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Thickness-dependent Magnetic and Microwave Resonance Characterization of Combined Stripe Patterned FeCoBSi Films

机译:组合条纹图案化的FeCoBSi薄膜的厚度依赖性磁共振和微波表征

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摘要

In this paper, we fabricated a series of FeCoBSi multistoried patterned magnetic films with different thickness by traditional UV lithography method and DC sputtering deposition. Broad resonance band phenomenon was observed during high frequency property characterization, with full width half maximum (FWHM) of 4 GHz when the film thickness is 45 nm. The broad resonance band effect was contributed to the existence of multiple resonance peaks due to different stripe width of the combined stripe pattern, which induced distinguish shape anisotropic field in each stripe. Each resonance peak was independent due to the gap between the stripes, leading to a controllable method to tune the microwave properties of such structure. With thickness varied, the resonance band could be altered according to the mathematic prediction. This work presents an effective method for tuning the microwave resonance characterization in magnetization dynamic.
机译:本文通过传统的紫外光刻技术和直流溅射沉积技术,制备了一系列厚度不同的FeCoBSi多层图案化磁性膜。在高频特性表征过程中观察到宽共振带现象,当膜厚度为45 nm时,全宽半峰(FWHM)为4 GHz。由于组合条纹图案的条纹宽度不同,宽共振带效应导致多个共振峰的存在,从而在每个条纹中引起了形状各向异性场的区分。由于条带之间的间隙,每个共振峰是独立的,从而导致可调节的方法来调节这种结构的微波特性。随着厚度的变化,可以根据数学预测改变共振带。这项工作提出了一种有效的方法来调整磁化动力学中的微波共振特性。

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