https://arxiv.org/abs/0805.4002A novel treatment of dissipation of energy from a ‘‘small’’ quantum system to a reservoir is presented. We replace the usual master equation for the small-system density matrix by a wave-function evolution including a stochastic element. This wave-function approach provides new insight and it allows calculations on problems which would otherwise be exceedingly complicated. The approach is applied here to a two- or three-level atom coupled to a laser field and to the vacuum modes of the quantized electromagnetic field
In recent years there has been increasing interest in the consistent de-scription of the dynamics of...
16 pages, 5 figuresInternational audienceWe present and discuss a general density-matrix description...
Three existing interpretations of quantum mechanics, given by Heisenberg, Bohm and Madelung, are exa...
The paper shows the results of theoretical research concerning the modeling and characterization of ...
Dissipation, the irreversible loss of energy and coherence, from a microsystem, is the result of cou...
So-called quantum-trajectory techniques have been introduced to reveal single-quantum system dynami...
In a recent Letter Dalibard and coworkers have presented an efficient method of computing the develo...
A new discrete model for energy relaxation of a quantum particle is described via a projection opera...
We first review the usefulness of the Wigner distribution functions (WDF), associated with Lindblad ...
Quantum dissipation involves both energy relaxation and decoherence, leading toward quantum thermal ...
Quantum dissipation involves both energy relaxation and decoherence, leading toward quantum thermal ...
This thesis consists of two parts. Part I is related to the subject in theoretical quan-tum statisti...
This book deals with the statistical mechanics and dynamics of open quantum systems moving irreversi...
Dissipation and decoherence, and the evolution from pure to mixed states in quantum physics are hand...
We propose an efficient construction of the hierarchical equations of motion formalism of quantum di...
In recent years there has been increasing interest in the consistent de-scription of the dynamics of...
16 pages, 5 figuresInternational audienceWe present and discuss a general density-matrix description...
Three existing interpretations of quantum mechanics, given by Heisenberg, Bohm and Madelung, are exa...
The paper shows the results of theoretical research concerning the modeling and characterization of ...
Dissipation, the irreversible loss of energy and coherence, from a microsystem, is the result of cou...
So-called quantum-trajectory techniques have been introduced to reveal single-quantum system dynami...
In a recent Letter Dalibard and coworkers have presented an efficient method of computing the develo...
A new discrete model for energy relaxation of a quantum particle is described via a projection opera...
We first review the usefulness of the Wigner distribution functions (WDF), associated with Lindblad ...
Quantum dissipation involves both energy relaxation and decoherence, leading toward quantum thermal ...
Quantum dissipation involves both energy relaxation and decoherence, leading toward quantum thermal ...
This thesis consists of two parts. Part I is related to the subject in theoretical quan-tum statisti...
This book deals with the statistical mechanics and dynamics of open quantum systems moving irreversi...
Dissipation and decoherence, and the evolution from pure to mixed states in quantum physics are hand...
We propose an efficient construction of the hierarchical equations of motion formalism of quantum di...
In recent years there has been increasing interest in the consistent de-scription of the dynamics of...
16 pages, 5 figuresInternational audienceWe present and discuss a general density-matrix description...
Three existing interpretations of quantum mechanics, given by Heisenberg, Bohm and Madelung, are exa...