Classical thermodynamics aimed to quantify the efficiency of thermodynamic engines, by bounding the maximal amount of mechanical energy produced, compared to the amount of heat required. While this was accomplished early on, by Carnot and Clausius, the more practical problem to quantify limits of power that can be delivered, remained elusive due to the fact that quasistatic processes require infinitely slow cycling, resulting in a vanishing power output. Recent insights, drawn from stochastic models, appear to bridge the gap between theory and practice in that they lead to physically meaningful expressions for the dissipation cost in operating a thermodynamic engine over a finite time window. Indeed, the problem to optimize power can be exp...
We investigate the performance of an underdamped stochastic heat engine, using the paradigmatic mode...
This work obtains the efficiency at maximum power for a stochastic heat engine performing Carnot-lik...
A heat engine is a cyclically operated statistical mechanical system which converts heat supply from...
Classical thermodynamics aimed to quantify the efficiency of thermodynamic engines, by bounding the ...
Classical thermodynamics is aimed at quantifying the efficiency of thermodynamic engines by bounding...
The context of the present paper is stochastic thermodynamics-an approach to nonequilibrium thermody...
We study thermodynamic processes in contact with a heat bath that may have an arbitrary time-varying...
We study thermodynamic processes in contact with a heat bath that may have an arbitrary time-varying...
We consider the performance of periodically driven stochastic heat engines in the linear response re...
We study a class of cyclic Brownian heat engines in the framework of finite-time thermodynamics. For...
This review reports several key advances on the theoretical investigations of efficiency at maximum ...
We consider the performance of periodically driven stochastic heat engines in the linear response re...
In the present paper, we study the power output and efficiency of overdamped stochastic thermodynami...
This thesis compiles the publications I coauthored during my doctoral studies at University of Leipz...
We study the ratio between the variances of work output and heat input, $\eta^{(2)}$, for a class of...
We investigate the performance of an underdamped stochastic heat engine, using the paradigmatic mode...
This work obtains the efficiency at maximum power for a stochastic heat engine performing Carnot-lik...
A heat engine is a cyclically operated statistical mechanical system which converts heat supply from...
Classical thermodynamics aimed to quantify the efficiency of thermodynamic engines, by bounding the ...
Classical thermodynamics is aimed at quantifying the efficiency of thermodynamic engines by bounding...
The context of the present paper is stochastic thermodynamics-an approach to nonequilibrium thermody...
We study thermodynamic processes in contact with a heat bath that may have an arbitrary time-varying...
We study thermodynamic processes in contact with a heat bath that may have an arbitrary time-varying...
We consider the performance of periodically driven stochastic heat engines in the linear response re...
We study a class of cyclic Brownian heat engines in the framework of finite-time thermodynamics. For...
This review reports several key advances on the theoretical investigations of efficiency at maximum ...
We consider the performance of periodically driven stochastic heat engines in the linear response re...
In the present paper, we study the power output and efficiency of overdamped stochastic thermodynami...
This thesis compiles the publications I coauthored during my doctoral studies at University of Leipz...
We study the ratio between the variances of work output and heat input, $\eta^{(2)}$, for a class of...
We investigate the performance of an underdamped stochastic heat engine, using the paradigmatic mode...
This work obtains the efficiency at maximum power for a stochastic heat engine performing Carnot-lik...
A heat engine is a cyclically operated statistical mechanical system which converts heat supply from...