International audienceWe propose a general framework to study transformations that drive an underdamped Brownian particle in contact with a thermal bath from an equilibrium state to a new one in an arbitrarily short time. To this end, we make use of a time and space-dependent potential, that plays a dual role: confine the particle, and manipulate the system. In the special case of an isothermal compression or decompression of a harmonically trapped particle, we derive explicit protocols that perform this quick transformation, following an inverse engineering method. We focus on the properties of these protocols, which crucially depend on two key dimensionless numbers that characterize the relative values of the three timescales of the probl...
Living systems are distinguished by their self-organization. Given the entropic driving force embodi...
The overdamped Brownian dynamics of a harmonic oscillator is a paradigmatic system in non-equilibriu...
We present a feedback protocol that is able to confine a system to a single micro-state without heat...
International audienceWe propose a general framework to study transformations that drive an underdam...
International audienceWe propose a new protocol that ensures the fast equilibration of an overdamped...
In the context of stochastic thermodynamics, a minimal model for nonequilibrium steady states has be...
International audienceA fundamental and intrinsic property of any device or natural system is its re...
We apply Pontryagin’s principle to drive rapidly a trapped overdamped Brownian particle in contact w...
International audienceWe present a detailed theoretical and experimental analysis of Engineered Swif...
We propose an optimization strategy to control the dynamics of a stochastic system transferred from ...
We present a stylized model of controlled equilibration of a small system in a fluctuating environme...
In conventional thermodynamics, it is widely acknowledged that the realization of an isothermal proc...
Underdamped stochastic thermodynamics provides a handy tool to study a large class of stochastic pr...
We study thermodynamic processes in contact with a heat bath that may have an arbitrary time-varying...
We present a stylized model of controlled equilibration of a small system in a fluctuating environme...
Living systems are distinguished by their self-organization. Given the entropic driving force embodi...
The overdamped Brownian dynamics of a harmonic oscillator is a paradigmatic system in non-equilibriu...
We present a feedback protocol that is able to confine a system to a single micro-state without heat...
International audienceWe propose a general framework to study transformations that drive an underdam...
International audienceWe propose a new protocol that ensures the fast equilibration of an overdamped...
In the context of stochastic thermodynamics, a minimal model for nonequilibrium steady states has be...
International audienceA fundamental and intrinsic property of any device or natural system is its re...
We apply Pontryagin’s principle to drive rapidly a trapped overdamped Brownian particle in contact w...
International audienceWe present a detailed theoretical and experimental analysis of Engineered Swif...
We propose an optimization strategy to control the dynamics of a stochastic system transferred from ...
We present a stylized model of controlled equilibration of a small system in a fluctuating environme...
In conventional thermodynamics, it is widely acknowledged that the realization of an isothermal proc...
Underdamped stochastic thermodynamics provides a handy tool to study a large class of stochastic pr...
We study thermodynamic processes in contact with a heat bath that may have an arbitrary time-varying...
We present a stylized model of controlled equilibration of a small system in a fluctuating environme...
Living systems are distinguished by their self-organization. Given the entropic driving force embodi...
The overdamped Brownian dynamics of a harmonic oscillator is a paradigmatic system in non-equilibriu...
We present a feedback protocol that is able to confine a system to a single micro-state without heat...