English

Experimental analysis of the spin-orbit coupling dependence on the drift velocity of a spin packet

Mesoscale and Nanoscale Physics 2020-07-01 v2

Abstract

Spin transport was studied in a two-dimensional electron gas hosted in a wide GaAs quantum well occupying two subbands. Using space and time Kerr rotation microscopy to image drifting spin packets under an in-plane accelerating electric field, optical injection and detection of spin polarization were achieved in a pump-probe configuration. The experimental data exhibited high spin mobility and long spin lifetimes allowing to obtain the spin-orbit fields as a function of the spin velocities. Surprisingly, above moderate electric fields of 0.4V/cm with velocities higher than 2μ\mum/ns, we observed a dependence of both bulk and structure-related spin-orbit interactions on the velocity magnitude. A remarkable feature is the increase of the cubic Dresselhaus term to approximately half of the linear coupling when the velocity is raised to 10μ\mum/ns. In contrast, the Rashba coupling for both subbands decreases to about half of its value in the same range. These results yield new information for the application of drift models in spin-orbit fields and about limitations for the operation of spin transistors.

Keywords

Cite

@article{arxiv.2006.00309,
  title  = {Experimental analysis of the spin-orbit coupling dependence on the drift velocity of a spin packet},
  author = {N. M . Kawahala and F. C. D. Moraes and G. M. Gusev and A. K. Bakarov and F. G. G. Hernandez},
  journal= {arXiv preprint arXiv:2006.00309},
  year   = {2020}
}

Comments

5 pages, 3 figures