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Effects of a butterfly scale microstructure on the iridescent color observed at different angles

机译:蝴蝶鳞片微观结构对不同角度下虹彩颜色的影响

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摘要

Multilayer thin-film structures in butterfly wing scales produce a colorful iridescence from reflected sunlight. Because of optical phenomena, changes in the angle of incidence of light and the viewing angle of an observer result in shifts in the color of butterfly wings. Colors ranging from green to purple, which are due to nonplanar specular reflection, can be observed on Papilio blumei iridescent scales. This refers to a phenomenon in which the curved surface patterns in the thin-film structure cause the specular component of the reflected light to be directed at various angles while affecting the spectral reflectivity at the same time by changing the optical path length through the structure. We determined the spectral reflectivities of P. blumei iridescent scales numerically by using models of a butterfly scale microstructure and experimentally by using a microscale-reflectance spectrometer. The numerical models accurately predict the shifts in spectral reflectivity observed experimentally. # 1998 Optical Society of America OCIS codes: 000.1430, 240.0240, 310.6860.
机译:蝶翅鳞片上的多层薄膜结构通过反射的阳光产生多彩的虹彩。由于光学现象,光的入射角和观察者的视角的变化导致蝴蝶翅膀的颜色偏移。可以在Papilio blumei虹彩标度上观察到由绿色到紫色的颜色,这是由于非平面镜面反射引起的。这是指这样一种现象,其中薄膜结构中的曲面图案使反射光的镜面反射分量以各种角度定向,同时通过改变通过结构的光路长度来同时影响光谱反射率。我们使用蝶形鳞片微观结构模型,并通过使用微鳞片反射光谱仪,通过实验确定了P. blumei虹彩鳞片的光谱反射率。数值模型可以准确预测实验观察到的光谱反射率的变化。 #1998美国光学学会OCIS编码:000.1430、240.0240、310.6860。

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