A rigorous derivation of quantum Langevin equation from microscopic dynamics in the low density limit is given. We consider a quantum model of a microscopic system (test particle) coupled with a reservoir (gas of light Bose particles) via interaction of scattering type. We formulate a mathematical procedure (the so-called stochastic golden rule) which allows us to determine the quantum Langevin equation in the limit of large time and small density of particles of the reservoir. The quantum Langevin equation describes not only dynamics of the system but also the reservoir. We show that the generator of the corresponding master equation has the Lindblad form of most general generators of completely positive semigroups
The basic ideas of the stochastic limit for a quantum system with discrete energy spectrum, coupled ...
In the frames of classical mechanics, the generalized Langevin equation is derived for an arbitrary ...
A linear quantum Brownian motion model with a general spectral density function is considered. In th...
A rigorous derivation of quantum Langevin equation from microscopic dynamics in the low density limi...
A rigorous derivation of quantum Langevin equation from microscopic dynamics in the low density limi...
A rigorous derivation of quantum Langevin equation from microscopic dynamics in the low density limi...
A new derivation of the quantum stochastic differential equation for the evolution operator in the l...
A new derivation of the quantum stochastic differential equation for the evolution operator in the l...
A new derivation of the quantum stochastic differential equation for the evolution operator in the l...
A new derivation of the quantum stochastic differential equation for the evolution operator in the l...
We consider a repeated quantum interaction model describing a small system $\Hh_S$ in interaction wi...
AbstractWe compute the quantum Langevin equation (or more exactly, the quantum stochastic differenti...
The basic ideas of the stochastic limit for a quantum system with discrete energy spectrum, coupled ...
The basic ideas of the stochastic limit for a quantum system with discrete energy spectrum, coupled ...
The basic ideas of the stochastic limit for a quantum system with discrete energy spectrum, coupled ...
The basic ideas of the stochastic limit for a quantum system with discrete energy spectrum, coupled ...
In the frames of classical mechanics, the generalized Langevin equation is derived for an arbitrary ...
A linear quantum Brownian motion model with a general spectral density function is considered. In th...
A rigorous derivation of quantum Langevin equation from microscopic dynamics in the low density limi...
A rigorous derivation of quantum Langevin equation from microscopic dynamics in the low density limi...
A rigorous derivation of quantum Langevin equation from microscopic dynamics in the low density limi...
A new derivation of the quantum stochastic differential equation for the evolution operator in the l...
A new derivation of the quantum stochastic differential equation for the evolution operator in the l...
A new derivation of the quantum stochastic differential equation for the evolution operator in the l...
A new derivation of the quantum stochastic differential equation for the evolution operator in the l...
We consider a repeated quantum interaction model describing a small system $\Hh_S$ in interaction wi...
AbstractWe compute the quantum Langevin equation (or more exactly, the quantum stochastic differenti...
The basic ideas of the stochastic limit for a quantum system with discrete energy spectrum, coupled ...
The basic ideas of the stochastic limit for a quantum system with discrete energy spectrum, coupled ...
The basic ideas of the stochastic limit for a quantum system with discrete energy spectrum, coupled ...
The basic ideas of the stochastic limit for a quantum system with discrete energy spectrum, coupled ...
In the frames of classical mechanics, the generalized Langevin equation is derived for an arbitrary ...
A linear quantum Brownian motion model with a general spectral density function is considered. In th...