Nonlinear magnetic vortex dynamics in a circular nanodot excited by spin-polarized current

Nanoscale Res Lett. 2014 Aug 8;9(1):386. doi: 10.1186/1556-276X-9-386. eCollection 2014.

Abstract

We investigate analytically and numerically nonlinear vortex spin torque oscillator dynamics in a circular magnetic nanodot induced by a spin-polarized current perpendicular to the dot plane. We use a generalized nonlinear Thiele equation including spin-torque term by Slonczewski for describing the nanosize vortex core transient and steady orbit motions and analyze nonlinear contributions to all forces in this equation. Blue shift of the nano-oscillator frequency increasing the current is explained by a combination of the exchange, magnetostatic, and Zeeman energy contributions to the frequency nonlinear coefficient. Applicability and limitations of the standard nonlinear nano-oscillator model are discussed.

Keywords: Magnetic nanodot; Nano-oscillator; Spin torque transfer; Vortex.