Optical properties of semiconductor quantum wires


Autoria(s): Citrin, David Scott
Contribuinte(s)

Chang, Yia-Chung

Data(s)

03/05/2011

03/05/2011

1992

01/01/2000

Resumo

This thesis presents theoretical investigations of the sub band structure and optical properties of semiconductor quantum wires. For the subband structure, we employ multiband effective-mass theory and the effective bond-orbital model both of which fully account for the band mixing and material anisotropy. We also treat the structure geometry in detail taking account of such effects as the compositional grading across material interfaces. Based on the subband structure, we calculate optical properties of quantum-wire structures. A recuring theme is the cross-over from one- to ~wo-dimensional behavior in these structures. This complicated behavior procludes the application of simple theoretical models to obtain the electronic structure. In particular, we calculate laser properties of quantum wires grown in V-grooves and find enhanced performance compared with quantum-well lasers. We also investigate optical anisotropy in quantum-wire arrays and propose an electro-optic device based on such structures.

U of I Only

Thesis

Identificador

http://hdl.handle.net/2142/18901

3471707

Idioma(s)

en

Direitos

1992 David Scott Citrin

Palavras-Chave #optics #optical properties #semiconductors #quantum wires #theoretical physics #subband structure
Tipo

text

dissertation/thesis