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Determining the effective electromagnetic properties of negative-refractive-index metamaterials from internal fields

机译:从内部场确定负折射率超材料的有效电磁性能

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摘要

Effective electromagnetic properties of negative index of refraction metamaterials (NIMs) can be hard to measure. We show through simulations that electromagnetic fields inside a typical, physically realizable wire-SRR (split ring resonator) NIM are more homogeneous than one might expect inside such metamaterials, and sufficiently structured to be useful for interpretation. Specifically, simulations show that the electric field phase is surprisingly smooth inside the NIM, including at the edges of the material, and can thus be used to reliably estimate the effective length of the material, a critical parameter when determining the effective material properties using many methods. The effective length, together with amplitude and phase measurements inside the material, can further be used to measure with good precision and minimum ambiguity the effective material properties of a NIM. To validate this technique, we show that the material properties obtained using it very closely match those derived from S parameters. The inherent redundancy in the field data makes this method less sensitive to measurement errors than one based on transmission/reflection measurements, thus making it suitable for simulations and for experiments. We also show that, for experiments, given the periodicity of the NIM, one measurement per cell is generally enough to retrieve with good precision these material properties.
机译:负折射率超材料(NIM)的有效电磁性能可能难以测量。我们通过仿真显示,典型的,可物理实现的线SRR(裂环谐振器)NIM内部的电磁场比此类超材料内部的电磁场更均匀,并且具有足够的结构以用于解释。具体而言,仿真显示,在NIM内部(包括材料的边缘),电场相出乎意料的平滑,因此可以用来可靠地估计材料的有效长度,这是使用许多方法确定有效材料性能时的关键参数。方法。有效长度以及材料内部的幅度和相位测量值可进一步用于以良好的精度和最小的歧义来测量NIM的有效材料性能。为了验证该技术,我们表明使用该技术获得的材料特性与S参数派生的材料特性非常匹配。与基于透射/反射测量的方法相比,现场数据固有的冗余性使该方法对测量误差的敏感性降低,因此使其适合于仿真和实验。我们还表明,对于实验,给定NIM的周期性,通常每个单元格一次测量就足以高精度地检索这些材料属性。

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