Dabelow L, Bo S, Eichhorn R. Irreversibility in Active Matter Systems: Fluctuation Theorem and Mutual Information. PHYSICAL REVIEW X. 2019;9(2): 021009.We consider a Brownian particle which, in addition to being in contact with a thermal bath, is driven by fluctuating forces which stem from active processes in the system, such as self-propulsion or collisions with other active particles. These active fluctuations do not fulfill a fluctuation-dissipation relation and therefore play the role of a nonequilibrium environment, which keeps the system permanently out of thermal equilibrium even in the absence of external forces. We investigate how the out-of-equilibrium character of the active matter system and the associated irreversibility is re...
Active systems evade the rules of equilibrium thermodynamics by constantly dissipating energy at the...
Systems driven out of equilibrium display a rich variety of patterns and surprising response behavio...
We present in detail a Langevin formalism for constructing stochastic dynamical equations for active...
We present a comprehensive study about the relationship between the way detailed balance is broken i...
The measure of irreversibility as the dissipation function that serves as the quantitative argument ...
Active matter systems are driven out of thermal equilibrium by a lack of generalized Stokes-Einstein...
Within the Rayleigh-Helmholtz model of active Brownian particles, activity is due to a nonlinear vel...
A colloidal particle immersed in a bath of bacteria is a typical example of a passive particle in an...
Active matter systems are driven out of thermal equilibrium by a lack of generalized Stokes-Einstein...
We study the effect of different types of fluctuation on the motion of self-propelled particles in t...
We study the effect of different types of fluctuation on the motion of self-propelled particles in t...
peer reviewedActive matter systems are driven out of thermal equilibrium by a lack of generalized St...
We analyze the irreversibility and the entropy production in nonequilibrium interacting particle sys...
We analyze the irreversibility and the entropy production in nonequilibrium interacting particle sys...
Information plays a pivotal role in the thermodynamics of nonequilibrium processes with feedback. Ho...
Active systems evade the rules of equilibrium thermodynamics by constantly dissipating energy at the...
Systems driven out of equilibrium display a rich variety of patterns and surprising response behavio...
We present in detail a Langevin formalism for constructing stochastic dynamical equations for active...
We present a comprehensive study about the relationship between the way detailed balance is broken i...
The measure of irreversibility as the dissipation function that serves as the quantitative argument ...
Active matter systems are driven out of thermal equilibrium by a lack of generalized Stokes-Einstein...
Within the Rayleigh-Helmholtz model of active Brownian particles, activity is due to a nonlinear vel...
A colloidal particle immersed in a bath of bacteria is a typical example of a passive particle in an...
Active matter systems are driven out of thermal equilibrium by a lack of generalized Stokes-Einstein...
We study the effect of different types of fluctuation on the motion of self-propelled particles in t...
We study the effect of different types of fluctuation on the motion of self-propelled particles in t...
peer reviewedActive matter systems are driven out of thermal equilibrium by a lack of generalized St...
We analyze the irreversibility and the entropy production in nonequilibrium interacting particle sys...
We analyze the irreversibility and the entropy production in nonequilibrium interacting particle sys...
Information plays a pivotal role in the thermodynamics of nonequilibrium processes with feedback. Ho...
Active systems evade the rules of equilibrium thermodynamics by constantly dissipating energy at the...
Systems driven out of equilibrium display a rich variety of patterns and surprising response behavio...
We present in detail a Langevin formalism for constructing stochastic dynamical equations for active...