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Theoretical Study of the Transverse Dielectric Constant of Superlattices and Their AlloysThe optical properties of III to V binary and ternary compounds and GaAs-Al(x)Ga(1-x)As superlattices are determined by calculating the real and imaginary parts of the transverse dielectric constant. Emphasis is given to determining the influence of different material and superlattice parameters on the values of the index of refraction and absorption coefficient. In order to calculate the optical properties of a material, it is necessary to compute its electronic band structure. This was accomplished by introducing a partition band structure approach based on a combination of the vector k x vector p and nonlocal pseudopotential techniques. The advantages of this approach are that it is accurate, computationally fast, analytical, and flexible. These last two properties enable incorporation of additional effects into the model, such as disorder scattering, which occurs for alloy materials and excitons. Furthermore, the model is easily extended to more complex structures, for example multiple quantum wells and superlattices. The results for the transverse dielectric constant and absorption coefficient of bulk III to V compounds compare well with other one-electron band structure models and the calculations show that for small frequencies, the index of refraction is determined mainly by the contibution of the outer regions of the Brillouin zone.
Document ID
19860019287
Acquisition Source
Legacy CDMS
Document Type
Thesis/Dissertation
Authors
Kahen, K. B.
(Illinois Univ. Urbana-Champaign, IL, United States)
Date Acquired
September 5, 2013
Publication Date
August 1, 1986
Subject Category
Solid-State Physics
Report/Patent Number
NAS 1.26:177198
UILU-ENG-86-2221
NASA-CR-177198
Report Number: NAS 1.26:177198
Report Number: UILU-ENG-86-2221
Report Number: NASA-CR-177198
Accession Number
86N28759
Funding Number(s)
CONTRACT_GRANT: NAG3-507
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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