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Extremely Coherent Microwave Emission from Spin Torque Oscillator Stabilized by Phase Locked Loop

机译:锁相环稳定了自旋转矩振荡器的极相干微波发射

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摘要

Spin torque oscillator (STO) has been attracting a great deal of attention as a candidate for the next generation microwave signal sources for various modern electronics systems since its advent. However, the phase noise of STOs under free running oscillation is still too large to be used in practical microwave applications, thus an industrially viable means to stabilize its oscillation has been strongly sought. Here we demonstrate implementation of a phase locked loop using a STO as a voltage controlled oscillator (VCO) that generates a 7.344 GHz microwave signal stabilized by a 153 MHz reference signal. Spectrum measurement showed successful phase locking of the microwave signal to the reference signal, characterized by an extremely narrow oscillation peak with a linewidth of less than the measurement limit of 1 Hz. This demonstration should be a major breakthrough toward various practical applications of STOs.
机译:自从出现以来,自旋扭矩振荡器(STO)作为各种现代电子系统的下一代微波信号源的候选者已经引起了广泛的关注。然而,自由运行振荡下的STO的相位噪声仍然太大,以致不能在实际的微波应用中使用,因此,强烈寻求一种工业上可行的稳定其振荡的方法。在这里,我们演示了一个使用STO作为压控振荡器(VCO)的锁相环的实现,该压控振荡器生成一个由153 MHz参考信号稳定的7.344 GHz微波信号。频谱测量显示微波信号与参考信号成功锁相,其特征是振荡峰极窄,线宽小于1 Hz的测量极限。该演示应该是STO各种实际应用的重大突破。

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