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Titlebook: Excitonic Processes in Solids; Masayasu Ueta,Hiroshi Kanzaki,Eiichi Hanamura Textbook 1986 Springer-Verlag Berlin Heidelberg 1986 Absorpti

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書目名稱Excitonic Processes in Solids
編輯Masayasu Ueta,Hiroshi Kanzaki,Eiichi Hanamura
視頻videohttp://file.papertrans.cn/319/318410/318410.mp4
叢書名稱Springer Series in Solid-State Sciences
圖書封面Titlebook: Excitonic Processes in Solids;  Masayasu Ueta,Hiroshi Kanzaki,Eiichi Hanamura Textbook 1986 Springer-Verlag Berlin Heidelberg 1986 Absorpti
描述An exciton is an electronic excitation wave consisting of an electron-hole pair which propagates in a nonmetallic solid. Since the pioneering research of Fren- kel, Wannier and the Pohl group in the 1930s, a large number of experimental and theoretical studies have been made. Due to these investigations the exciton is now a well-established concept and the electronic structure has been clarified in great detail. The next subjects for investigation are, naturally, dynamical processes of excitons such as excitation, relaxation, annihilation and molecule formation and, in fact, many interesting phenomena have been disclosed by recent works. These excitonic processes have been recognized to be quite important in solid-state physics because they involve a number of basic interactions between excitons and other elementary excitations. It is the aim of this quasi monograph to describe these excitonic processes from both theoretical and experimental points of view. we take a few To discuss and illustrate the excitonic processes in solids, important and well-investigated insulating crystals as playgrounds for excitons on which they play in a manner characteristic of each material. The selec
出版日期Textbook 1986
關(guān)鍵詞Absorption; Solids; Sorption; band structure; chemical reaction; crystal; dispersion; electron; metals; scatt
版次1
doihttps://doi.org/10.1007/978-3-642-82602-3
isbn_softcover978-3-642-82604-7
isbn_ebook978-3-642-82602-3Series ISSN 0171-1873 Series E-ISSN 2197-4179
issn_series 0171-1873
copyrightSpringer-Verlag Berlin Heidelberg 1986
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L. Rodríguez-Hahn,B. Esquivel,J. Cárdenasin solids and when excitons are created at such a high density that they enter each other’s range of interaction before their decay, they condense into the more stable states of elementary excitations, i.e., excitonic molecules (EM) or electron-hole (e-h) metallic droplets. The type of condensation
板凳
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M. Petitou,C. A. A. van Boeckelions. The CuCl crystal is the first case where the excitonic molecule (EM) has been found to be created through exciton-exciton collisions. The EM is annihilated radiatively leaving an exciton behind. It can also be created directly through two-photon excitation with giant oscillator strength. Raman
地板
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https://doi.org/10.1007/978-3-7091-6227-9orough investigations can be made both experimentally and theoretically. Furthermore, there are specific features in the properties of condensed rare gases. First, the rare-gas atoms have closed electron shells and do not form stable diatomic molecules, so consequently only a small cohesive energy d
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https://doi.org/10.1007/978-3-7091-6351-1lides are clearly different from those of alkali halides, e.g., a small band gap energy with a large dielectric constant, and excellent photoconductivity as well as ionic conductivity. Furthermore, it is accepted that these features are closely related to the application of silver halides in photogr
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The Naturally Occurring Coumarins,, it does not carry charges as an electric current in an externally applied electric field. If the energy of the incident light is higher than the ionization threshold energy of the exciton, equal numbers of free electrons and holes can be formed as a result of the ionization of excitons. The excite
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