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Energy diffusion in strongly driven quantum chaotic systems
Authors:P. V. Elyutin
Affiliation:(1) Department of Physics, Moscow State University, Vorob’evy gory, Moscow, 119992, Russia
Abstract:The energy evolution of a quantum chaotic system under a perturbation that harmonically depends on time is studied in the case of a large perturbation in which the transition rate calculated from the Fermi golden rule exceeds the frequency of the perturbation. It is shown that the energy evolution retains its diffusive character, with a diffusion coefficient that is asymptotically proportional to the magnitude of the perturbation and to the square root of the density of states. The results are supported by numerical calculation. Energy absorption by the system and quantum-classical correlations are discussed. The text was submitted by author in English.
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