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Titlebook: Instabilities and Chaos in Quantum Optics; F. Tito Arecchi,Robert G. Harrison Textbook 1987 Springer-Verlag Berlin Heidelberg 1987 chaos.l

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书目名称Instabilities and Chaos in Quantum Optics
编辑F. Tito Arecchi,Robert G. Harrison
视频video
丛书名称Springer Series in Synergetics
图书封面Titlebook: Instabilities and Chaos in Quantum Optics;  F. Tito Arecchi,Robert G. Harrison Textbook 1987 Springer-Verlag Berlin Heidelberg 1987 chaos.l
描述Of the variety of nonlinear dynamical systems that exhibit deterministic chaos optical systems both lasers and passive devices provide nearly ideal systems for quantitative investigation due to their simplicity both in construction and in the mathematics that describes them. In view of their growing technical application the understanding, control and possible exploitation of sources of instability in these systems has considerable practical importance. The aim of this volume is to provide a comprehensive coverage of the current understanding of optical instabilities through a series of reviews by leading researchers in the field. The book comprises nine chapters, five on active (laser) systems and four on passive optically bistable systems. Instabilities and chaos in single- (and multi-) mode lasers with homogeneously and broadened gain media are presented and the influence of an injected signal, loss modulation and also feedback of laser output on this behaviour is treated. Both electrically excited and optically pumped gas lasers are considered, and an analysis of dynamical instabilities in the emission from free electron lasers are presented. Instabilities in passive optically
出版日期Textbook 1987
关键词chaos; laser; optics; quantum optics; semiconductor
版次1
doihttps://doi.org/10.1007/978-3-642-71708-6
isbn_softcover978-3-642-71710-9
isbn_ebook978-3-642-71708-6Series ISSN 0172-7389 Series E-ISSN 2198-333X
issn_series 0172-7389
copyrightSpringer-Verlag Berlin Heidelberg 1987
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Experimental Measurements of Transitions to Pulsations and Chaos in a Single Mode, Unidirectional Riguration popularly assumed in theoretical studies. The active medium is made up of xenon atoms excited in a gas discharge in a mixture with helium. The 3.51 .m transition in xenon provides exceedingly high gain and is inhomogeneously broadened at typical working pressures, providing the optimum situ
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Single- and Multi-Mode Operation of a Laser with an Injected Signalf selected time- dependent studies. The steady-state analysis assumes a plane-wave profile for the laser field and for the incident signal, but is more general than previous models because it applies to a ring-cavity resonator whose mirrors have an arbitrary reflectivity, and to active media with an
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Experimental Observations of Single Mode Laser Instabilities in Optically Pumped Molecular Lasers the Lorenz equations [5.2] describing convection and turbulence in heated fluids, chaotic emission should occur from these lasers. These equations describe the simplest of autonomous laser systems with the minimum number of degrees of freedom, namely three, for the generation of chaotic pulsations.
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Quantum Treatment of Amplified Spontaneous Emission in High-Gain Free-Electron Lasersion in the free-electron laser (FEL) process. A high-gain FEL has been recently operated at Livermore in this amplified spontaneous emission regime. We have developed a fully quantum treatment which includes the initial stage of this regime so that we can describe the onset of the process, evaluate
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Instabilities and Routes to Chaos in Passive All-Optical Resonators Containing Molecular Gasesiscussed theoretically and experimentally. These phenomena have been observed for a wide range of operating conditions in ring and Fabry-Perot resonators containing molecular gases as the nonlinear medium.
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