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Injection locking of single-vortex and double-vortex spin-torque oscillators

机译:单涡和双涡自旋转矩振荡器的注入锁定

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Spin-torque oscillators are a promising application for the spin-transfer torque effect. The major challenge lies in pushing their microwave output power to useful levels, e.g. by operating an array of spin-torque oscillators in a synchronized, phase-locked mode. Our experiments on metallic, GMR-type nanopillars focus on the influence of external high-frequency signals on the current-driven vortex dynamics in single-vortex and double-vortex spin-torque oscillators. For both cases we observe injection locking behavior according to the nonlinear oscillator theory, which is a prerequisite for the synchronization of spin-torque oscillators via microwaves in common electrical electrodes.
机译:自旋扭矩振荡器是自旋传递扭矩效应的有前途的应用。主要的挑战在于将其微波输出功率提高到有用的水平,例如通过在同步锁相模式下操作自旋扭矩振荡器阵列来实现。我们在金属,GMR型纳米柱上进行的实验着眼于外部高频信号对单涡旋和双涡旋自旋转矩振荡器中电流驱动的涡旋动力学的影响。对于这两种情况,我们都根据非线性振荡器理论观察到注入锁定行为,这是通过公共电极中的微波使自旋扭矩振荡器同步的前提。

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