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Influence of lattice defects on the ferromagnetic resonance behaviour of 2D magnonic crystals

机译:晶格缺陷对二维镁磁晶体铁磁共振行为的影响

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摘要

This paper studies, from a modelling point of view, the influence of randomly distributed lattice defects (non-patterned areas and variable hole size) on the ferromagnetic resonance behaviour and spin wave mode profiles of 2D magnonic crystals based on Ni80Fe20 antidot arrays with hexagonal lattice. A reference sample is first defined via the comparison of experimental and simulated hysteresis loops and magnetoresistive curves of patterned films, prepared by self-assembly of polystyrene nanospheres. Second, a parametric analysis of the dynamic response is performed, investigating how edge, quasi-uniform and localized modes are affected by alterations of the lattice geometry and bias field amplitude. Finally, some results about the possible use of magnetic antidot arrays in frequency-based sensors for magnetic bead detection are presented, highlighting the need for an accurate control of microstructural features.
机译:本文从建模的角度研究了随机分布的晶格缺陷(无图形的区域和可变的孔尺寸)对基于六方晶格的Ni80Fe20解毒点阵列的二维磁共振晶体的铁磁共振行为和自旋波模式剖面的影响。 。首先通过比较实验和模拟的磁滞回线以及通过自组装聚苯乙烯纳米球制备的图案化薄膜的磁阻曲线来定义参考样品。其次,进行了动态响应的参数分析,研究了边沿,准均匀模式和局部模式如何受到晶格几何形状和偏置场幅度变化的影响。最后,介绍了有关在基于频率的传感器中使用磁性解毒剂阵列进行磁珠检测的一些结果,突出了对精确控制微结构特征的需求。

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