Exciton Populations and Correlation Effects in Semiconductor Quantum Wires

In the presented work the dynamical properties of a population of bound excitons in a semiconductor quantum-wire is modelled theoretically. To this end, the Hamilton-operator H of the system is derived. Using the Heisenberg equation, equations of motion for the relevant elements of the reduced densi...

全面介绍

Gespeichert in:
书目详细资料
主要作者: Siggelkow, Sven
其他作者: Koch, Stephan (Prof. Dr.) (BetreuerIn (Doktorarbeit))
格式: Dissertation
语言:英语
出版: Philipps-Universität Marburg 2006
主题:
在线阅读:PDF-Volltext
标签: 添加标签
没有标签, 成为第一个标记此记录!
实物特征
总结:In the presented work the dynamical properties of a population of bound excitons in a semiconductor quantum-wire is modelled theoretically. To this end, the Hamilton-operator H of the system is derived. Using the Heisenberg equation, equations of motion for the relevant elements of the reduced density matrix are obtained from the commutation with H. In our studies, we have have numerically simulated the coupled system of charge-carriers, longitudinal-accoustical (LA) phonons and many-body correlations. In the first part of the presented work, the stability of a population of bound excitons against scattering with LA-phonons is examined. A pronounced dependence on carrier-density and lattice-temperature is observed. The results are compared to calculations with a simple mass-action-law formalism. In the second part, dynamically calculated many-body correlations are used to study the influence of bound electron-hole pairs on exciton-spectra in linear absorption experiments.
实物描述:92 Seiten
DOI:10.17192/z2006.0148