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Titlebook: Quantum Nonlinear Optics; Eiichi Hanamura,Yutaka Kawabe,Akio Yamanaka Textbook 2007 Springer-Verlag Berlin Heidelberg 2007 Laser oscillati

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書目名稱Quantum Nonlinear Optics
編輯Eiichi Hanamura,Yutaka Kawabe,Akio Yamanaka
視頻videohttp://file.papertrans.cn/782/781373/781373.mp4
概述This graduate text on Quantum Nonlinear Optics gives an introductory overview of the fundamentals of this field.In addition, latest results of the frontier of this science are presented.Problems and s
圖書封面Titlebook: Quantum Nonlinear Optics;  Eiichi Hanamura,Yutaka Kawabe,Akio Yamanaka Textbook 2007 Springer-Verlag Berlin Heidelberg 2007 Laser oscillati
描述It was more than ten years ago that an original version of this monograph was published with the title Quantum Optics in Japanese from Iwanami Shoten in Tokyo. Therefore, making the best use of this chance to translate the book into an English version, we have tried to include the exciting developments of the relevant subjects in these ten years, especially novel nonlinear optical responses of materials. The ?rst example of these nonlinear optical phen- ena is laser cooling and subsequent observation of Bose–Einstein and Fermi condensation of neutral atoms. Second, it is now possible to generate f- tosecond laser pulses. Then higher-harmonics in the extreme ultraviolet and soft X-ray regions and higher-order Raman scattering can be generated by irradiating these ultrashort laser pulses on atomic and molecular gases and crystals. These multistep signals are applied to the generation of attosecond laser pulses. Third, interference e?ects of the second harmonics are used to observe the ferroelectric and antiferromagnetic domain structures of crystals with a strongly correlated electronic system. These novel nonlinear optical phenomena could not be treated without the quantized radiati
出版日期Textbook 2007
關(guān)鍵詞Laser oscillation; Nonlinear optical response; Nonlinear spectroscopy; Quantum optics; Radiation field; o
版次1
doihttps://doi.org/10.1007/978-3-540-68484-8
isbn_softcover978-3-642-07610-7
isbn_ebook978-3-540-68484-8
copyrightSpringer-Verlag Berlin Heidelberg 2007
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Statistical Properties of Light, related topics. The degree of optical coherence can be defined quantitatively as the magnitude of correlation of the electromagnetic field at two points separated spatially and temporally. In Sect. 3.1, we give the definition of the first- and the second-order correlation functions. In order to und
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Dynamics of Light,ight and nonlinear optical materials make it possible not only to generate ultrashort light pulses but also to propagate a soliton wave in optical fibers. On the other hand, superradiance and superfluorescence take out excited state energies of materials as a coherent spontaneous emission when the m
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Nonlinear Optical Responses I,e the nonlinear optical responses of atoms, molecules, and solids such as higherharmonic generation, four-wave mixing, parametric oscillation, multiphoton absorption, induced-Raman scattering, etc. In general, the interaction between the radiation field and matter is relatively weak so that the effe
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