Highly anisotropic and electric field tunable Zeeman splittings in Mn-doped CdS nanowires


Autoria(s): Zhang, XW; Fan, WJ; Li, SS; Xia, JB
Data(s)

2007

Resumo

The electronic structure, Zeeman splitting, and g factor of Mn-doped CdS nanowires are studied using the k center dot p method and the mean field model. It is found that the Zeeman splittings of the hole ground states can be highly anisotropic, and so can their g factors. The hole ground states vary a lot with the radius. For thin wire, g(z) (g factor when B is along the z direction or the wire direction) is a little smaller than g(x). For thick wire, g(z) is mcuh larger than g(x) at small magnetic field, and the anisotropic factor g(z)/g(x) decreases as B increases. A small transverse electric field can change the Zeeman splitting dramatically, so tune the g(x) from nearly 0 to 70, in thick wire. The anisotropic factor decreases rapidly as the electric field increases. On the other hand, the Zeeman splittings of the electron ground states are always isotropic.

Identificador

http://ir.semi.ac.cn/handle/172111/6804

http://www.irgrid.ac.cn/handle/1471x/63140

Idioma(s)

英语

Fonte

Zhang, XW ; Fan, WJ ; Li, SS ; Xia, JB .Highly anisotropic and electric field tunable Zeeman splittings in Mn-doped CdS nanowires ,PHYSICAL REVIEW B,2007 ,76(19): Art. No. 195306

Palavras-Chave #半导体物理 #WURTZITE QUANTUM WIRES #MAGNETIC SEMICONDUCTORS #PHOTOLUMINESCENCE #TRANSPORT
Tipo

期刊论文