标题: 砷化铟单量子点偏振萤光之光谱研究
Spectroscopic studies of polarized photoluminescence of InAs single quantum dots
作者: 周湘谕
Chou, Hsiang-Yu
张文豪
Chang, Wen-Hao
电子物理系所
关键字: 砷化铟;量子点;精细结构分裂;偏振不对称;价电带混合效应;InAs;quantum dot;fine structure splitting;polarization anisotropy;valence-band mixing
公开日期: 2009
摘要: 砷化铟单量子点的激子萤光具有精细结构分裂以及偏振不对称性,且两者彼此相关。激子萤光的精细结构分裂源于量子点的形状不对称,而偏振不对称性则是由平面上应变不对称造成的重电洞能态和轻电洞能态混合所引起。本文中将根据Bir-Pikus汉米尔顿方程式,探讨精细结构分裂、重电洞能态和轻电洞能态混合以及偏振不对称性之间的相互作用。此外,我们可以利用外加水平磁场改变激子能态的精细结构分裂,使其值由负值随着磁场增加而变为正值。当精细结构分裂为零,激子能态即为简并。
The fine structure splitting (FSS) and polarization anisotropy (PA) of exciton emissions from single InAs/GaAs quantum dots (QDs) are investigated. A systematic correlation between the FSS and PA is observed. The excitonic FSS is attributed to the QD shape asymmetry reduction, while the PA is a direct consequence of the mixing between the heavy-hole (hh) and light-hole (lh) states due to the anisotropy in-plane strain distribution. Based on the formulism of the Bir-Pikus Hamiltonian, the interplay between the FSS, the hh-lh mixing, as well as the PA are discussed. An in-plane magnetic field is used to manipulate the excitonic FSS in QDs. We find that, for QDs with negative FSS, the degeneracy of the exciton states can be recovered under an in-plane magnetic field.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT079721511
http://hdl.handle.net/11536/44997
显示于类别:Thesis


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