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Microwave Properties of Ferromagnetic Nanowires and Applications to Tunable Devices

机译:铁磁纳米线的微波性能和可调装置的应用

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Microwave devices as circulators or tunable filters demand nowadays small size and broad bandwidth. Ferromagnetic nanowired membranes are ideal candidates for this purpose. This paper focuses on the dielectric properties of such substrates, as influenced by the ferromagnetic nature of nanowires and their filling factor. Two particular cases are considered: a membrane filled up to its top with nanowires, forming a one-layer substrate, and a membrane filled up to a certain percentage of its height with nanowires, forming a two-layer substrate. The models proposed in this paper for each case take the inductive and gyromagnetic effects in the wires into account. They predict for the one-layer case a magnetodielectric behavior which is tunable by applying an external magnetic field. The effect is no longer visible for the two-layer topology corresponding to microwave circuit applications.
机译:微波设备作为循环器或可调滤波器现在需要小尺寸和宽带宽。铁磁性纳米线膜是此目的的理想候选者。本文侧重于这种基材的电介质特性,受纳米线的铁磁性及其填充因子的影响。考虑了两种特定情况:填充到其顶部的膜,纳米线,形成单层基材,膜填充到其高度的纳米线的一定百分点,形成双层基板。本文提出的模型每种情况都会考虑电线中的电感和旋流效应。它们预测一层壳体通过施加外部磁场来调谐的磁电极行为。对于对应于微波电路应用的双层拓扑,效果不再可见。

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