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Metamaterials Fabricated of Amorphous Ferromagnetic Microwires: Negative Microwave Permeability

机译:由非晶铁磁微挖制造的超材料:负微波渗透性

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Microwave permeability of glass-coated ferromagnetic amorphous microwire exhibiting a weak negative magnetostriction has been studied. The diameter of the microwire was about 20μm and the diameter of the metal core was about 12μm. The microwire was wound to comprise a 7/3 washer-shaped composite sample with the volume fraction of magnetic constituent of about 10%. The permeability of the composite sample was measured in a coaxial line in the frequency range from 0.1 to 10 GHz. The composite was found to exhibit a negative permeability within the frequency range from approximately 0.7 to 1.5 GHz, with the permeability being as low as -0.4. Therefore, micro wire-based composites, particularly, crossed arrays of microwires may be employed to develop metamaterials for microwave applications. In the composite, the negative microwave permeability is due to the natural ferromagnetic resonance and the negative microwave permittivity is due to the inherent inductance of the wire. Such metamaterials are advantageous in simple design, isotropic in-plane performance, and possible tunability of performance by external magnetic bias. However, for a feasible metamaterial fabricated from microwire arrays, the wires have to exhibit higher magnitude of the ferromagnetic resonance, higher quality factor, and higher resonance frequency.
机译:研究了玻璃涂层铁磁非晶微观的微波渗透性,已经研究过弱负磁致伸缩。微线的直径约为20μm,金属芯的直径约为12μm。缠绕微线,包含7/3垫圈形复合材料,其具有约10%的磁性成分的体积分数。在频率范围为0.1至10GHz的同轴线中测量复合样品的渗透率。发现复合材料在约0.7至1.5GHz的频率范围内表现出负渗透性,渗透率低至-0.4。因此,可以采用微线基复合材料,特别地,交叉的微线阵列用于开发用于微波应用的超材料。在复合材料中,负微波渗透率是由于天然铁磁共振,负极微波介电常数是由于线的固有电感。这种超材料在简单的设计,各向同性面内性能和外部磁偏压可能的性能可调性方面是有利的。然而,对于由微线阵列制成的可行的超材料,线材必须表现出较高的铁磁谐振,更高的质量因子和更高的共振频率。

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