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Micromagnetic study on micro-structured ferromagnetic thin film for high-frequency-device applications

机译:用于高频器件的微结构铁磁薄膜的微磁研究

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摘要

Various effects of geometry on the magnetic properties at microwave frequencies (~ 20 GHz) are systematically studied for micro- and nano-structured ferromagnetic thin films with fourfold in-plane magnetic anisotropy by using micromagnetic simulations. Obtained numerical results on the dynamics of the micro-and the nano-structured magnetic thin film are useful for design considerations for various high-frequency devices, including thin-film inductors, microwave filters and absorbers. The permeability and the resonance frequency are found to be well scaled with a structural parameter of w/t (w = lateral pattern size and t = film thickness) for pattern sizes that differ by an order of magnitude. An exceptional resonance behavior of the smallest pattern with w = 0.5 μm was reasoned to be significant in suppressing the precession in the vicinity of the pattern edge. We also demonstrated that stable magnetization directions orthogonal to each other could be switched with external fields, enabling local control of the permeability in the structured pattern.
机译:通过微磁模拟,系统地研究了具有四倍面内磁各向异性的微米和纳米结构铁磁薄膜在微波频率(〜20 GHz)下几何形状对磁性能的各种影响。获得的关于微米级和纳米级结构的磁性薄膜动力学的数值结果对于各种高频设备的设计考虑是有用的,包括薄膜电感器,微波滤波器和吸收器。对于具有相差一个数量级的图案尺寸,发现导磁率和谐振频率可以通过w / t的结构参数(w =横向图案尺寸和t =薄膜厚度)很好地缩放。 w = 0.5μm的最小图案的异常共振行为被认为在抑制图案边缘附近的进动方面很重要。我们还证明了可以通过外部场切换彼此正交的稳定磁化方向,从而可以局部控制结构化图案中的磁导率。

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