We examine the stochastic energetics of directed quantum transport due to rectification of nonequilibrium thermal fluctuations. We calculate the quantum efficiency of a ratchet device both in presence and absence of an external load to characterize two quantifiers of efficiency. It has been shown that the quantum current as well as efficiency in absence of load (Stokes efficiency) is higher as compared to classical current and efficiency, respectively, at low temperature. The conventional efficiency of the device in presence of load on the other hand is higher for a classical system in contrast to its classical counterpart. The maximum conventional efficiency being independent of the nature of the bath and the potential remains the same for...
A ratchet is an asymmetric, non-equilibrated system that can produce a directed current of particles...
peer reviewedWe study the nonequilibrium thermodynamics of a single particle with two available ener...
Stochastic processes are present in virtually any field of science. Actually, in general determinist...
We examine the stochastic energetics of directed quantum transport due to rectification of nonequili...
Ratchet models provide an useful mechanism for directed transport using nonequilibrium fluctuations ...
The directed transport of an overdamped Brownian motor moving in a spatially periodic potential that...
In this thesis, ratchet systems operating in the quantum regime are investigated. Ratchet systems, a...
We study stochastic energetic exchanges in quantum heat engines. Due to microreversibility, these ob...
We study the generalized efficiency of an adiabatically rocked ratchet with both spatial and tempora...
We analyze the problem of directed quantum transport induced by external exponentially correlated te...
The energetic efficiency of an overdamped Brownian particle in a sawtooth potential in the presence ...
We study the nature of currents, input energy and entropy production in different types of adiabatic...
We rigorously investigate the quantum dissipative dynamics of a ratchet system de-scribed by a perio...
We study the efficiency of frictional thermal ratchets driven by a finite frequency driving force an...
Quantum Brownian motion in ratchet potentials is investigated by means of an approach based on a dua...
A ratchet is an asymmetric, non-equilibrated system that can produce a directed current of particles...
peer reviewedWe study the nonequilibrium thermodynamics of a single particle with two available ener...
Stochastic processes are present in virtually any field of science. Actually, in general determinist...
We examine the stochastic energetics of directed quantum transport due to rectification of nonequili...
Ratchet models provide an useful mechanism for directed transport using nonequilibrium fluctuations ...
The directed transport of an overdamped Brownian motor moving in a spatially periodic potential that...
In this thesis, ratchet systems operating in the quantum regime are investigated. Ratchet systems, a...
We study stochastic energetic exchanges in quantum heat engines. Due to microreversibility, these ob...
We study the generalized efficiency of an adiabatically rocked ratchet with both spatial and tempora...
We analyze the problem of directed quantum transport induced by external exponentially correlated te...
The energetic efficiency of an overdamped Brownian particle in a sawtooth potential in the presence ...
We study the nature of currents, input energy and entropy production in different types of adiabatic...
We rigorously investigate the quantum dissipative dynamics of a ratchet system de-scribed by a perio...
We study the efficiency of frictional thermal ratchets driven by a finite frequency driving force an...
Quantum Brownian motion in ratchet potentials is investigated by means of an approach based on a dua...
A ratchet is an asymmetric, non-equilibrated system that can produce a directed current of particles...
peer reviewedWe study the nonequilibrium thermodynamics of a single particle with two available ener...
Stochastic processes are present in virtually any field of science. Actually, in general determinist...