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Realisation and optical engineering of linear variable bandpass filters in nanoporous anodic alumina photonic crystals

机译:认识和线性光学工程在纳米多孔阳极可变带通滤波器氧化铝光子晶体

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摘要

We present the first realisation of linear variable bandpass filters in nanoporous anodic alumina (NAA-LVBPFs) photonic crystal structures. NAA gradient-index filters (NAA-GIFs) are produced by sinusoidal pulse anodisation and used as photonic crystal platforms to generate NAA-LVBPFs. The anodisation period of NAA-GIFs is modified from 650 to 850 s to systematically tune the characteristic photonic stopband of these photonic crystals across the UV-visible-NIR spectrum. Then, the nanoporous structure of NAA-GIFs is gradually widened along the surface under controlled conditions by wet chemical etching using a dip coating approach aiming to create NAA-LVBPFs with finely engineered optical properties. We demonstrate that the characteristic photonic stopband and the iridescent interferometric colour displayed by these photonic crystals can be tuned with precision across the surface of NAA-LVBPFs by adjusting the fabrication and etching conditions. Here, we envisage for the first time the combination of the anodisation period and etching conditions as a cost-competitive, facile, and versatile nanofabrication approach that enables the generation of a broad range of unique LVBPFs covering the spectral regions. These photonic crystal structures open new opportunities for multiple applications, including adaptive optics, hyperspectral imaging, fluorescence diagnostics, spectroscopy, and sensing.
机译:我们提出的第一个认识线性的在纳米多孔阳极可变带通滤波器氧化铝(NAA-LVBPFs)光子晶体结构。NAA梯度折射率过滤器(NAA-GIFs)由正弦脉冲阳极氧化和使用作为光子晶体平台生成NAA-LVBPFs。从650年到850年代系统地调整修改光子阻带的特征整个UV-visible-NIR光子晶体光谱。沿着表面NAA-GIFs逐渐扩大受控条件下的湿化学使用浸渍涂敷方法旨在蚀刻创建NAA-LVBPFs精细工程光学属性。光子阻带和特征彩虹色的干涉颜色显示这些光子晶体可以通过调优在NAA-LVBPFs的表面精度调整加工和腐蚀条件。在这里,我们第一次的设想阳极氧化时间和腐蚀环境成本竞争力,肤浅多功能纳米加工方法,使广泛的独特的LVBPFs的一代覆盖光谱区域。晶体结构打开新的机遇多个应用程序,包括自适应光学、高光谱成像、荧光诊断、光谱学和感应。

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