Suppression of spin-orbit effects in 1D system
arXiv:cond-mat/0410393 · doi:10.1209/epl/i2004-10294-2
Abstract
We report the absence of spin effects such as spin-galvanic effect, spin polarization and spin current under static electric field and inter-spin-subband absorption in 1D system with spin-orbit interaction of arbitrary form. It was also shown that the accounting for the direct interaction of electron spin with magnetic field violates this statement.
8 pages, 1Figure
References in corpus (5)
- Spin-orbit coupling effects on quantum transport in lateral semiconductor dots
- Dissipation effects in spin-Hall transport of electrons and holes
- Dynamical spin-electric coupling in a quantum dot
- Spin sensitive bleaching and monopolar spin orientation in quantum wells
- Weak localization and conductance fluctuations in a quantum dot with parallel magnetic field and spin-orbit scattering
Cited by in corpus (6)
- Tuning the electrical resistivity of semiconductor thin films by nanoscale corrugation
- Theory of spin noise in nanowires
- Curvature effects on surface electron states in ballistic nanostructures
- High-temperature Aharonov-Bohm-Casher interferometer
- Spin-orbit coupling and resonances in the conductance of quantum wires
- Current-induced spin orientation in semiconductors and low-dimensional structures