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Resonant magneto-acoustic switching: influence of Rayleigh wave frequency and wavevector

机译:谐振磁声 - 声学切换:瑞利波频率和波浪仪的影响

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We show on in-plane magnetized thin films that magnetization can be switched efficiently by 180 degrees using large amplitude Rayleigh waves travelling along the hard or easy magnetic axis. Large characteristic filament-like domains are formed in the latter case. Micromagnetic simulations clearly confirm that this multi-domain configuration is compatible with a resonant precessional mechanism. The reversed domains are in both geometries several hundreds of mu m(2), much larger than has been shown using spin transfer torque- or field-driven precessional switching. We show that surface acoustic waves can travel at least 1 mm before addressing a given area, and can interfere to create magnetic stripes that can be positioned with a submicronic precision.
机译:我们在平面内磁化的薄膜上显示,磁化可以使用沿着硬或容易磁轴行进的大幅度瑞利波有效地通过180度切换。 在后一种情况下形成大的特征丝状结构域。 微磁模拟清楚地证实,这种多域配置与谐振的前进机制兼容。 反向域在几何图数上几百MU M(2),比使用自旋转移扭矩或现场驱动的模型切换所示大得多。 我们表明,在寻址给定区域之前,表面声波可以在寻址前至少1mm行进,并且可以干扰可以以潜在的精度定位的磁条。

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