entropy at low noises is investigated in five-strategy logit-rule-driven spatial evolu...
A colloidal particle immersed in a bath of bacteria is a typical example of a passive particle in an...
Systems driven out of equilibrium display a rich variety of patterns and surprising response behavio...
Entropy and the fluctuation-dissipation theorem are at the heart of statistical mechan-ics near equi...
Dabelow L, Bo S, Eichhorn R. Irreversibility in Active Matter Systems: Fluctuation Theorem and Mutua...
We derive a general lower bound on distributions of entropy production in interacting active matter ...
Active-matter systems operate far from equilibrium because of the continuous energy injection at the...
Within the Rayleigh-Helmholtz model of active Brownian particles, activity is due to a nonlinear vel...
Active matter systems are driven out of thermal equilibrium by a lack of generalized Stokes-Einstein...
Active systems evade the rules of equilibrium thermodynamics by constantly dissipating energy at the...
Active matter systems are driven out of thermal equilibrium by a lack of generalized Stokes-Einstein...
For a colloidal particle driven by a constant force across a periodic potential, we investigate the ...
Entropy and the fluctuation-dissipation theorem are at the heart of statistical mechan-ics near equi...
International audienceJaynes' information theory formalism of statistical mechanics is applied to th...
For a colloidal particle driven by a constant force across a periodic potential, we investigate the ...
The effect of entropy at low noises is investigated in five-strategy logit-rule-driven spatial evolu...
A colloidal particle immersed in a bath of bacteria is a typical example of a passive particle in an...
Systems driven out of equilibrium display a rich variety of patterns and surprising response behavio...
Entropy and the fluctuation-dissipation theorem are at the heart of statistical mechan-ics near equi...
Dabelow L, Bo S, Eichhorn R. Irreversibility in Active Matter Systems: Fluctuation Theorem and Mutua...