We study the large deviations of the power injected by the active force for an active Ornstein–Uhlenbeck particle (AOUP), free or in a confining potential. For the free-particle case, we compute the rate function analytically in d-dimensions from a saddle-point expansion, and numerically in two dimensions by (a) direct sampling of the active work in numerical solutions of the AOUP equations and (b) Legendre–Fenchel transform of the scaled cumulant generating function obtained via a cloning algorithm. The rate function presents asymptotically linear branches on both sides and it is independent of the system’s dimensionality, apart from a multiplicative factor. For the confining potential case, we focus on two-dimensional systems and obtain ...
We investigate the particle-number dependence of some features of the out-of-equilibrium dynamics of...
We study the heat fluctuation of an overdamped Brownian particle trapped in a harmonic potential and...
A colloidal particle immersed in a bath of bacteria is a typical example of a passive particle in an...
We study the large deviations of the power injected by the active force for an active Ornstein–Uhlen...
We study the work distribution of a Brownian particle diffusing in an environment of active particle...
International audienceWe evaluate the steady-state distribution and escape rate for an Active Ornste...
open Access.We consider a Brownian particle in a harmonic trap. The location of the trap is modulate...
We evaluate the steady-state distribution and escape rate for an Active Ornstein-Uhlenbeck Particle ...
We evaluate the steady-state distribution and escape rate for an Active Ornstein-Uhlenbeck Particle ...
We study the non-equilibrium properties of non interacting active Ornstein–Uhlenbeck particles (AOUP...
open AccessWe have considered the underdamped motion of a Brownian particle in the presence of a cor...
peer reviewedWe study the statistical properties of active Ornstein-Uhlenbeck particles (AOUPs). In ...
We study the statistics, in stationary conditions, of the work Wτ done by the active force in differ...
By employing a path integral formulation, we obtain the entropy production rate for a system of acti...
For a many-particle system with long-range interactions and evolving under stochastic dynamics, we s...
We investigate the particle-number dependence of some features of the out-of-equilibrium dynamics of...
We study the heat fluctuation of an overdamped Brownian particle trapped in a harmonic potential and...
A colloidal particle immersed in a bath of bacteria is a typical example of a passive particle in an...
We study the large deviations of the power injected by the active force for an active Ornstein–Uhlen...
We study the work distribution of a Brownian particle diffusing in an environment of active particle...
International audienceWe evaluate the steady-state distribution and escape rate for an Active Ornste...
open Access.We consider a Brownian particle in a harmonic trap. The location of the trap is modulate...
We evaluate the steady-state distribution and escape rate for an Active Ornstein-Uhlenbeck Particle ...
We evaluate the steady-state distribution and escape rate for an Active Ornstein-Uhlenbeck Particle ...
We study the non-equilibrium properties of non interacting active Ornstein–Uhlenbeck particles (AOUP...
open AccessWe have considered the underdamped motion of a Brownian particle in the presence of a cor...
peer reviewedWe study the statistical properties of active Ornstein-Uhlenbeck particles (AOUPs). In ...
We study the statistics, in stationary conditions, of the work Wτ done by the active force in differ...
By employing a path integral formulation, we obtain the entropy production rate for a system of acti...
For a many-particle system with long-range interactions and evolving under stochastic dynamics, we s...
We investigate the particle-number dependence of some features of the out-of-equilibrium dynamics of...
We study the heat fluctuation of an overdamped Brownian particle trapped in a harmonic potential and...
A colloidal particle immersed in a bath of bacteria is a typical example of a passive particle in an...