Spin-torque diode frequency tuning via soft exchange pinning of both magnetic layers

A spin-torque diode, which is a magnetic tunnel junction with magnetic layers softly pinned at some tilt to each other, is proposed. The resonance operating frequency of such a dual exchange-pinned spin-torque diode can be significantly higher (up to 9.5 GHz) than that of a traditional free layer sp...

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Veröffentlicht in:Physical review. B 2017-12, Vol.96 (21), Article 214410
Hauptverfasser: Khudorozhkov, A. A., Skirdkov, P. N., Zvezdin, K. A., Vetoshko, P. M., Popkov, A. F.
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Sprache:eng
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Zusammenfassung:A spin-torque diode, which is a magnetic tunnel junction with magnetic layers softly pinned at some tilt to each other, is proposed. The resonance operating frequency of such a dual exchange-pinned spin-torque diode can be significantly higher (up to 9.5 GHz) than that of a traditional free layer spin-torque diode, and, at the same time, the sensitivity remains rather high. Using micromagnetic modeling we show that the maximum microwave sensitivity of the considered diode is reached at the bias current densities slightly below the self-sustained oscillations initiating. The dependence of the resonance frequency and the sensitivity on the angle between pinning exchange fields is presented. Thus, a way of designing spin-torque diode with a given resonance response frequency in the microwave region in the absence of an external magnetic field is proposed.
ISSN:2469-9950
2469-9969
DOI:10.1103/PhysRevB.96.214410