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A Multi-layer Film Model for Formation Mechanism of Bright Whiteness in Beetle Scale

机译:甲虫尺度明亮白度形成机制的多层胶片模型

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摘要

By taking the optical imaging of the internal micro-nanostructure of white beetle scales, a multilayer aperiodic model is presented in this paper to understand the complex natural formation mechanism of bright whiteness of a kind of white color beetle. Based on the proposed model, optical simulations of visible light reflectivity are conducted correlated with the variation of layer number, layer thickness and incident angle of visible light with alteration of the air-layer and chitin layer. The results showed larger incident angle will lead to lower reflectivity, smaller number of layers will also lead to lower reflectivity and higher fluctuations within the range of visible bandwidth. The simulated results match well with the measured reflective data, and the proposed model is reliable to interpret the formation mechanism of bright whiteness in beetle scale. The work here is an effect to further fabricate novel high-brightness optical composite films or coating materials for a variety of applications.
机译:通过采用白甲虫鳞片的内部微纳米结构的光学成像,本文提出了一种多层的非周期性模型,以了解一种白色甲虫的鲜艳白度的复杂天然形成机制。基于所提出的模型,可见光反射率的光学模拟与具有可见光的层数,层厚度和入射角的变化,随着空气层和几丁质层的改变。结果显示出较大的入射角会导致较低的反射率,较少数量的层也将导致较低的反射率和较高的可见带宽范围内的波动。模拟结果与测量的反射数据相匹配,所提出的模型可靠地解释甲虫刻度中明亮白度的形成机制。这里的作品是进一步制造新型高亮度光学复合膜或涂料的各种应用的效果。

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