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The Left-handed Properties of the Composite Medium Composed of Ferrite Cubes' Array and Copper Net

机译:铁氧体立方阵列和铜网组成的复合介质的左手特性

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Left-handed material (LHM),whose permittivity and permeability are both negative,has attracted much attention due to its exotic electromagnetic properties,such as negative refraction,backward wave propagation and evanescent wave amplification.The microwave left-handed property of a composite medium composed of ferrite cubes' array and copper net was studied using the method of finite difference time domain in this paper.An obvious left-handed pass band emerged when ferrite cubes were combined with longitudinal copper wires,because the ferrite produced negative permeability by the ferromagnetic resonance and the copper wires produced negative permittivity by the plasma.With the addition of horizontal copper wires,the transmission intensity of the pass band was gradually weakened.It can be concluded that the horizontal wires played a negative role in realizing the composite LHM with ferrite cubes and copper net.This work gives an instructive direction to the fabrication of 3D LHMs.
机译:介电常数和磁导率均为负值的左旋材料(LHM)由于其奇特的电磁特性(如负折射,后向波传播和e逝波放大)而引起了人们的广泛关注。复合介质的微波左手特性本文采用时域有限差分方法研究了由铁氧体立方体阵列和铜网组成的结构。当铁氧体立方体与纵向铜线结合时会出现明显的左手通带,这是因为铁氧体通过铁磁产生负磁导率。等离子体产生的共振和铜线产生负介电常数。随着水平铜线的加入,通带的传输强度逐渐减弱。可以得出结论,水平线在实现铁氧体复合LHM方面起着负面作用。立方体和铜网。这项工作为3D LHM的制造提供了指导性的方向。

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