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Analytical treatment of synchronization of spin-torque oscillators by microwave magnetic fields

机译:微波磁场对自旋转矩振荡器同步的分析处理

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摘要

An analytical approach is presented for the study of synchronization effects in spin-transferdriven nanomagnets subjected to radio-frequency magnetic fields. The conditions are derived and discussed under which the current-induced magnetization precession is synchronized by the radio-frequency field. Exact analytical results are obtained for the case when the problem exhibits uniaxial symmetry around the axis perpendicular to the device plane. It is demonstrated that the magnetization dynamics under nonzero current and nonzero rf field is identical in structure to that under zero current. On this basis, analytical predictions are obtained for: the existence of phase-locking between current-induced magnetization precession and rf field oscillations; the frequency pulling effect in proximity of phase locking; the occurrence of hysteresis effects in phase-locking as a function of the spin-polarized current. The proposed approach is valid for arbitrary rf field amplitude and current intensity.
机译:提出了一种分析方法,用于研究自旋转移驱动的纳米磁体在射频磁场中的同步效应。导出并讨论了通过射频场使电流感应的磁化进动同步的条件。当问题在垂直于设备平面的轴周围表现出单轴对称性时,可以获得精确的分析结果。结果表明,非零电流和非零射频场下的磁化动力学与零电流下的磁化动力学结构相同。在此基础上,可获得以下分析预测:电流感应的磁化进动与rf场振荡之间存在锁相;锁相附近的频率牵引效应;锁相中磁滞效应的发生取决于自旋极化电流。所提出的方法对于任意的射频场振幅和电流强度都是有效的。

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