Influence of phase-space localization on the energy diffusion in a quantum chaotic billiard

The quantum dynamics of a chaotic billiard with moving boundary is considered in this paper. We found a shape parameter Hamiltonian expansion, which enables us to obtain the spectrum of the deformed billiard for deformations so large as the characteristic wavelength. Then, for a specified time-depen...

Descripción completa

Guardado en:
Detalles Bibliográficos
Autores principales: Wisniacki, D.A., Vergini, E.
Formato: Artículo publishedVersion
Publicado: 1999
Materias:
Acceso en línea:http://hdl.handle.net/20.500.12110/paper_1063651X_v59_n6_p6579_Wisniacki
https://repositoriouba.sisbi.uba.ar/gsdl/cgi-bin/library.cgi?a=d&c=artiaex&d=paper_1063651X_v59_n6_p6579_Wisniacki_oai
Aporte de:
id I28-R145-paper_1063651X_v59_n6_p6579_Wisniacki_oai
record_format dspace
spelling I28-R145-paper_1063651X_v59_n6_p6579_Wisniacki_oai2024-08-16 Wisniacki, D.A. Vergini, E. 1999 The quantum dynamics of a chaotic billiard with moving boundary is considered in this paper. We found a shape parameter Hamiltonian expansion, which enables us to obtain the spectrum of the deformed billiard for deformations so large as the characteristic wavelength. Then, for a specified time-dependent shape variation, the quantum dynamics of a particle inside the billiard is integrated directly. In particular, the dispersion of the energy is studied in the Bunimovich stadium billiard with oscillating boundary. The results showed that the distribution of energy spreads diffusively for the first oscillations of the boundary [Formula Presented]. We studied the diffusion constant D as a function of the boundary velocity and found differences with theoretical predictions based on random matrix theory. By extracting highly phase-space localized structures from the spectrum, previous differences were reduced significantly. This fact provides numerical evidence of the influence of phase-space localization on the quantum diffusion of a chaotic system. © 1999 The American Physical Society. Fil:Wisniacki, D.A. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. Fil:Vergini, E. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. application/pdf http://hdl.handle.net/20.500.12110/paper_1063651X_v59_n6_p6579_Wisniacki info:eu-repo/semantics/openAccess http://creativecommons.org/licenses/by/2.5/ar Phys Rev E. 1999;59(6):6579-6584 article Influence of phase-space localization on the energy diffusion in a quantum chaotic billiard info:eu-repo/semantics/article info:ar-repo/semantics/artículo info:eu-repo/semantics/publishedVersion https://repositoriouba.sisbi.uba.ar/gsdl/cgi-bin/library.cgi?a=d&c=artiaex&d=paper_1063651X_v59_n6_p6579_Wisniacki_oai
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-145
collection Repositorio Digital de la Universidad de Buenos Aires (UBA)
topic article
spellingShingle article
Wisniacki, D.A.
Vergini, E.
Influence of phase-space localization on the energy diffusion in a quantum chaotic billiard
topic_facet article
description The quantum dynamics of a chaotic billiard with moving boundary is considered in this paper. We found a shape parameter Hamiltonian expansion, which enables us to obtain the spectrum of the deformed billiard for deformations so large as the characteristic wavelength. Then, for a specified time-dependent shape variation, the quantum dynamics of a particle inside the billiard is integrated directly. In particular, the dispersion of the energy is studied in the Bunimovich stadium billiard with oscillating boundary. The results showed that the distribution of energy spreads diffusively for the first oscillations of the boundary [Formula Presented]. We studied the diffusion constant D as a function of the boundary velocity and found differences with theoretical predictions based on random matrix theory. By extracting highly phase-space localized structures from the spectrum, previous differences were reduced significantly. This fact provides numerical evidence of the influence of phase-space localization on the quantum diffusion of a chaotic system. © 1999 The American Physical Society.
format Artículo
Artículo
publishedVersion
author Wisniacki, D.A.
Vergini, E.
author_facet Wisniacki, D.A.
Vergini, E.
author_sort Wisniacki, D.A.
title Influence of phase-space localization on the energy diffusion in a quantum chaotic billiard
title_short Influence of phase-space localization on the energy diffusion in a quantum chaotic billiard
title_full Influence of phase-space localization on the energy diffusion in a quantum chaotic billiard
title_fullStr Influence of phase-space localization on the energy diffusion in a quantum chaotic billiard
title_full_unstemmed Influence of phase-space localization on the energy diffusion in a quantum chaotic billiard
title_sort influence of phase-space localization on the energy diffusion in a quantum chaotic billiard
publishDate 1999
url http://hdl.handle.net/20.500.12110/paper_1063651X_v59_n6_p6579_Wisniacki
https://repositoriouba.sisbi.uba.ar/gsdl/cgi-bin/library.cgi?a=d&c=artiaex&d=paper_1063651X_v59_n6_p6579_Wisniacki_oai
work_keys_str_mv AT wisniackida influenceofphasespacelocalizationontheenergydiffusioninaquantumchaoticbilliard
AT verginie influenceofphasespacelocalizationontheenergydiffusioninaquantumchaoticbilliard
_version_ 1809356918417784832