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Titlebook: Epioptics; Linear and Nonlinear J. F. McGlip,D. Weaire,C. H. Patterson Book 1995 ECSC-EC-EAEC, Brussels-Luxembourg 1995 Epitaxy.Growth moni

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書目名稱Epioptics
副標題Linear and Nonlinear
編輯J. F. McGlip,D. Weaire,C. H. Patterson
視頻videohttp://file.papertrans.cn/314/313289/313289.mp4
叢書名稱ESPRIT Basic Research Series
圖書封面Titlebook: Epioptics; Linear and Nonlinear J. F. McGlip,D. Weaire,C. H. Patterson Book 1995 ECSC-EC-EAEC, Brussels-Luxembourg 1995 Epitaxy.Growth moni
描述The study of condensed matter using optical techniques, where photons act as both probe and signal, has a long history. It is only recently, however, that the extraction of surface and interface information, with submonolayer resolution, has been shown to be possible using optical techniques (where "optical" applies to electromagnetic radiation in and around the visible region of the spectrum). This book describes these "epioptic" techniques, which have now been quite widely applied to semiconductor surfaces and interfaces. Particular emphasis in the book is placed on recent studies of submonolayer growth on well-characterised semiconductor surfaces, many of which have arisen from CEC DGJGII ESPRIT Basic Research Action No. 3177 "EPIOPTIC", and CEU DGIII ESPRIT Basic Research Action No. 6878 "EASI". Techniques using other areas of the spectrum such as the infra-red region (IR spectroscopy, in its various surface configurations), and the x-ray region (surface x-ray diffraction, x-ray standing wave), are omitted. The optical techniques described use simple lamp or small laser sources and are thus, in principle, easily accessible. Epioptic probes can provide new information on solid-g
出版日期Book 1995
關鍵詞Epitaxy; Growth monitoring; Halbleiter; Oberfl?chenanalyse; Optik; Optiocs; Semionductors; Spektroskopie; el
版次1
doihttps://doi.org/10.1007/978-3-642-79820-7
isbn_softcover978-3-642-79822-1
isbn_ebook978-3-642-79820-7
copyrightECSC-EC-EAEC, Brussels-Luxembourg 1995
The information of publication is updating

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Raman Spectroscopy,of the experimental techniques based on inelastic scattering of light. If the frequency difference between incident and scattered light is in the range below (. = 10. eV, light scattering is termed Rayleigh scattering and Fourier analysis of the detector current yields the change of frequency caused
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Second Harmonic and Sum Frequency Generation,nd these phenomena may be surface sensitive at non-destructive power densities. For centrosymmetric materials, an order of magnitude calculation shows that the surface effect should be at least comparable in size to the higher order nonlocal bulk effects [1]. Initial surface SHG studies in the 1960s
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Conclusions,in particular. Significant advantages over conventional surface spectroscopies have been demonstrated: all pressure ranges and transparent media are accessible; insulators can be studied without the problem of charging effects; buried interfaces can be studied due to the large penetration depth of o
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Reflection Difference Techniques,coefficient, .. At near normal incidence, for example, the reflectance, R, (the ratio of the reflected to incident EM intensity: see Sect. 1.3) is given by: .The optical constants are related to the dielectric function, . by:
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