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Titlebook: Semiconductor Physics; Karl W. Böer,Udo W. Pohl Reference work 20181st edition Springer International Publishing AG 2018 Band Structure an

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physics. It addresses every fundamental principle and most research topics and areas of application in the field of semiconductor physics. Comprehensive information is provided on crystalline bulk and low-dimensional as well as amporphous semiconductors, including optical, transport, and dynamic properties.978-3-319-69150-3
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Photon–Phonon Interactiondispersion is described by a phonon-polariton, which is observed in inelastic scattering processes. Brillouin scattering at acoustic phonons and Raman scattering at optical phonons provide direct information about the spectrum and symmetry of vibrations in a semiconductor.
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Elasticity and Phononss equivalent to a harmonic oscillator which can be quantized as a phonon. Phonons are one of the most important quasiparticles in solids. They are responsible for all thermal properties and, when interacting with other quasiparticles, for the damping of their motion.
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Band-to-Band Transitionstates extending beyond the band edge, usually as an Urbach tail which decreases exponentially with distance from the band edge. In quantum wells the two-dimensional joint density of states leads to a steplike increase of the absorption for increasing photon energy.
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Interaction of Light with Solids for electrons traveling in the periodic crystal potential. A complete bandgap for propagation along any direction can be created for three-dimensional periodicity; defects given by deviations from periodicity lead to localized states in such photonic crystals, similar to effects in the electronic c
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