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Titlebook: Dissipative Systems in Quantum Optics; Resonance Fluorescen Rodolfo Bonifacio Book 1982 Springer-Verlag Berlin Heidelberg 1982 Optische Bis

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書(shū)目名稱(chēng)Dissipative Systems in Quantum Optics
副標(biāo)題Resonance Fluorescen
編輯Rodolfo Bonifacio
視頻videohttp://file.papertrans.cn/282/281650/281650.mp4
叢書(shū)名稱(chēng)Topics in Current Physics
圖書(shū)封面Titlebook: Dissipative Systems in Quantum Optics; Resonance Fluorescen Rodolfo Bonifacio Book 1982 Springer-Verlag Berlin Heidelberg 1982 Optische Bis
描述In studying the radiation-matter interaction, one can take two different approaches. The first is typical of spectroscopy: one considers the interaction between radi- ation and a single atom, i. e. , one studies those phenomena in which the presence of other atoms is irrelevant. The other attitude consists, in contrast, in studying those phenomena which arise just from the simultaneous presence of many atoms. In fact, all the atoms interact with the same electromagnetic field; under suitable conditions, this situation creates strong atom-atom correlations, which in turn give rise to a cooperative behavior of the system as a whole. Cooperative means that the overall behavior is quite different from the superposition of the effects arising from single atoms and is completely unpredictable if one neglects the coup- ling between the atoms induced by their common electromagnetic field. This book contains five complete and up-to-date contributions on the theory and experiments of three coherence effects in radiation-matter interaction: resonance fluorescences, optical bistability, and superfluorescence. They have raised in- creasing interest in recent years from both a fundamental and an
出版日期Book 1982
關(guān)鍵詞Optische Bistabilit?t; Resonanzfluoreszenz; Superfluoreszenz; optics; quantum optics; spectroscopy
版次1
doihttps://doi.org/10.1007/978-3-642-81717-5
isbn_softcover978-3-642-81719-9
isbn_ebook978-3-642-81717-5Series ISSN 0342-6793
issn_series 0342-6793
copyrightSpringer-Verlag Berlin Heidelberg 1982
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Resonance Fluorescence of Atoms in Strong Monochromatic Laser Fields,ion, information on the interaction mechanism between atoms and radiation can be obtained. In the standard fluorescence experiment the frequency distribution of the incident photons is larger than the natural width of the respective transition; as a consequence the correlation time in the photon-ato
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Carol Smart,Jenny Hockey,Allison JamesWe present in extenso the theory of optical bistability in a ring cavity. The plane-wave approximation is used throughout. We illustrate first the semiclassical and second the quantum-statistical treatment.
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Carol Smart,Jenny Hockey,Allison JamesIntrinsic optical bistability is reviewed with emphasis on models and experimental findings. Simple arguments are given to describe absorptive and dispersive bistability. Dispersive bistability is treated in detail. Experimental results are discussed indicating the essentials learned from particular experiments. Future prospects are contemplated.
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Theory of Optical Bistability,We present in extenso the theory of optical bistability in a ring cavity. The plane-wave approximation is used throughout. We illustrate first the semiclassical and second the quantum-statistical treatment.
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Optical Bistability,Intrinsic optical bistability is reviewed with emphasis on models and experimental findings. Simple arguments are given to describe absorptive and dispersive bistability. Dispersive bistability is treated in detail. Experimental results are discussed indicating the essentials learned from particular experiments. Future prospects are contemplated.
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