English

Current-Induced Resonant Motion of a Magnetic Vortex Core: Effect of Nonadiabatic Spin Torque

Other Condensed Matter 2009-11-13 v1

Abstract

The current-induced resonant excitation of a magnetic vortex core is investigated by means of analytical and micromagnetic calculations. We find that the radius and the phase shift of the resonant motion are not correctly described by the analytical equations because of the dynamic distortion of a vortex core. In contrast, the initial tilting angle of a vortex core is free from the distortion and determined by the nonadiabaticity of the spin torque. It is insensitive to experimentally uncontrollable current-induced in-plane Oersted field. We propose that a time-resolved imaging of the very initial trajectory of a core is essential to experimentally estimate the nonadiabaticity.

Keywords

Cite

@article{arxiv.0809.0952,
  title  = {Current-Induced Resonant Motion of a Magnetic Vortex Core: Effect of Nonadiabatic Spin Torque},
  author = {Jung-Hwan Moon and Dong-Hyun Kim and Myung Hwa Jung and Kyung-Jin Lee},
  journal= {arXiv preprint arXiv:0809.0952},
  year   = {2009}
}

Comments

4 pages, 4 figures