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Tunable three-dimensional ZrO2 photonic crystals replicated from single butterfly wing scales

机译:可调谐的三维ZrO2光子晶体,可从单个蝴蝶翼秤上复制

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摘要

Nature generates 150 000 to 200 000 Lepidoptera species (butterflies and moths). Each has more than one kind of wing scales with three dimensional complicated sub-microstructures. We hereby manipulate the original individual single wing scales (SWSs) of tropical butterfly M. didius and replicate them using ZrO2. The micro-zone reflectance spectrum and the angle dependent properties of M. didius's cover scales (with reflective index 1.56) are first studied. New optical properties (red structural colors) are observed. Then, we synthesize their ZrO2 SWS replicas (with nominal reflective index 2.12) using these SWSs as bio-templates. Results indicate that an SWS located on the M. didius wing is a highly anisotropic photonic crystal (PC) and exhibits a "prism effect". Since one butterfly wing can supply more than 100 000 wing scales, this work presents a potential route for large-scale production of small complex photonic devices using SWS as building blocks, and can broaden present practical model pool for the PC research.
机译:大自然产生了15万至20万种鳞翅目物种(蝴蝶和飞蛾)。每个都具有不止一种带有三维复杂亚微观结构的机翼秤。我们在此操纵热带蝴蝶M. didius的原始单个单翼鳞片(SWS),并使用ZrO2复制它们。首先研究了M. didius覆盖鳞片(反射指数为1.56)的微区反射光谱和与角度相关的特性。观察到新的光学特性(红色结构色)。然后,我们使用这些SWS作为生物模板合成其ZrO2 SWS复制品(标称反射率2.12)。结果表明,位于迪迪斯翼上的SWS是高度各向异性的光子晶体(PC),并表现出“棱镜效应”。由于一个蝴蝶翅膀可以提供超过10万个翅膀尺度,因此这项工作为使用SWS作为构建模块大规模生产小型复杂光子器件提供了一条潜在途径,并且可以为PC研究扩展当前的实用模型库。

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