反铁磁类约瑟夫逊振荡器与外部交流信号的同步

D. Slobodianiuk, V. Ukraine, O. Prokopenko
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引用次数: 2

摘要

本文从理论上和数值上研究了高度非线性反铁磁类约瑟夫逊自旋子振荡器在直流和交流信号作用下的磁化动力学,发现并研究了振荡器与外部交流信号同步的规律。我们发现振荡器的同步带宽基本上不仅取决于外力振幅(这是典型的),还取决于振荡器的非线性。这种行为源于所考虑的系统的高度非线性性质。理论和数值分析表明,振荡器的产生频率与外加直流电流呈非线性关系。因此,正确选择以特定非线性系数值为特征的工作点对于所考虑的系统的正常工作非常重要,并且可以用于最大化振荡器同步带宽。所得结果对反铁磁太赫兹频率自旋电子振荡器的进一步发展及其应用具有重要意义。所建立的公式和数值模拟也可用于描述任何性质的强非线性非等时振子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synchronization of an Antiferromagnetic Josephson-like Oscillator with an External AC Signal
Magnetization dynamics in a highly nonlinear antiferromagnetic Josephson-like spintronic oscillator under the action of DC and AC signals is studied theoretically and numerically, and the regime of the oscillator synchronization to an external AC signal has been found and investigated. We revealed that the synchronization bandwidth of the oscillator substantially depends not only on the external force amplitude (which is typical), but also on the oscillator nonlinearity. This behavior arises from the highly nonlinear nature of the considered system. Our theoretical and numerical analyses show that the generation frequency of the oscillator depends on the applied electric DC current in a nonlinear way. Thus, the correct choice of the working point characterized by some particular value of the nonlinearity coefficient is important for the considered system to work properly, and it can be used for maximizing the oscillator synchronization bandwidth. Obtained results are important for the further development of antiferromagnetic terahertz-frequency spintronic oscillators and their applications. The developed formalism and numerical simulations can also be used for the description of strongly nonlinear non-isochronous oscillators of any nature.
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