Interplay between Zeeman interaction and spin-orbit coupling in a two-dimensional semiconductor system
arXiv:cond-mat/0512231 · doi:10.1103/PhysRevB.73.235306
Abstract
We analyse the interplay between Dresselhaus, Bychkov-Rashba, and Zeeman interactions in a two-dimensional semiconductor quantum system under the action of a magnetic field. When a vertical magnetic field is considered, we predict that the interplay results in an effective cyclotron frequency that depends on a spin-dependent contribution. For in-plane magnetic fields, we found that the interplay induces an anisotropic effective gyromagnetic factor that depends on the orientation of the applied field as well as on the orientation of the electron momentum.
5 pages
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Cited by in corpus (8)
- Magnetic focusing of charge carriers from spin-split bands: Semiclassics of a Zitterbewegung effect
- Spin-orbit effects in GaAs quantum wells: Interplay between Rashba, Dresselhaus, and Zeeman interactions
- Cyclotron motion and magnetic focusing in semiconductor quantum wells with spin-orbit coupling
- The energy level crossing behavior and quantum Fisher information in a quantum well with spin-orbit coupling
- Quantum Hall ferromagnetic states and spin-orbit interactions in the fractional regime
- Zitterbewegung of electrons in quantum wells and dots in presence of an in-plane magnetic field
- Charge dynamics and "in plane" magnetic field I: Rashba-Dresselhauss interaction, Majorana fermions and Aharonov-Casher theorems
- Kondo effect in a two-dimensional electron gas in the Persistent Spin Helix regime