Strong Enhancement of Rashba spin-orbit coupling with increasing anisotropy in the Fock-Darwin states of a quantum dot
arXiv:1201.4842 · doi:10.1103/PhysRevB.85.153301
Abstract
We have investigated the electronic properties of elliptical quantum dots in a perpendicular external magnetic field, and in the presence of the Rashba spin-orbit interaction. Our work indicates that the Fock-Darwin spectra display strong signature of Rashba spin-orbit coupling even for a low magnetic field, as the anisotropy of the quantum dot is increased. An explanation of this pronounced effect with respect to the anisotropy is presented. The strong spin-orbit coupling effect manifests itself prominently in the corresponding dipole-allowed optical transitions, and hence is susceptible to direct experimental observation.
5 pages, 4 figures
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- Super-intense highly anisotropic optical transitions in anisotropic quantum dots
- Spin transition rates in nanowire superlattices: Rashba spin-orbit coupling effects
- Spin-orbit coupling and spin relaxation of hole states in [001]- and [111]-orientedquantum dots of various geometry
- On the oscillating properties of a two-electron quantum dot in the presence of a magnetic field
- Repulsively interacting fermions in a two-dimensional deformed trap with spin-orbit coupling
- Spin-Orbit Coupling in Deformed Harmonic Traps