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Quantum Arnol'd diffusion in a simple nonlinear system.

作者信息

Demikhovskii V Ya, Izrailev F M, Malyshev A I

机构信息

Nizhny Novgorod State University, Gagarin Avenue 23, Russia.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2002 Sep;66(3 Pt 2A):036211. doi: 10.1103/PhysRevE.66.036211. Epub 2002 Sep 20.

DOI:10.1103/PhysRevE.66.036211
PMID:12366228
Abstract

We study the fingerprint of the Arnol'd diffusion in a quantum system of two coupled nonlinear oscillators with a two-frequency external force. In the classical description, this peculiar diffusion is due to the onset of a weak chaos in a narrow stochastic layer near the separatrix of the coupling resonance. We have found that global dependence of the quantum diffusion coefficient on model parameters mimics, to some extent, the classical data. However, the quantum diffusion happens to be slower than the classical one. Another result is the dynamical localization that leads to a saturation of the diffusion after some characteristic time. We show that this effect has the same nature as for the studied earlier dynamical localization in the presence of global chaos. The quantum Arnol'd diffusion represents a new type of quantum dynamics and can be observed, for example, in two-dimensional semiconductor structures (quantum billiards) perturbed by time-periodic external fields.

摘要

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