Wave Dynamical Chaos in Superconducting Microwave Cavities

dc.creatorRehfeld, H.
dc.creatorAlt, H.
dc.creatorDembowski, C.
dc.creatorGraef, H. -D.
dc.creatorHofferbert, R.
dc.creatorRichter, A.
dc.creatorLengeler, H.
dc.date1997-01-13
dc.date.accessioned2026-07-07T09:08:01Z
dc.date.available2026-07-07T09:08:01Z
dc.descriptionDuring the last few years we have studied the chaotic behavior of special Euclidian geometries, so-called billiards, from the quantum or in more general sense "wave dynamical" point of view. Due to the equivalence between the stationary Schroedinger equation and the classical Helmholtz equation in the two-dimensional case (plain billiards), it is possible to simulate "quantum chaos" with the help of macroscopic, superconducting microwave cavities. Using this technique we investigated spectra of three billiards from the family of Pascal's Snails (Robnik-Billiards) with a different chaoticity in each case in order to test predictions of standard stochastical models for classical chaotic systems.
dc.description8 pages (Latex) including 3 postscript figures; Proceeding of the 3rd International Summer School/Conference "Let's Face Chaos through Nonlinear Dynamics" (24.6.-5.7.1996, Maribor, Slowenija), to be published in Open Systems and Information Dynamics; rehfeld@linac.ikp.physik.th-darmstadt.de
dc.identifierhttps://arxiv.org/abs/chao-dyn/9701010
dc.identifierhttp://arxiv.org/abs/chao-dyn/9701010
dc.identifier.urihttp://salesiana.dossiersoluciones.com/handle/123456789/150575
dc.subjectChaotic Dynamics
dc.titleWave Dynamical Chaos in Superconducting Microwave Cavities
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