BASTARD WAVE MECHANICS APPLIED TO SEMICONDUCTOR HETEROSTRUCTURES PDF

Miscellaneous Young, P. A semi-empirical theory based on the envelope function approach and k [center dot] p perturbation theory is developed and applied to the description of the electronic states and optical properties of two related classes of semiconductor heterostructures, superlattices and quantum wells. This theory treats superconductor heterostructures as a new class of perfectly periodic, though highly anisotropic, crystals with their own crystal momentum and crystal coordinate representations. The only inputs to this theory are an empirical parameterization of the bulk III-V and II-VI zinc-blend constituent semiconductors and a value for the valence band offset at the heterointerfaces. A superlattice K [center dot] p perturbation theory is formulated and used to determine the electronic states at finite K which form the basis for a crystal momentum representation. The superlattice crystal momentum representation is transformed into a crystal coordinate representation in order to treat the effects of the electron-hole Coulomb interaction in superlattices and quantum wells.

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Bastard Wave mechanics applied to semiconductor heterostructures by G. Explores various consequences of one-dimensional size-quantization on the most basic physical properties of heterolayers. Beginning with basic quantum mechanical properties of idealized quantum wells and superlattices, it discusses the occurrence of bound states when the heterostructure is imperfect or when it is shone with near bandgap light.

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Wave mechanics applied to semiconductor heterostructures

Cancel Forgot your password? Energy Levels in Modulation-Doped Heterostructures. Remember me on this computer. By using our website you agree to our use of cookies. Description Spplied book is specifically concerned with the basic electronic and optical properties of two dimensional semiconductor heterostructures based save III-V and II-Vi compounds. Looking for beautiful books?

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