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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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楼主: decoction
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Raman Spectroscopy,used to determine the frequency change. The inelastic light scattering is then termed Brillouin scattering. Finally, Raman scattering describes larger frequency differences (above . = 10. eV) where grating monochromators can be utilised for frequency analysis of the scattered light.
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Conclusions, thin films, surface and interfaces in all pressure regimes is central to the development of new materials and processes, particularly in this evolving era of nanoscale structures. It is these advantages over conventional surface spectroscopies which have driven the development of epioptics.
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Second Harmonic and Sum Frequency Generation, under non-UHV conditions detected a surface signal but found no dependence on adsorbate or surface structure, and this held back the development of the field until the early 1980s, when Shen in Berkeley established the potential of SHG as a surface probe [2].
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Introduction,e increasing activity in the area, justify distinguishing it from more conventional optical studies. The term “epioptics” has been coined for this special area (from the Greek “epi” meaning “upon”) [2].
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The Directed Attention Progression,m their vacuum values to the bulk values. We recognise three ill-defined regions (in the sense that their edges are not sharp), which are important in determining the optical response of a surface: I the vacuum region; II the (narrow) selvedge region; HI the bulk. Since the advent of modern surface
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