English

Donor-driven spin relaxation in multi-valley semiconductors

Materials Science 2014-10-14 v1 Mesoscale and Nanoscale Physics

Abstract

We present a theory for spin relaxation of electrons due to scattering off the central-cell potential of impurities in silicon. Taking into account the multivalley nature of the conduction band and the violation of translation symmetry, the spin-flip amplitude is dominated by this short-range impurity scattering after which the electron is transferred to a valley on a different axis in kk-space (the so called ff-process). These ff-processes dominate the spin relaxation at all temperatures, where scattering off the impurity central-cell dominate at low temperatures, and scattering with Σ\Sigma-axis phonons at elevated temperatures. To the best of our knowledge, the theory is the first to explain and accurately quantify the empirically-found dependence of spin relaxation on the impurity identity. Accordingly, the new formalism fills a longstanding gap in the spin relaxation theory of nn-type silicon, and it is valuable for characterization of silicon-based spintronic devices.

Keywords

Cite

@article{arxiv.1407.0725,
  title  = {Donor-driven spin relaxation in multi-valley semiconductors},
  author = {Yang Song and Oleg Chalaev and Hanan Dery},
  journal= {arXiv preprint arXiv:1407.0725},
  year   = {2014}
}

Comments

4 pages of main text, 7 pages of appendices, 2 Figures

R2 v1 2026-06-22T04:53:53.056Z