We present a stylized model of controlled equilibration of a small system in a fluctuating environment. We derive the optimal control equations steering in finite-time the system between two equilibrium states. The corresponding thermodynamic transition is optimal in the sense that it occurs at minimum entropy if the set of admissible controls is restricted by certain bounds on the time derivatives of the protocols. We apply our equations to the engineered equilibration of an optical trap considered in a recent proof of principle experiment. We also analyze an elementary model of nucleation previously considered by Landauer to discuss the thermodynamic cost of one bit of information erasure. We expect our model to be a useful benchmark for ...
International audienceWe present a detailed theoretical and experimental analysis of Engineered Swif...
We characterize finite-time thermodynamic processes of multidimensional quadratic overdamped systems...
International audienceA fundamental and intrinsic property of any device or natural system is its re...
We present a stylized model of controlled equilibration of a small system in a fluctuating environme...
We present a stylized model of controlled equilibration of a small system in a fluctuating environme...
We propose an optimization strategy to control the dynamics of a stochastic system transferred from ...
Biological systems fundamentally exist out of equilibrium in order to preserve organized structures ...
Living systems are distinguished by their self-organization. Given the entropic driving force embodi...
We consider damped stochastic systems in a controlled (time-varying) potential and study their trans...
A Brownian information engine can induce directed motion of a Brownian particle in a single heat bat...
Controlling the evolution of nonequilibrium systems to minimize dissipated heat or work is a key goa...
We apply Pontryagin’s principle to drive rapidly a trapped overdamped Brownian particle in contact w...
Stochastic thermodynamics lays down a broad framework to revisit the venerable concepts of heat, wor...
This thesis compiles the publications I coauthored during my doctoral studies at University of Leipz...
We characterize finite-time thermodynamic processes of multidimensional quadratic overdamped systems...
International audienceWe present a detailed theoretical and experimental analysis of Engineered Swif...
We characterize finite-time thermodynamic processes of multidimensional quadratic overdamped systems...
International audienceA fundamental and intrinsic property of any device or natural system is its re...
We present a stylized model of controlled equilibration of a small system in a fluctuating environme...
We present a stylized model of controlled equilibration of a small system in a fluctuating environme...
We propose an optimization strategy to control the dynamics of a stochastic system transferred from ...
Biological systems fundamentally exist out of equilibrium in order to preserve organized structures ...
Living systems are distinguished by their self-organization. Given the entropic driving force embodi...
We consider damped stochastic systems in a controlled (time-varying) potential and study their trans...
A Brownian information engine can induce directed motion of a Brownian particle in a single heat bat...
Controlling the evolution of nonequilibrium systems to minimize dissipated heat or work is a key goa...
We apply Pontryagin’s principle to drive rapidly a trapped overdamped Brownian particle in contact w...
Stochastic thermodynamics lays down a broad framework to revisit the venerable concepts of heat, wor...
This thesis compiles the publications I coauthored during my doctoral studies at University of Leipz...
We characterize finite-time thermodynamic processes of multidimensional quadratic overdamped systems...
International audienceWe present a detailed theoretical and experimental analysis of Engineered Swif...
We characterize finite-time thermodynamic processes of multidimensional quadratic overdamped systems...
International audienceA fundamental and intrinsic property of any device or natural system is its re...