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Propagation of Spin Waves Excited in a Permalloy Film by a Finite-Ground Coplanar Waveguide: A Combined Phase-Sensitive Micro-Focused Brillouin Light Scattering and Micromagnetic Study

机译:有限地面共面波导在坡莫合金膜中激发的自旋波的传播:相敏微聚焦布里渊光散射和微磁学的组合

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摘要

The excitation of spin waves by a microwave current injected into a coplanar waveguide with finite-width ground lines on a continuous Permalloy film is investigated both experimentally and numerically. Phase sensitive micro-focused Brillouin light scattering has been employed to reveal the spatial profile of the propagating spin waves in the magnetostatic surface wave geometry. The experimental results have been satisfactorily reproduced by means of micromagnetic simulations. The exciting microwave field used in this simulation has the spatial profile defined by the coplanar waveguide and user-defined periodic boundary conditions were employed in order to simulate the extended system. The resulting space and time dependent evolution of the magnetization has been analyzed by means of one and two dimensional fast Fourier transform algorithm in order to obtain the spatial profile and the frequency spectrum of the excited spin waves as well as their dispersion relations. Evidence is given to asymmetric emission from the two sides of the coplanar waveguide due to the symmetry breaking related to the sense of precession of the dynamical magnetization, as well as to the near-field effects of the extended spin wave emitter.
机译:通过在连续坡莫合金膜上注入具有有限宽度接地线的共面波导中的微波电流对自旋波的激发进行了实验和数值研究。相敏感的微聚焦布里渊光散射已被用来揭示静磁表面波几何形状中传播的自旋波的空间分布。实验结果已通过微磁模拟令人满意地再现。在此模拟中使用的激发微波场具有由共面波导定义的空间轮廓,并采用用户定义的周期性边界条件来模拟扩展系统。利用一维和二维快速傅里叶变换算法分析了由此产生的磁化随时间和空间变化的情况,以便获得激发自旋波的空间分布和频谱以及它们的色散关系。有证据表明,由于与动态磁化的进动感相关的对称破坏以及扩展自旋波发射器的近场效应,共面波导两侧的发射不对称。

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