The Rashba spin-orbit coupling and the exchange electron-hole interaction of two-dimensional magnetoexcitons
Authors:
Moscalenco, Sveatoslav; Podlesnîi, Igor; Kiseliova, Elena; Leleacov, Igor; Gherciu, Lidia
Summary:
The Rashba spin-orbit coupling (RSOC) in the case of two-dimensional (2D) electrons and
holes in a strong perpendicular magnetic field is studied. The spinor-type wave functions are
characterized by different numbers of Landau levels in different spin projections. For electrons,
they differ by 1 as was established earlier by Rashba [1], whereas for holes they differ by 3. Two
lowest electron states and four lowest hole states of Landau quantization give rise to eight 2D
magnetoexciton states. The exchange electron-hole interaction in the frame of these states is
investigated.
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Crossref
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BibTeX
@article{ibn_4299, author = {Moscalenco, S.A. and Podlesnîi, I.V. and Kiseliova, E. and Leleacov, I.A. and Gherciu, L.}, title = {The Rashba spin-orbit coupling and the exchange electron-hole interaction of two-dimensional magnetoexcitons }, journal = {Moldavian Journal of the Physical Sciences}, year = {2011}, volume = {10 (1)}, pages = {19-25}, month = {Feb}, abstract = {(EN) The Rashba spin-orbit coupling (RSOC) in the case of two-dimensional (2D) electrons and holes in a strong perpendicular magnetic field is studied. The spinor-type wave functions are characterized by different numbers of Landau levels in different spin projections. For electrons, they differ by 1 as was established earlier by Rashba [1], whereas for holes they differ by 3. Two lowest electron states and four lowest hole states of Landau quantization give rise to eight 2D magnetoexciton states. The exchange electron-hole interaction in the frame of these states is investigated. }, url = {https://ibn.idsi.md/vizualizare_articol/4299}, }
DataCite
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Dublin Core
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