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Titlebook: Spectroscopy of Semiconductor Microstructures; Gerhard Fasol,Annalisa Fasolino,Paolo Lugli Book 1989 Springer Science+Business Media New Y

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Spectroscopy on One-Dimensional Electronic Systemss strongly governed by collective effects, which gives the FIR resonances the character of local plasmon modes. In the multi-layered quantum wire structures optical and acoustical type of layer-coupled plasmon modes are observed.
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MOCVD-Grown Atomic Layer Superlatticesused the double delta-doped structure to fabricate nano-structure devices with the aid of electron-beam-induced resist process, demonstrating a potential interest of universal field-effect-transistor.
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Raman Scattering from Phonons in Quasiperiodic Superlattices Based on Generalizations of the Fibonacayers of different materials and thicknesses we have attached a basis to the quasiperiodic lattice. Table 1 illustrates how the recursion relation (1) is used to build up the first 5 generations in terms of S. and S..
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Structural and Optical Properties of Periodic Fibonacci Superlattices of the quasilattice (which generalizes the notion of periodic reciprocal space) is made of a dense but countable (d.c.) set of delta functions., and that the allowed energies for excitations span a Cantor set.. The simplest models were developped for the paradigmic one dimensional (1D) quasicrystal: the Fibonacci superlattice.
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Phonons of Ideal (001) Superlattices: Application to Si/GeWe present a discussion of the vibrational properties of semiconductor superlattices in terms of matching of bulk waves at interfaces. Qualitative predictions are then compared with the results of actual calculations performed for the physical system Si/Ge. The relevance of our results for structural characterization is discussed.
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https://doi.org/10.1007/978-1-4757-6565-6Absorption; Dispersion; Energie; exciton; nonlinear optics; optical properties; optics; semiconductor; simul
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