A formalism has been developed, using Feynman's space-time formulation of nonrelativistic quantum mechanics whereby the behavior of a system of interest, which is coupled to other external quantum systems, may be calculated in terms of its own variables only. It is shown that the effect of the external systems in such a formalism can always be included in a general class of functionals (influence functionals) of the coordinates of the system only. The properties of influence functionals for general systems are examined. Then, specific forms of influence functionals representing the effect of definite and random classical forces, linear dissipative systems at finite temperatures, and combinations of these are analyzed in detail. The linear s...
This book deals with the statistical mechanics and dynamics of open quantum systems moving irreversi...
The quantum-classical correspondence in the presence of dissipation is studied. The semiclassical ex...
Three existing interpretations of quantum mechanics, given by Heisenberg, Bohm and Madelung, are exa...
A formalism has been developed, using Feynman's space-time formulation of nonrelativistic quantum me...
A formalism has been developed, using Feynman's space-time formulation of nonrelativistic quantum me...
A formalism has been developed, using Feynman's space-time formulation of non-relativistic quantum m...
A formalism has been developed, using Feynman’s space-time formulation of nonrelativistic quantum me...
Non-relativistic quantum mechanics is treated using Feynman's space-time approach and Wigner's proba...
We investigate a generalization of the oscillator model of a particle interacting with a thermal res...
We investigate a generalization of the oscillator model of a particle interacting with a thermal res...
We investigate a generalization of the oscillator model of a particle interacting with a thermal res...
We investigate a generalization of the oscillator model of a particle interacting with a thermal res...
We investigate a generalization of the oscillator model of a particle interacting with a thermal res...
We investigate a generalization of the oscillator model of a particle interacting with a thermal res...
The influence functional from a heat bath consisting of coupled harmonic oscillators of time-depende...
This book deals with the statistical mechanics and dynamics of open quantum systems moving irreversi...
The quantum-classical correspondence in the presence of dissipation is studied. The semiclassical ex...
Three existing interpretations of quantum mechanics, given by Heisenberg, Bohm and Madelung, are exa...
A formalism has been developed, using Feynman's space-time formulation of nonrelativistic quantum me...
A formalism has been developed, using Feynman's space-time formulation of nonrelativistic quantum me...
A formalism has been developed, using Feynman's space-time formulation of non-relativistic quantum m...
A formalism has been developed, using Feynman’s space-time formulation of nonrelativistic quantum me...
Non-relativistic quantum mechanics is treated using Feynman's space-time approach and Wigner's proba...
We investigate a generalization of the oscillator model of a particle interacting with a thermal res...
We investigate a generalization of the oscillator model of a particle interacting with a thermal res...
We investigate a generalization of the oscillator model of a particle interacting with a thermal res...
We investigate a generalization of the oscillator model of a particle interacting with a thermal res...
We investigate a generalization of the oscillator model of a particle interacting with a thermal res...
We investigate a generalization of the oscillator model of a particle interacting with a thermal res...
The influence functional from a heat bath consisting of coupled harmonic oscillators of time-depende...
This book deals with the statistical mechanics and dynamics of open quantum systems moving irreversi...
The quantum-classical correspondence in the presence of dissipation is studied. The semiclassical ex...
Three existing interpretations of quantum mechanics, given by Heisenberg, Bohm and Madelung, are exa...