arXiv · 1604.00953
How far from equilibrium is active matter?
Abstract
Active matter systems are driven out of thermal equilibrium by a lack of generalized Stokes-Einstein relation between injection and dissipation of energy at the microscopic scale. We consider such a system of interacting particles, propelled by persistent noises, and show that, at small but finite persistence time, their dynamics still satisfy a time-reversal symmetry. To do so, we compute perturbatively their steady-state measure and show that, for short persistent times, the entropy production rate vanishes. This endows such systems with an effective Fluctuation-Dissipation theorem akin to that of thermal equilibrium systems. Last we show how interacting particle systems with viscous drags and correlated noises can be seen as in equilibrium with a visco-elastic bath but driven out of equilibrium by non-conservative forces, hence providing an energetic insight on the departure of active systems from equilibrium.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Étienne Fodor, Cesare Nardini, Mike E. Cates, Julien Tailleur, Paolo Visco, Frédéric van Wijland. 2016-04-04. How far from equilibrium is active matter?. https://doi.org/10.1103/physrevlett.117.038103
Cite the original work for its findings. Save a collection to share your selection of sources.