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Gradient-index infrared metamaterials based on metal-dielectric submicrometer pillar arrays

机译:基于金属介质亚微米柱阵列的梯度指数红外超材料

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This paper presents the design and microfabrication of a two-dimensional metal-dielectric metamaterial structure based on an array of pillars with submicrometer diameters and heights. The diameters of pillars periodically vary along one axis in a sawtooth fashion and are constant along the other. The electromagnetic field distribution within this graded metamaterial was considered utilizing an accurate analytical approach. The pillar arrays were fabricated in photoresist and subsequently covered with a sputter-deposited aluminum film. Structures were defined by direct laser writing in photoresist film. Controlled overexposure has been applied in order to make pillar features smaller than the nominal resolution of the equipment. The structures were characterized by optical and atomic force microscopy and by angle-dependent Fourier Transform infrared spectroscopy. The produced graded frequency-selective surfaces may be used e.g. in sensing.
机译:本文介绍了基于柱轴直径和高度的支柱阵列的二维金属介质超材料结构的设计和微制造。柱的直径周期性地沿一个轴线以锯齿形时变化,并且沿着另一个轴线恒定。使用准确的分析方法考虑该分级超材料内的电磁场分布。在光致抗蚀剂中制造柱阵列,随后用溅射沉积的铝膜覆盖。通过在光致抗蚀剂膜中直接激光写入来定义结构。已经应用了受控过度曝光,以使柱特征小于设备的标称分辨率。通过光学和原子力显微镜和角度依赖性傅里叶变换红外光谱,其特征在于结构。可以使用产生的分级频率选择性表面。在传感中。

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