Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7938905 | Superlattices and Microstructures | 2018 | 22 Pages |
Abstract
The electronic structures and absorption spectra of Mn-doped GaAs nanowires in the magnetic field are calculated via eight-band kâ
p theory. During the calculation, the optical transitions satisfying the selection rule of nanowires at different wave vectors are considered. We find that (i) the shape of Ï absorption spectra is substantially different from that of Ï absorption spectra whether the radius is 3â¯nm or 6â¯nm, and more strong peaks will appear in Ï and Ï absorption spectra when the radius increases from 3â¯nm to 6â¯nm; (ii) the shape of Ï absorption spectra is almost unchanged even if the magnetic field increases to 30â¯T, while it can be affected slightly by increasing the concentration of manganese ions; (iii) two Ï absorption spectra can be separated by the magnetic field, and the separation between Ï+ and Ïâ absorption spectra will increase as the increase of the magnetic field and the concentration of manganese ions; (iv) the intensities of the first strong peak in Ï+ absorption spectra will become larger than that of the first strong peak in Ïâ absorption spectra gradually as the increase of the magnetic field and the concentration of manganese ions.
Related Topics
Physical Sciences and Engineering
Materials Science
Electronic, Optical and Magnetic Materials
Authors
Wen Xiong, Jian-Wei Wang,