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Formation of broadband antireflective and superhydrophilic subwavelength structures on fused silica using one-step self-masking reactive ion etching

机译:一种在熔融二氧化硅上形成宽带抗反射和超硫基亚壳体结构的使用单步自屏反应离子蚀刻

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Fused silica subwavelength structures (SWSs) with an average period of ~100?nm were fabricated using an efficient approach based on one-step self-masking reactive ion etching. The subwavelength structures exhibited excellent broadband antireflection properties from the ultraviolet to near-infrared wavelength range. These properties are attributable to the graded refractive index for the transition from air to the fused silica substrate that is produced by the ideal nanocone subwavelength structures. The transmittance in the 400–700?nm range increased from approximately 93% for the polished fused silica to greater than 99% for the subwavelength structure layer on fused silica. Achieving broadband antireflection in the visible and near-infrared wavelength range by appropriate matching of the SWS heights on the front and back sides of the fused silica is a novel strategy. The measured antireflection properties are consistent with the results of theoretical analysis using a finite-difference time-domain (FDTD) method. This method is also applicable to diffraction grating fabrication. Moreover, the surface of the subwavelength structures exhibits significant superhydrophilic properties.
机译:使用基于一步式自我掩模反应离子蚀刻的有效方法制造平均周期的熔融二氧化硅亚波长结构(SWS)。亚波长结构表现出优异的宽带抗反射特性,从紫外线到近红外波长范围。这些性质可归因于从空气过渡到由理想的纳米核苷酸亚壳结构产生的熔融石英衬底的渐变折射率。 400-700·Nm范围内的透射率从熔融二氧化硅上的抛光熔融二氧化硅的大约93%增加到大于99%的亚马赫结构层。通过适当的熔融二氧化硅上的SWS高度的适当匹配在可见光和近红外波长范围内实现宽带抗反射是一种新的策略。测量的抗反射性能与使用有限差分时间域(FDTD)方法的理论分析结果一致。该方法也适用于衍射光栅制造。此外,亚波长结构的表面表现出显着的过性性质。

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