Numerical stochastic integration is a powerful tool for the investigation of quantum dynamics in interacting many-body systems. As with all numerical integration of differential equations, the initial conditions of the system being investigated must be specified. With application to quantum optics i
Quantum chaos and peculiarities of diffusion in Wigner representation
β Scribed by G.P. Berman; A.R. Kolovsky; F.M. Izrailev
- Publisher
- Elsevier Science
- Year
- 1988
- Tongue
- English
- Weight
- 815 KB
- Volume
- 152
- Category
- Article
- ISSN
- 0378-4371
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β¦ Synopsis
Peculiarities
of energy diffusion in the well-known model of a quantum rotator excited by an external periodic s-like field are investigated in the Wigner representation.
It is shown that in a semi-classical region of parameters quantum diffusion can be approximately described by means of classical mappings in discrete phase space. Both the phenomenon of the quantum limitation of classical diffusion and the quantum resonance for which the mean energy is increasing quadratically in time manifests itself in the motion of such classical models.
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