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Hemispherical Brillouin zone imaging of a diamond-type biological photonic crystal

机译:钻石型生物光子晶体的半球形布里渊区成像

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摘要

The brilliant structural body colours of many animals are created by three-dimensional biological photonic crystals that act as wavelength-specific reflectors. Here, we report a study on the vividly coloured scales of the diamond weevil, Entimus imperialis. Electron microscopy identified the chitin and air assemblies inside the scales as domains of a single-network diamond (Fd3m) photonic crystal. We visualized the topology of the first Brillouin zone (FBZ) by imaging scatterometry, and we reconstructed the complete photonic band structure diagram (PBSD) of the chitinous photonic crystal from reflectance spectra. Comparison with calculated PBSDs indeed showed a perfect overlap. The unique method of non-invasive hemispherical imaging of the FBZ provides key insights for the investigation of photonic crystals in the visible wavelength range. The characterized extremely large biophotonic nanostructures of E. imperialis are structurally optimized for high reflectance and may thus be well suited for use as a template for producing novel photonic devices, e.g. through biomimicry or direct infiltration from dielectric material.
机译:许多动物出色的结构体颜色是由三维生物光子晶体(用作波长特定的反射器)产生的。在这里,我们报告了对钻石象鼻虫Entimus imperialis的鲜艳鳞片的研究。电子显微镜将天平内的几丁质和空气组件鉴定为单网络钻石(Fd3m)光子晶体的域。我们通过成像散射法可视化了第一个布里渊区(FBZ)的拓扑,并从反射光谱重建了几丁质光子晶体的完整光子能带结构图(PBSD)。与计算的PBSD的比较确实显示出完美的重叠。 FBZ的非侵入性半球成像的独特方法为研究可见波长范围内的光子晶体提供了重要的见识。特有的大肠埃希氏菌的特征极大的生物光子纳米结构在结构上针对高反射率进行了优化,因此可能非常适合用作生产新型光子器件(例如光电子器件)的模板。通过仿生或直接从介电材料中渗透。

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