Persistent charge and spin currents in a 1D ring with Rashba and Dresselhaus spin-orbit interactions by excitation with a terahertz pulse
arXiv:1111.2949 · doi:10.1016/j.physe.2012.08.017
Abstract
Persistent, oscillatory charge and spin currents are shown to be driven by a two-component terahertz laser pulse in a one-dimensional mesoscopic ring with Rashba-Dresselhaus spin orbit interactions (SOI) linear in the electron momentum. The characteristic interference effects result from the opposite precession directions imposed on the electron spin by the two SOI couplings. The time dependence of the currents is obtained by solving numerically the equation of motion for the density operator, which is later employed in calculating statistical averages of quantum operators on few electron eigenstates. The parameterization of the problem is done in terms of the SOI coupling constants and of the phase difference between the two laser components. Our results indicate that the amplitude of the oscillations is controlled by the relative strength of the two SOI's, while their frequency is determined by the difference between the excitation energies of the electron states. Furthermore, the oscillations of the spin current acquire a beating pattern of higher frequency that we associate with the nutation of the electron spin between the quantization axes of the two SOI couplings. This phenomenon disappears at equal SOI strengths, whereby the opposite precessions occur with the same probability.
10 pages 9 figures
References in corpus (9)
- An Exact SU(2) Symmetry and Persistent Spin Helix in a Spin-Orbit Coupled System
- Persistent current in ballistic mesoscopic rings with Rashba spin-orbit coupling
- Spin states and persistent currents in mesoscopic rings: spin-orbit interactions
- Modulating Unpolarized Current in Quantum Spintronics: Visibility of Spin-Interference Effects in Multichannel Aharonov-Casher Mesoscopic Rings
- Electronic charge and spin density distribution in a quantum ring with spin-orbit and Coulomb interactions
- Non-adiabatic current generation in a finite width semiconductor ring
- Net current generation in a 1D quantum ring at zero magnetic field
- Non-adiabatic generation of a pure spin current in a 1D quantum ring with spin-orbit interaction
- Orbital magnetic phase and pure persistent spin current in spin-orbit coupling mesoscopic rings