Indirect excitation of self-oscillation in perpendicular ferromagnet by spin Hall effect
arXiv:1707.04825 · doi:10.1063/1.4991663
Abstract
A possibility to excite a stable self-oscillation in a perpendicularly magnetized ferromagnet by the spin Hall effect is investigated theoretically. It had been shown that such self-oscillation cannot be stabilized solely by the direct spin torque by the spin Hall effect. Here, we consider adding another ferromagnet, referred to as pinned layer, on the free layer. The pinned layer provides another spin torque through the reflection of the spin current. The study shows that the stable self-oscillation is excited by the additional spin torque when the magnetization in the pinned layer is tilted from the film plane.
6 pages, 3 figures
References in corpus (5)
- Theory of spin Hall magnetoresistance
- Theory of spin accumulation and spin transfer torque in a magnetic domain wall
- Nonlinear analysis of magnetization dynamics excited by spin Hall effect
- Relaxation time and critical slowing down of a spin-torque oscillator
- Current-Induced Instability of a Perpendicular Ferromagnet in Spin Hall Geometry