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Titlebook: Collective Excitations in Solids; Baldassare Bartolo Book 1983 Plenum Press, New York 1983 crystal.crystal structure.diffusion.dispersion.

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楼主: Daidzein
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Inelastic Scattering of Fast Particles by Plasmonsrobes will be explained for both bulk transmission and for surface reflection geometries in terms of coherent excitation of plasmons. A recent method in which the particle probe is internally excited by scattering off plasmons will also be studied.
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Surface Collective Excitationsduction to the Green’s function theory of surface vibrations in ionic crystals. Finally the recent progress in the spectroscopy of surface phonons by means of atom scattering is mentioned with an illustration of the late achievement in the theoretical interpretation of inelastic spectra.
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Introduction to Exciton Physicss are found within the gap. These states, called excitons, play a large role in determining the optical properties of nonmetals. We discuss the electronic structure of excitons, their interactions with phonons and photons, and their further role of transporting excitation energy.
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Excitons in Insulatorspictures of an exciton in crystalline materials. Excitons in wide gap insulators belong to the intermediate coupling case..Our presentation will be essentially confined to the aspects of free and/or self-trapped (localized) excitons in alkali halides and rare gas solids. On that account, we will pre
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Inelastic Scattering of Fast Particles by Plasmonsrface geometries and model hamil-tonians are constructed for the description of the approximate independent boson behaviour of these collective electronic degrees of freedom and for their interaction with charged particle probes. In the second part, a number of applications in various plasmon spectr
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