An intuitive approach to the unified theory of spin-relaxation
Abstract
Spin-relaxation is conventionally discussed using two different approaches for materials with and without inversion symmetry. The former is known as the Elliott-Yafet (EY) theory and for the latter the D'yakonov-Perel' (DP) theory applies, respectively. We discuss herein a simple and intuitive approach to demonstrate that the two seemingly disparate mechanisms are closely related. A compelling analogy between the respective Hamiltonian is presented and that the usual derivation of spin-relaxation times, in the respective frameworks of the two theories, can be performed. The result also allows to obtain the less canonical spin-relaxation regimes; the generalization of the EY when the material has a large quasiparticle broadening and the DP mechanism in ultrapure semiconductors. The method also allows a practical and intuitive numerical implementation of the spin-relaxation calculation, which is demonstrated for MgB that has anomalous spin-relaxation properties.
Keywords
Cite
@article{arxiv.1710.07967,
title = {An intuitive approach to the unified theory of spin-relaxation},
author = {L. Szolnoki and B. Dora and A. Kiss and J. Fabian and F. Simon},
journal= {arXiv preprint arXiv:1710.07967},
year = {2017}
}
Comments
6 pages, 3 figures+Appendix (4 pages, 2 figures)