English

Angular dependence and symmetry of Rashba spin torque in ferromagnetic heterostructures

Mesoscale and Nanoscale Physics 2015-06-15 v1

Abstract

In a ferromagnetic heterostructure, the interplay between a Rashba spin-orbit coupling and an exchange field gives rise to a current-driven spin torque. In a realistic device setup, we investigate the Rashba spin torque in the diffusive regime and report two major findings: (i) a nonvanishing torque exists at the edges of the device even when the magnetization and effective Rashba field are aligned; (ii) anisotropic spin relaxation rates driven by the Rashba spin-orbit coupling assign the spin torque a general expression T=T\paray(θ)m×(y^×m)+Ty(θ)y^×m+T\paraz(θ)m×(z^×m)+Tz(θ)z^×m{\bm T}=T^y_{\para}(\theta){\bm m}\times(\hat{\bm y}\times{\bm m})+T^y_{\bot}(\theta)\hat{\bm y}\times{\bm m}+T^z_{\para}(\theta){\bm m}\times(\hat{\bm z}\times{\bm m})+T^z_{\bot}(\theta)\hat{\bm z}\times{\bm m}, where the coefficients T\para,y,zT_{\para,\bot}^{y,z} depend on the magnetization direction. Our results agree with recent experiments.

Keywords

Cite

@article{arxiv.1304.4823,
  title  = {Angular dependence and symmetry of Rashba spin torque in ferromagnetic heterostructures},
  author = {Christian Ortiz Pauyac and Xuhui Wang and Mairbek Chshiev and Aurelien Manchon},
  journal= {arXiv preprint arXiv:1304.4823},
  year   = {2015}
}

Comments

4 pages, 4 figues