Electronic structures of cubic lattice quantum dots
- 1 October 1998
- journal article
- research article
- Published by AIP Publishing in Journal of Applied Physics
- Vol. 84 (7) , 3710-3713
- https://doi.org/10.1063/1.368548
Abstract
In this article, we give the electronic structure and optical transition matrix elements of coupled quantum dots(QDs) arranged as different cubic lattices: simple cubic (sc), body-centered cubic (bcc), and face-centered cubic (fcc) superlattices. The results indicate that electron and hole energies of bcc, sc, and fcc superlattices are the lowest, the highest, and the middle, respectively, for the same subband under the same QD density or under the same superlattice constant. For a fixed QD density, the confinement effects in sc, fcc, and bcc superlattices are the strongest, the middle, and the weakest, respectively. There are only one, two, and four confined energy bands, with energies lower than the potential barrier for sc, bcc, and fcc QDsuperlattices, respectively. The results have great significance for researching and making semiconductorquantum dot devices.This publication has 1 reference indexed in Scilit:
- Magnetic-field effects on one- and two-hole states in parabolic quantum dotsPhysical Review B, 1997