Electronic spin precession in semiconductor quantum dots with spin-orbit coupling
arXiv:cond-mat/0208425 · doi:10.1103/PhysRevB.66.235322
Abstract
The electronic spin precession in semiconductor dots is strongly affected by the spin-orbit coupling. We present a theory of the electronic spin resonance at low magnetic fields that predicts a strong dependence on the dot occupation, the magnetic field and the spin-orbit coupling strength. Coulomb interaction effects are also taken into account in a numerical approach.
5 pages, 4 figures
References in corpus (5)
- Spin-orbit coupling effects on quantum transport in lateral semiconductor dots
- Quantum dots with Rashba spin-orbit coupling
- Origin of enhanced dynamic nuclear polarization and all-optical nuclear magnetic resonance in GaAs quantum wells
- Role of spin-orbit coupling in the far infrared absorption of lateral semiconductor dots
- Spin switching in semiconductor quantum dots through spin-orbit coupling
Cited by in corpus (16)
- Dynamical spin-electric coupling in a quantum dot
- Spin properties of single electron states in coupled quantum dots
- Spin-orbit coupling and intrinsic spin mixing in quantum dots
- Spin relaxations in semiconductor quantum dots
- Spin-orbit-driven coherent oscillations in a few-electron quantum dot
- Hole spin relaxation in semiconductor quantum dots
- Electron Correlations in a Quantum Dot with Bychkov-Rashba Coupling
- Spin splitting and precession in quantum dots with spin-orbit coupling: the role of spatial deformation
- Spin-orbit effects in GaAs quantum wells: Interplay between Rashba, Dresselhaus, and Zeeman interactions
- Spin relaxation in quantum dots with random spin-orbit coupling
- Quantum Monte Carlo study of circular quantum dots in presence of Rashba interaction
- Nonlinear Spin-Charge Dynamics in a Driven Double Quantum Dot
- Zeeman energy and anomalous spin splitting in lateral GaAs quantum dots
- Spin-orbit effects on the Larmor dispersion relation in GaAs quantum wells
- Chaotic spin-dependent electron dynamics in a field-driven double dot potential
- Dynamical spin properties of confined Fermi and Bose systems in presence of spin-orbit coupling