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arxiv: 1804.08076 · v1 · pith:WLUJ2X4Inew · submitted 2018-04-22 · ❄️ cond-mat.mes-hall · cond-mat.other· nlin.AO· physics.app-ph

Spin torque oscillator for microwave assisted magnetization reversal

classification ❄️ cond-mat.mes-hall cond-mat.othernlin.AOphysics.app-ph
keywords fieldmamrcriticalmicrowavereversalself-oscillationapplicableassisted
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A theoretical study is given for the self-oscillation excited in a spin torque oscillator (STO) consisting of an in-plane magnetized free layer and a perpendicularly magnetized pinned layer in the presence of a perpendicular magnetic field. This type of STO is a potential candidate for a microwave source of microwave assisted magnetization reversal (MAMR). It is, however, found that the self-oscillation applicable to MAMR disappears when the perpendicular field is larger than a critical value, which is much smaller than a demagnetization field. This result provides a condition that the reversal field of a magnetic recording bit by MAMR in nanopillar structure should be smaller than the critical value. The analytical formulas of currents determining the critical field are obtained, which indicate that a material with a small damping is not preferable to acheive a wide range of the self-oscillation applicable to MAMR, although such a material is preferable from the view point of the reduction of the power consumption.

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