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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >Ferromagnetic Nanowire Metamaterials: Theory and Applications
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Ferromagnetic Nanowire Metamaterials: Theory and Applications

机译:铁磁纳米线超材料:理论与应用

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An overview of ferromagnetic nanowire (FMNW) metamaterials is presented. First, FMNW metamaterials are placed in the historical context of antique composites and 20th Century artificial dielectrics, and presented as an example of second-generation metamaterials following the microstructured metamaterials developed in the first part of the decade. Next, the fabrication processes of FMNW metamaterials and subsequent planar devices are detailed. It is then shown how the geometrical properties of the FMNW structure, such as the wire diameter and the wire nanodisk thicknesses, determine the dc and RF responses of the material. Upon this basis, the modeling of the metamaterial is presented, using a two-level approach where the microscopic (with respect to the wires) susceptibility is derived by solving the Landau–Lifshitz equation and the macroscopic (metamaterial) permittivity and permeability tensors are obtained by effective medium theory. Next, a review of FMNW microwave devices, such as circulators, isolators, and phase shifters, is provided, and the example of an FMNW dual-band edge-mode isolator is studied. Finally, spintronic effects and applications of FMNW metamaterials, such as dc to RF generators and detectors based on the spin-torque transfer phenomenon, are reviewed.
机译:概述了铁磁纳米线(FMNW)超材料。首先,FMNW超常材料被置于古董复合材料和20世纪人造电介质的历史背景中,并作为第二代超常材料的一个例子,紧随其后的是在上半年开发的微结构超常材料。接下来,将详细描述FMNW超材料和后续平面器件的制造工艺。然后显示了FMNW结构的几何特性(例如线径和线纳米盘厚度)如何确定材料的dc和RF响应。在此基础上,通过两级方法介绍了超材料的建模,其中通过求解Landau-Lifshitz方程得出微观(相对于导线)磁化率,并获得了宏观(超材料)介电常数和渗透率张量通过有效的媒介理论。接下来,提供了对FMNW微波设备(如环行器,隔离器和移相器)的综述,并研究了FMNW双频带边缘模式隔离器的示例。最后,回顾了基于自旋转矩传递现象的FMNW超材料的自旋电子效应及其应用,例如直流至RF发生器和检测器。

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