English

Room temperature spin thermoelectrics in metallic films

Mesoscale and Nanoscale Physics 2014-12-17 v1

Abstract

Considering metallic films at room temperature, we present the first theoretical study of the spin Nernst and thermal Edelstein effects which takes into account dynamical spin-orbit coupling, i.e., direct spin-orbit coupling with the vibrating lattice (phonons) and impurities. This gives rise to two novel processes, namely a dynamical Elliott-Yafet spin relaxation and a dynamical side-jump mechanism. Both are the high-temperature counterparts of the well-known T=0T = 0 Elliott-Yafet and side-jump, central to the current understanding of the spin Hall, spin Nernst and Edelstein effects at low TT. We consider the experimentally relevant regime T>TDT > T_D, with TDT_D the Debye temperature, as the latter is lower than room temperature in transition metals such as Pt, Au and Ta typically employed in spin injection/extraction experiments. We show that the interplay between intrinsic (Bychkov-Rashba type) and extrinsic (dynamical) spin-orbit coupling yields a nonlinear TT- dependence of the spin Nernst and spin Hall conductivities.

Keywords

Cite

@article{arxiv.1409.1809,
  title  = {Room temperature spin thermoelectrics in metallic films},
  author = {Sebastian Tölle and Cosimo Gorini and Ulrich Eckern},
  journal= {arXiv preprint arXiv:1409.1809},
  year   = {2014}
}

Comments

9 pages, 4 figures