We modeled a Brownian heat engine as a Brownian particle that hops in a periodic ratchet potential where the ratchet potential is coupled with a spatially varying temperature. The strength for the viscous friction γ(x) is considered to decrease exponentially when the temperature T(x) of the medium increases (γ(x) = Be− AT(x)) as proposed originally by Reynolds [O. Reynolds, Phil. Trans. R. Soc. London 177, 157 (1886)]. Our result depicts that the velocity of the motor is considerably higher when the viscous friction is temperature dependent than that of the case where the viscous friction is temperature independent. The dependence of the efficiency η as well as the coefficient of performance of the refrigerator Pref on model parameters is a...
We review a family of models recently introduced to describe Brownian motors under the influence of ...
The concept of using Brownian motion as a source of energy to power a motor is explored, and the con...
We perform a molecular dynamics computer simulation of a heat engine model to study how the engine s...
We explore the effect of thermal inhomogeneity on the performance of a Brownian heat engine by consi...
We study the thermodynamic features of a thermal motor driven by temperature differences, which cons...
A method of calculating velocity, efficiency as well as coefficient of performance of the refrigerat...
We study the energetics of a thermal motor driven by temperature differences, which consists of a Br...
Brownian particles moving in a spatially asymmetric but periodic potential (ratchet), with an exter...
A microscopic heat engine is modeled as a Brownian particle in a sawtooth potential (with load) mov...
We study analytically a thermal Brownian motor model and calculate exactly the Onsager coefficients....
In this paper, we present a model of a symmetric Brownian motor which changes the sign of its veloci...
Achieving the Carnot efficiency at finite power is a challenging problem in heat engines due to the ...
We introduce a simple discrete model of a molecular heat engine. The engine's dynamics is strongly i...
A dynamical model of a highly efficient heat engine is proposed, where an applied temperature differ...
We review a family of models recently introduced to describe Brownian motors under the influence of ...
We review a family of models recently introduced to describe Brownian motors under the influence of ...
The concept of using Brownian motion as a source of energy to power a motor is explored, and the con...
We perform a molecular dynamics computer simulation of a heat engine model to study how the engine s...
We explore the effect of thermal inhomogeneity on the performance of a Brownian heat engine by consi...
We study the thermodynamic features of a thermal motor driven by temperature differences, which cons...
A method of calculating velocity, efficiency as well as coefficient of performance of the refrigerat...
We study the energetics of a thermal motor driven by temperature differences, which consists of a Br...
Brownian particles moving in a spatially asymmetric but periodic potential (ratchet), with an exter...
A microscopic heat engine is modeled as a Brownian particle in a sawtooth potential (with load) mov...
We study analytically a thermal Brownian motor model and calculate exactly the Onsager coefficients....
In this paper, we present a model of a symmetric Brownian motor which changes the sign of its veloci...
Achieving the Carnot efficiency at finite power is a challenging problem in heat engines due to the ...
We introduce a simple discrete model of a molecular heat engine. The engine's dynamics is strongly i...
A dynamical model of a highly efficient heat engine is proposed, where an applied temperature differ...
We review a family of models recently introduced to describe Brownian motors under the influence of ...
We review a family of models recently introduced to describe Brownian motors under the influence of ...
The concept of using Brownian motion as a source of energy to power a motor is explored, and the con...
We perform a molecular dynamics computer simulation of a heat engine model to study how the engine s...