|
Proceedings of the Yerevan State University, series Physical and Mathematical Sciences, 2017, Volume 51, Issue 1, Pages 117–120
(Mi uzeru345)
|
|
|
|
Physics
Solid State
Unique properties of $\mathrm{ZnO}$ quantum rings
A. Kh. Manaselyan Chair of Solid State Physics YSU, Armenia
Abstract:
Electronic states and optical transitions of a $\mathrm{ZnO}$ quantum ring containing few interacting electrons in an applied magnetic field are found to be very different from those in a conventional semiconductor system, such as a $\mathrm{GaAs}$ ring. Strong Zeeman and Coulomb interactions of the $\mathrm{ZnO}$ system, exert a profound influence on the electron states and on the optical properties of the ring. In particular, our results indicate that the Aharonov–Bohm effect in a $\mathrm{ZnO}$ quantum ring strongly depends on the electron number.
Keywords:
quantum ring, Aharonov–Bohm effect.
Received: 22.12.2016 Accepted: 22.12.2016
Citation:
A. Kh. Manaselyan, “Unique properties of $\mathrm{ZnO}$ quantum rings”, Proceedings of the YSU, Physical and Mathematical Sciences, 51:1 (2017), 117–120
Linking options:
https://www.mathnet.ru/eng/uzeru345 https://www.mathnet.ru/eng/uzeru/v51/i1/p117
|
Statistics & downloads: |
Abstract page: | 110 | Full-text PDF : | 33 | References: | 29 |
|