Electric-field induced spin excitations in two-dimensional spin-orbit coupled systems
Abstract
Rigorous coupled spin-charge drift-diffusion equations are derived from quantum-kinetic equations for the spin-density matrix that incorporate effects due to k-linear spin-orbit interaction, an in-plane electric field, and the elastic scattering on nonmagnetic impurities. The explicit analytical solution for the induced magnetization exhibits a pole structure, from which the dispersion relations of spin excitations are identified. Applications of the general approach refer to the excitation of long-lived field-induced spin waves by optically generated spin and charge patterns. This approach transfers methods known in the physics of space-charge waves to the treatment of spin eigenmodes. In addition, the amplification of an oscillating electric field by spin injection is demonstrated.
Cite
@article{arxiv.0807.2142,
title = {Electric-field induced spin excitations in two-dimensional spin-orbit coupled systems},
author = {P. Kleinert and V. V. Bryksin},
journal= {arXiv preprint arXiv:0807.2142},
year = {2009}
}
Comments
17 pages, 3 figures