# Spin-orbit Coupling Effects in Two-Dimensional Electron and Hole Systems

@inproceedings{Winkler2003SpinorbitCE, title={Spin-orbit Coupling Effects in Two-Dimensional Electron and Hole Systems}, author={Roland G. Winkler}, year={2003} }

Introduction.- Band Structure of Semiconductors.- The Extended Kane Model.- Electron and Hole States in Quasi 2D Systems.- Origin of Spin-Orbit Coupling Effects.- Inversion Asymmetry Induced Spin Splitting.- Anisotropic Zeeman Splitting in Quasi 2D Systems.- Landau Levels and Cyclotron Resonance.- Anomalous Magneto-Oscillations.- Conclusions.- Notation and Symbols.- Quasi Degenerate Perturbation Theory.- The Extended Kane Model: Tables.- Band Structure Parameters.

## 1,829 Citations

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Spin–orbit coupling effects in one-dimensional ballistic quantum wires

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We study the spin-dependent electronic transport through a one-dimensional ballistic quantum wire in the presence of Rashba spin–orbit interaction. In particular, we consider the effect of the…

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We study the band structure modulation and spin-Hall effect of a two-dimensional heavy hole system with k-Rashba spin-orbit coupling (RSOC), irradiated by linearly polarized light. We find that the…

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We study spin dynamics in a two-dimensional electron gas with a pure gauge non-Abelian spin-orbit field, for which systems with balanced Rashba and Dresselhaus spin-orbit couplings, and the 110-axis…

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We theoretically investigate the electron transport and spin polarization of two coupled quantum wells with Dresselhaus spin-orbit interaction. In analogy with the optical dual-channel directional…

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Evidence is presented for the finite wave vector crossing of the two lowest one-dimensional spin-split subbands in quantum point contacts fabricated from two-dimensional hole gases with strong…

Ultrafast spin dynamics including spin-orbit interaction in semiconductors.

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This Letter presents a theoretical investigation of ultrafast spin-dependent carrier dynamics in semiconductors due to strong spin-orbit coupling using holes in bulk GaAs as a model system, and obtains spin-relaxation times in quantitative agreement with measured hole-spin relaxation times.

Spin-orbit symmetries of conduction electrons in silicon.

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A spin-dependent Hamiltonian is derived that captures the symmetry of the zone edge states in silicon and can be used to study spin properties of electrons in silicon.

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