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Evaluation of gold nanowire pairs as a potential negative index material

机译:评价金纳米线对作为潜在的负折射率材料

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摘要

A metamaterial consisting of pairs of metallic nanowires, separated by a dielectric spacer, has been fabricated and spectrally characterized in the visible and near-infrared spectral domain. It is shown, that the structure exhibits both a plasmonic and a magnetic resonance depending on its geometry and orientation with respect to the illuminating wave field. In particular, we investigate the influence of the thickness of the spacer layer on the spectral position of the resonances and show that, for an appropriate adjustment, both resonances coincide. Measurements of the amplitude and the phase of the transmitted wave are presented. It is also shown that the material is highly anisotropic with respect to the angle of incidence, as the plasmonic resonance wavelength depends strongly on it whereas the magnetic resonance does not show this sensitivity. All experimental results are supported by numerical simulations.
机译:由介电间隔物隔开的成对的金属纳米线构成的超材料已经制造出来,并在可见光和近红外光谱域中进行了光谱表征。示出的是,该结构根据其几何形状和相对于照明波场的取向而呈现出等离子体激元和磁共振。特别地,我们研究了间隔层的厚度对共振的频谱位置的影响,并表明,通过适当的调整,两个共振是重合的。给出了传输波的幅度和相位的测量。还显示出,该材料相对于入射角是高度各向异性的,因为等离激元共振波长强烈依赖于它,而磁共振却没有显示出这种敏感性。所有实验结果均得到数值模拟的支持。

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