Self-Organized Bottleneck and Coexistence of Incongruous States in a Microwave Phonon Laser (Phaser)

dc.creatorMakovetskii, D. N.
dc.date2009-01-05
dc.date.accessioned2026-07-07T12:30:31Z
dc.date.available2026-07-07T12:30:31Z
dc.descriptionPhenomena of emergence of regular and chaotic fine structure (FS) in stimulated emission (SE) power spectra of an autonomous microwave phonon laser (phaser) have been revealed and investigated experimentally in pink ruby at liquid helium temperatures. The phenomenon of a self-organized bottleneck in evolution of the microwave acoustic FS lines has been observed by means of narrow-range phonon SE spectral analysis. The large-scale phenomenon of coexistence of incongruous (stationary, periodic and chaotic) states in the whole spin-phonon phaser system has been revealed in experiments with panoramic power spectra of phonon SE. We propose a possible direction for modeling of both the observed phenomena on the basis of three-level cellular automata (S.D.Makovetskiy and D.N.Makovetskii, arXiv:cond-mat/0410460v2; S.D.Makovetskiy, arXiv:cond-mat/0602345v1) which emulate evolution of a bounded phaser-like excitable system.
dc.description26 pages (LaTeX2e file) and 4 figures (JPG- and PNG-files)
dc.identifierhttps://arxiv.org/abs/0901.0449
dc.identifierhttp://arxiv.org/abs/0901.0449
dc.identifier.urihttp://salesiana.dossiersoluciones.com/handle/123456789/216152
dc.subjectAdaptation and Self-Organizing Systems
dc.subjectOther Condensed Matter
dc.subjectChaotic Dynamics
dc.titleSelf-Organized Bottleneck and Coexistence of Incongruous States in a Microwave Phonon Laser (Phaser)
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