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Spin transfer driven resonant expulsion of a magnetic vortex core for efficient rf detector

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arxiv 1610.08660 v1 pith:ET3TDSDN submitted 2016-10-27 physics.ins-det cond-mat.mes-hall

Spin transfer driven resonant expulsion of a magnetic vortex core for efficient rf detector

classification physics.ins-det cond-mat.mes-hall
keywords spinvortexdifferentexpulsionresonantstnosdetectiondetector
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Spin transfer magnetization dynamics have led to considerable advances in Spintronics, including opportunities for new nanoscale radiofrequency devices. Among the new functionalities is the radiofrequency(rf) detection using the spin diode rectification effect in spin torque nano-oscillators (STNOs). In this study, we focus on a new phenomenon, the resonant expulsion of a magnetic vortex in STNOs. This effect is observed when the excitation vortex radius, due to spin torques associated to rf currents, becomes larger than the actual radius of the STNO. This vortex expulsion is leading to a sharp variation of the voltage at the resonant frequency. Here we show that the detected frequency can be tuned by different parameters; furthermore, a simultaneous detection of different rf signals can be achieved by real time measurements with several STNOs having different diameters. This result constitutes a first proof-of-principle towards the development of a new kind of nanoscale rf threshold detector.

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