There are several damping phenomena in quantum optics. Such phenomena have been usually explained by open systems. In statistical physics, open system dynamics have been used to study the irreversibility and the approach to equilibrium. In this paper, the dynamical change of the mutual entropy for an open system, frequently studied in the quantum optics literature, is rigorously computed through a model of quantum Markov chain. In particular, the concrete formula of Stinespring expression for such a model is obtained and applied to the derivation of the mutual entropy, and some computational results are presented
A probability distribution encodes all the statistics of its corresponding random variable, hence it...
In this paper we give an essentially self-contained account of some general structural properties of...
Exploiting previous results on Markovian dynamics and fluctuation theorems, we study the consequence...
There are several damping phenomena in quantum optics. Such phenomena have been usually explained by...
The Markovian time evolution of the entropy production rate is studied as a measure of irreversibili...
Lecture Notes in Mathematics 1881Understanding dissipative dynamics of open quantum systems remains ...
The Caldeira-Leggett model is studied in the stochastic description. The formal solution for the ran...
Understanding dissipative dynamics of open quantum systems remains a challenge in mathematical physi...
Classical dynamical entropy is an important tool to analyse the efficiency of information transmissi...
Currently, ‘time’ does not play any essential role in quantum information theory. In this sense, qua...
Classical dynamical entropy is an important tool to analyse the efficiency of information transmissi...
In this thesis we study quantum mechanical processes with a Markovian character. We focus on matters...
Lecture Notes in Mathematics 1880Understanding dissipative dynamics of open quantum systems remains ...
International audienceThe von Neumann entropy rate for open quantum systems is, in general, written ...
This book presents Markov and quantum processes as two sides of a coin called generated stochastic p...
A probability distribution encodes all the statistics of its corresponding random variable, hence it...
In this paper we give an essentially self-contained account of some general structural properties of...
Exploiting previous results on Markovian dynamics and fluctuation theorems, we study the consequence...
There are several damping phenomena in quantum optics. Such phenomena have been usually explained by...
The Markovian time evolution of the entropy production rate is studied as a measure of irreversibili...
Lecture Notes in Mathematics 1881Understanding dissipative dynamics of open quantum systems remains ...
The Caldeira-Leggett model is studied in the stochastic description. The formal solution for the ran...
Understanding dissipative dynamics of open quantum systems remains a challenge in mathematical physi...
Classical dynamical entropy is an important tool to analyse the efficiency of information transmissi...
Currently, ‘time’ does not play any essential role in quantum information theory. In this sense, qua...
Classical dynamical entropy is an important tool to analyse the efficiency of information transmissi...
In this thesis we study quantum mechanical processes with a Markovian character. We focus on matters...
Lecture Notes in Mathematics 1880Understanding dissipative dynamics of open quantum systems remains ...
International audienceThe von Neumann entropy rate for open quantum systems is, in general, written ...
This book presents Markov and quantum processes as two sides of a coin called generated stochastic p...
A probability distribution encodes all the statistics of its corresponding random variable, hence it...
In this paper we give an essentially self-contained account of some general structural properties of...
Exploiting previous results on Markovian dynamics and fluctuation theorems, we study the consequence...