Optical Chaos, 3-4 June 1986, Québec City, Canada
SPIE--the International Society for Optical Engineering, 1986 - Chaotic behavior in systems - 259 pages
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Univ TUUN 66704 Instability modeling of gas lasers L W Casperson Portland State Univ USA
BISTABILITY AND CHAOS
7 other sections not shown
absorption amplitude analysis appears atoms beam behavior bifurcation calculated carrier cavity chaos chaotic characteristics components consider constant corresponding coupling curve cycle density dependence described detuning device discussed dispersion dynamics effects electric Electron emission equations excitation existence experimental experiments field Figure frequency function gain given Hopf incident increased induced input instability intensity interaction laser length Lett light limit linear measured mechanism medium mixing mode modulation noise nonlinear observed obtained occur operation Optical Bistability oscillations output parameter periodic phase Phys physical polarization possible predicted present pulse pump References region relaxation reported resonance respectively response ring semiconductor shown shown in Fig shows signal single solution space stable structure switching theoretical threshold tion transition values wave