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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Collective spin waves on a nanowire array with step-modulated thickness
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Collective spin waves on a nanowire array with step-modulated thickness

机译:具有逐步调制厚度的纳米线阵列上的集体自旋波

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It is shown experimentally that collective Bloch spin waves are able to propagate in a dense periodic array of nanowires with step-modulated thickness along the periodicity direction. The spin wave dispersion (frequency versus wave vector k) was measured using the Brillouin light scattering technique by sweeping the wave vector perpendicularly to the wire length. Remarkably, the mode measured at the lowest frequency exhibits an oscillating dispersion and its frequency is up-shifted with respect to the homogeneous-thickness wires of the same width. The modes located at higher frequencies have negligible dependencies on the wave number, i.e. are practically dispersionless. Complementary ferromagnetic resonance measurements enabled us to independently measure the whole set of modes at k = 0, showing a good agreement with the Brillouin light scattering data. These results have been successfully reproduced in a numerical simulation employing a two-dimensional Green's function description of the dynamic dipole field of the precessing magnetization. The theory also allowed visualizing the non-trivial distribution of dynamic magnetization across the wire cross-section and estimating the Brillouin light scattering cross-section. The analysis of these intensities suggests complicated magneto-optical coupling between the light and the dynamic magnetization in the arrays of nanowires with step-modulated thickness. This work can stimulate the design, tailoring, and characterization of three-dimensional magnonic crystal
机译:实验表明,集体布洛赫自旋波能够在密集的纳米线周期性阵列中传播,并沿周期性方向逐步调节厚度。使用布里渊光散射技术通过垂直于导线长度扫掠波矢量来测量自旋波色散(频率与波矢量k)。值得注意的是,在最低频率下测量的模显示出振荡色散,并且其频率相对于相同宽度的均质线向上偏移。位于较高频率的模式对波数的依赖性可忽略不计,即实际上是无色散的。互补的铁磁共振测量使我们能够独立地测量k = 0时的整个模式集,这与布里渊光散射数据非常吻合。这些结果已在数值模拟中成功再现,该数值模拟使用了对进动磁化的动态偶极子场的二维格林函数描述。该理论还允许可视化整个导线横截面的动态磁化强度的非平凡分布,并估计布里渊光散射横截面。对这些强度的分析表明,在具有逐步调制厚度的纳米线阵列中,光与动态磁化强度之间存在复杂的磁光耦合。这项工作可以刺激三维镁磁晶体的设计,定制和表征

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