Application of Periodical Nanostructures in Thin Metal Film for NearInfrared Multispectral Filters

Y. Tang
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Abstract

Surface plasmonic nanostructures with cross-shaped-hole array in metal thin films are studied for multispectral filters, which cover visible to near-infrared wavelengths. Surface plasmons are induced from incident wave by the periodic arrays of nanostructures of the metal thin film, and then localized surface plasmon polaritons oscillate in the cavity, which is formed by two surfaces of metals through near-field excitation. The transmission spectra of light through these nanostructures are investigated with the finite-difference time-domain method; our simulations show that the features of the hole, and the periods of the array along with other parameters are critical to the optical spectral performance. The optical characterizations of our fabrications of these nanostructures milled by focused ion beam demonstrated very similar results of transmission spectra of simulation results. The simulations demonstrate he optical performance of the metal nanostructures, it is possible to obtain desired multispectral filters by programming parameters of those plasmonic nanostructures.
周期纳米结构在近红外多光谱滤光片金属薄膜中的应用
研究了金属薄膜中具有交叉孔阵列的表面等离子体纳米结构在可见光至近红外波段的多光谱滤光片中的应用。金属薄膜纳米结构的周期性阵列从入射波中诱导出表面等离子体激元,然后局部表面等离子体激元在由两个金属表面通过近场激发形成的腔内振荡。用时域有限差分法研究了光通过这些纳米结构的透射光谱;模拟结果表明,孔的特性、阵列的周期以及其他参数对光谱性能至关重要。我们制造的这些纳米结构的光学特性通过聚焦离子束磨出非常相似的透射光谱模拟结果。仿真结果证明了金属纳米结构的光学性能,通过对等离子体纳米结构的参数进行编程,可以获得理想的多光谱滤波器。
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