Quantum Brownian motion, described by the Caldeira–Leggett model, brings insights to the understanding of phenomena and essence of quantum thermodynamics, especially the quantum work and heat associated with their classical counterparts. By employing the phase-space formulation approach, we study the heat distribution of a relaxation process in the quantum Brownian motion model. The analytical result of the characteristic function of heat is obtained at any relaxation time with an arbitrary friction coefficient. By taking the classical limit, such a result approaches the heat distribution of the classical Brownian motion described by the Langevin equation, indicating the quantum–classical correspondence principle for heat distribution. We a...
A generalization of quantum-mechanical equations expressed in the hydrodynamic form by introducing t...
A generalization of quantum-mechanical equations expressed in the hydrodynamic form by introducing t...
We propose a generalization of quantum mechanical equations in the hydrodynamic form by introducing,...
International audienceThe pilot wave interpretation proposed by de Broglie and later by Bohm contain...
With this work we elaborate on the physics of quantum noise in thermal equilibrium and in stationary...
With this work we elaborate on the physics of quantum noise in thermal equilibrium and in stationary...
peer reviewedWe investigate how to coherently define entropy production for a process of transient r...
AbstractWe compute the quantum Langevin equation (or more exactly, the quantum stochastic differenti...
We investigate a mean-field approach to a quantum Brownian particle interacting with a quantum therm...
We investigate how to coherently define entropy production for a process of transient relaxation in ...
Proposed here is an exactly soluble model for the field-free motion of a quantum particle interactin...
In the frames of classical mechanics, the generalized Langevin equation is derived for an arbitrary ...
We investigate how to coherently define entropy production for a process of transient relaxation in ...
We investigate how to coherently define entropy production for a process of transient relaxation in ...
Abstract: A new approach to quantum Markov processes is developed and the corresponding Fokker-Planc...
A generalization of quantum-mechanical equations expressed in the hydrodynamic form by introducing t...
A generalization of quantum-mechanical equations expressed in the hydrodynamic form by introducing t...
We propose a generalization of quantum mechanical equations in the hydrodynamic form by introducing,...
International audienceThe pilot wave interpretation proposed by de Broglie and later by Bohm contain...
With this work we elaborate on the physics of quantum noise in thermal equilibrium and in stationary...
With this work we elaborate on the physics of quantum noise in thermal equilibrium and in stationary...
peer reviewedWe investigate how to coherently define entropy production for a process of transient r...
AbstractWe compute the quantum Langevin equation (or more exactly, the quantum stochastic differenti...
We investigate a mean-field approach to a quantum Brownian particle interacting with a quantum therm...
We investigate how to coherently define entropy production for a process of transient relaxation in ...
Proposed here is an exactly soluble model for the field-free motion of a quantum particle interactin...
In the frames of classical mechanics, the generalized Langevin equation is derived for an arbitrary ...
We investigate how to coherently define entropy production for a process of transient relaxation in ...
We investigate how to coherently define entropy production for a process of transient relaxation in ...
Abstract: A new approach to quantum Markov processes is developed and the corresponding Fokker-Planc...
A generalization of quantum-mechanical equations expressed in the hydrodynamic form by introducing t...
A generalization of quantum-mechanical equations expressed in the hydrodynamic form by introducing t...
We propose a generalization of quantum mechanical equations in the hydrodynamic form by introducing,...