Article ID Journal Published Year Pages File Type
1552462 Superlattices and Microstructures 2016 16 Pages PDF
Abstract

•Electronic structure of CdSe/CdS nanowires are calculated.•The hole states are labeled in detail.•The radial probability densities of several hole states are presented.•The magnetoabsorption spectra with different Rc and T are shown.

The electronic structures of CdSe/CdS core-shell nanowires are calculated based on the effective-mass theory, and it is found that the hole states in CdSe/CdS core-shell nanowires are strongly mixed, which are very different from the hole states in CdSe or CdS nanowires. In addition, we find the three highest hole states at the Γ point are almost localized in the CdSe core and the energies of the hole states in CdSe/CdS core-shell nanowires can be enhanced greatly when the core radius Rc increases and the total radius R   is fixed. The degenerate hole states are split by the magnetic field, and the split energies will increase when |Jh||Jh| increases from 1/2 to 7/2, while they are almost not influenced by the change of the core radius Rc. The absorption spectra of CdSe/CdS core-shell nanowires at the Γ point are also studied in the magnetic field when the temperature T is considered, and we find there are only two peaks will arise if the core radius Rc and the temperature T increase. The intensity of each optical absorption can be considerably enhanced by increasing the core radius Rc when the temperature T is fixed, it is due to the increase of their optical transition matrix element. Meanwhile, the intensity of each optical absorption can be decreased when the temperature T increases and the core radius Rc is fixed, and this is because the Fermi-Dirac distribution function of the corresponding hole states will increase as the increase of the temperature T.

Related Topics
Physical Sciences and Engineering Materials Science Electronic, Optical and Magnetic Materials
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