We show how the quantum analog of the Fokker-Planck equation for describing Brownian motion can be obtained as the diffusive limit of the quantum linear Boltzmann equation. The latter describes the quantum dynamics of a tracer particle in a dilute, ideal gas by means of a translation-covariant master equation. We discuss the type of approximations required to obtain the generalized form of the Caldeira-Leggett master equation, along with their physical justification. Microscopic expressions for the diffusion and relaxation coefficients are obtained by analyzing the limiting form of the equation in both the Schroedinger and the Heisenberg picture
As in a previous paper1) an elastically bound particle, linearly coupled with a bath of small oscill...
Structures of quantum Fokker\u2013Planck equations are characterized with respect to the properties ...
We consider a quantum particle moving in a harmonic exterior potential and linearly coupled to a hea...
We show how the quantum analog of the Fokker-Planck equation for describing Brownian motion can be ...
A structure of generator of a quantum dynamical semigroup for the dynamics of a test particle intera...
A structure of generator of a quantum dynamical semigroup for the dynamics of a test particle intera...
We analyze the microscopic model of quantum Brownian motion, describing a Brownian particle interact...
Quantum Brownian motion represents a paradigmatic model of open quantum system, namely a system inex...
We review the quantum version of the linear Boltzmann equation, which describes in a non-perturbativ...
The theory of Brownian motion of a quantum oscillator is developed. The Brownian motion is described...
We analyze the microscopic model of quantum Brownian motion, describing a Brownian particle interact...
We stress the relevance of the two features of translational invariance and atomic nature of the gas...
Einstein's Brownian motion of a quantum particle in a classical environment is studied via virial an...
We stress the relevance of the two features of translational invariance and atomic nature of the gas...
The equation for the quantum motion of a Brownian particle in a gaseous environment is derived by me...
As in a previous paper1) an elastically bound particle, linearly coupled with a bath of small oscill...
Structures of quantum Fokker\u2013Planck equations are characterized with respect to the properties ...
We consider a quantum particle moving in a harmonic exterior potential and linearly coupled to a hea...
We show how the quantum analog of the Fokker-Planck equation for describing Brownian motion can be ...
A structure of generator of a quantum dynamical semigroup for the dynamics of a test particle intera...
A structure of generator of a quantum dynamical semigroup for the dynamics of a test particle intera...
We analyze the microscopic model of quantum Brownian motion, describing a Brownian particle interact...
Quantum Brownian motion represents a paradigmatic model of open quantum system, namely a system inex...
We review the quantum version of the linear Boltzmann equation, which describes in a non-perturbativ...
The theory of Brownian motion of a quantum oscillator is developed. The Brownian motion is described...
We analyze the microscopic model of quantum Brownian motion, describing a Brownian particle interact...
We stress the relevance of the two features of translational invariance and atomic nature of the gas...
Einstein's Brownian motion of a quantum particle in a classical environment is studied via virial an...
We stress the relevance of the two features of translational invariance and atomic nature of the gas...
The equation for the quantum motion of a Brownian particle in a gaseous environment is derived by me...
As in a previous paper1) an elastically bound particle, linearly coupled with a bath of small oscill...
Structures of quantum Fokker\u2013Planck equations are characterized with respect to the properties ...
We consider a quantum particle moving in a harmonic exterior potential and linearly coupled to a hea...