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Mutual synchronization of nanoconstriction-based spin Hall nano-oscillators through evanescent and propagating spin waves

机译:通过e逝波和传播自旋波,基于纳米收缩的自旋霍尔纳米振荡器的相互同步

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We perform a micromagnetic study of the synchronization dynamics in nanoconstriction-based spin Hall nano-oscillator (SHNO) arrays. The simulation reveals that efficient synchronization in this kind of system is possible, and indicates that the synchronization is mediated by a combination of linear coupling through the overlap of localized modes and parametric coupling through propagating spin waves which are excited by the second harmonic oscillation in the SHNOs. Due to the anisotropic spin wave dispersion in the studied system, the synchronization properties decisively depend on the geometrical alignment of the SHNO array with respect to the external field. We find that, by utilizing the directional spin wave emission and correspondingly optimizing the alignment of the SHNO array, the synchronization is enhanced with a significant increase of the phase-locking bandwidth.
机译:我们对基于纳米收缩的自旋霍尔纳米振荡器(SHNO)阵列中的同步动力学进行了微磁学研究。仿真表明,在这种系统中可以实现有效的同步,并且表明同步是通过局部模式重叠的线性耦合和通过传播自旋波的参量耦合的组合来介导的,自旋波是由二次谐波振荡激发的。 SHNO。由于研究系统中存在各向异性的自旋波色散,因此同步特性决定性地取决于SHNO阵列相对于外场的几何排列。我们发现,通过利用定向自旋波发射并相应地优化SHNO阵列的对准,可以显着提高锁相带宽,从而增强同步。

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  • 来源
    《Physical review. B, Condensed Matter And Materals Physics》 |2016年第13期|134413.1-134413.6|共6页
  • 作者

    T. Kendziorczyk; T. Kuhn;

  • 作者单位

    Institut fuer Festkoerpertheorie, Universitaet Muenster, Wilhelm-Klemm-Strasse 10, 48149 Muenster, Germany;

    Institut fuer Festkoerpertheorie, Universitaet Muenster, Wilhelm-Klemm-Strasse 10, 48149 Muenster, Germany;

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