Spin drift and diffusion in one- and two-subband helical systems
arXiv:1608.05437 · doi:10.1103/PhysRevB.95.125119
Abstract
The theory of spin drift and diffusion in two-dimensional electron gases is developed in terms of a random walk model incorporating Rashba, linear and cubic Dresselhaus, and intersubband spin-orbit couplings. The additional subband degree of freedom introduces new characteristics to the persistent spin helix (PSH) dynamics. As has been described before, for negligible intersubband scattering rates, the sum of the magnetization of independent subbands leads to a checkerboard pattern of crossed PSHs with long spin lifetime. For strong intersubband scattering we model the fast subband dynamics as a new random variable, yielding a dynamics set by averaged spin-orbit couplings of both subbands. In this case the crossed PSH becomes isotropic, rendering circular (Bessel) patterns with short spin lifetime. Additionally, a finite drift velocity breaks the symmetry between parallel and transverse directions, distorting and dragging the patterns. We find that the maximum spin lifetime shifts away from the PSH regime with increasing drift velocity. We present approximate analytical solutions for these cases and define their domain of validity. Effects of magnetic fields and initial package broadening are also discussed.
14 pages, 6 figures
References in corpus (16)
- An Exact SU(2) Symmetry and Persistent Spin Helix in a Spin-Orbit Coupled System
- Emergence of the persistent spin helix in semiconductor quantum wells
- All-electric all-semiconductor spin field effect transistors
- Direct mapping of the formation of a persistent spin helix: Supplementary information
- Zitterbewegung of electronic wave packets in semiconductor nanostructures
- Direct determination of spin orbit interaction coefficients and realization of the persistent spin helix symmetry
- Intersubband-induced spin-orbit interaction in quantum wells
- Chirality induced anomalous-Hall effect in helical spin crystals
- Gate-controlled spin-orbit interaction in a parabolic GaAs/AlGaAs quantum well
- Non-diffusive spin dynamics in a two-dimensional electron gas
- Spin-orbit interaction in GaAs wells: From one to two subbands
- Theory of coupled spin-charge transport due to spin-orbit interaction in inhomogeneous two-dimensional electron liquids
- Suppressed decay of a laterally confined persistent spin helix
- Datta-Das type spin-field effect transistor in non-ballistic regime
- Ballistic side jump motion of electrons and holes in semiconductor quantum wells
- Spin polarization in biased Rashba-Dresselhaus two-dimensional electron systems