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Fabrication of polarization-dependent reflective metamaterial by focused ion beam milling

机译:聚焦离子束铣削制备偏振相关的反射超材料

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摘要

By focused ion beam milling, we fabricated near-IR reflective metamaterials consisting of nano-aperture arrays. Optimum parameters of ion beam current and accelerating voltage in the fabrication process are obtained. Nano-apertures constituting reflective metamaterial are successfully milled, and possess a reflective resonance in the near-IR spectral range. With a double-split-ring resonator structure for the nano-aperture, the intensity reflection at resonance is rendered polarization dependent. It is found that the point group symmetry of the nano-aperture array determines the amount of anisotropy in the intensity reflection. Finite-difference time-domain simulation was adopted to identify details of nano-aperture metastructures transferred from nano-aperture patterns by the focused ion beam milling.
机译:通过聚焦离子束铣削,我们制造了由纳米孔径阵列组成的近红外反射超材料。获得了制造过程中离子束电流和加速电压的最佳参数。构成反射超材料的纳米孔已成功研磨,并在近红外光谱范围内具有反射共振。利用用于纳米孔的双裂环谐振器结构,使谐振时的强度反射与偏振有关。发现纳米孔阵列的点群对称性决定了强度反射中的各向异性量。通过时域有限差分模拟来识别通过聚焦离子束铣削从纳米孔图案转移的纳米孔元结构的细节。

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