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首页> 外文期刊>Journal of magnetism and magnetic materials >Permalloy (NiFe) nanometer square-antidot arrays: Dynamic modes and use as a monolithic microwave band-pass filter
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Permalloy (NiFe) nanometer square-antidot arrays: Dynamic modes and use as a monolithic microwave band-pass filter

机译:坡莫合金(NiFe)纳米对映体阵列:动态模式,用作单片微波带通滤波器

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摘要

Nanometer sized Permalloy antidot arrays with different square hole sizes have been fabricated using field emission scanning electron microscopy technique. The dynamic properties of the antidot arrays are measured at GHz frequencies using a Vector Network Analyzer. For a given applied magnetic field, we observe three resonance frequencies - one corresponds to that of a uniform mode in an infinitely extended film, and the other two (above and below this mode in frequency) correspond to modes associated with finite structures. These two modes exhibit an effective uniaxial in-plane anisotropy. The static behavior of the antidot arrays are simulated using a micromagnetic model and the electromagnetic signal transmission is analyzed using an analytical model. The results show that the three different resonance frequencies are due to the different localized shape anisotropies created by the nonmagnetic holes in the antidot array. Possible application as a magnetically tunable local band-pass filter at 5G frequency band is also studied.
机译:已经使用场发射扫描电子显微镜技术制造了具有不同方孔尺寸的纳米尺寸的坡莫合金解毒剂阵列。使用矢量网络分析仪在GHz频率下测量解毒剂阵列的动态特性。对于给定的施加磁场,我们观察到三个共振频率-一个对应于无限延伸膜中的均匀模式的共振频率,而另外两个(该频率之上和之下的频率)对应于与有限结构相关的模式。这两种模式表现出有效的单轴面内各向异性。使用微磁模型模拟解毒剂阵列的静态行为,并使用分析模型分析电磁信号的传输。结果表明,三种不同的共振频率是由于解毒点阵列中非磁性空穴产生的局部形状各向异性不同所致。还研究了在5G频带上作为磁可调本地带通滤波器的可能应用。

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