Exciton states and optical spectra in CdSe nanocrystallite quantum dots


Autoria(s): Li JB; Xia JB
Data(s)

2000

Resumo

By using the hole effective-mass Hamiltonian for semiconductors with the wurtzite structure, we have studied the exciton states and optical spectra in CdSe nanocrystallite quantum dots. The intrinsic asymmetry of the hexagonal lattice structure and the effect of spin-orbital coupling (SOC) on the hole states are investigated. It is found that the strong SOC limit is a good approximation for hole states. The selection rules and oscillator strengths for optical transitions between the conduction- and valence-band states are obtained. The Coulomb interaction of exciton states is also taken into account. In order to identify the exciton states, we use the approximation of eliminating the coupling of Gamma(6)(X, Y) with Gamma(1)(Z) states. The results are found to account for most of the important features of the experimental photoluminescence excitation spectra of Norris ct nl. However, if the interaction between Gamma(6)(X, Y) and Gamma(1)(Z) states is ignored, the optically passive P-x state cannot become the ground hole state for small CdSe quantum dots of radius less than 30 Angstrom. It is suggested that the intrinsic asymmetry of the hexagonal lattice structure and the coupling of Gamma(6)(X,Y) with Gamma(1)(Z) states are important for understanding the "dark exciton" effect.

Identificador

http://ir.semi.ac.cn/handle/172111/12530

http://www.irgrid.ac.cn/handle/1471x/65235

Idioma(s)

英语

Fonte

Li JB; Xia JB .Exciton states and optical spectra in CdSe nanocrystallite quantum dots ,PHYSICAL REVIEW B,2000,61(23):15880-15886

Palavras-Chave #半导体物理 #ELECTRONIC-STRUCTURE #SEMICONDUCTOR CLUSTERS #SIZE DEPENDENCE #ENERGY-LEVELS #CRYSTALLITES #ASSIGNMENT #WURTZITE #SPHERES #BANDS #DARK
Tipo

期刊论文