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Gyroid cuticular structures in butterfly wing scales:biological photonic crystals

机译:蝴蝶翼鳞中的陀螺表皮结构:生物光子晶体

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We present a systematic study of the cuticular structure in the butterfly wing scales of some papilionids(Parides sesostris and Teinopalpus imperialis)and lycaenids(Callophrys rubi Cyanophrys remus,Mitoura gryneus and Callophrys dumetorum).Using published scanning and transmission electron microscopy(TEM)images,analytical modelling and computer-generated TEM micrographs,we find that the three-dimensional cuticular structures can be modelled by gyroid structures with various filling fractions and lattice parameters.We give a brief discussion of the formation of cubic gyroid membranes from the smooth endoplasmic reticulum in the scale's cell,which dry and harden to leave the cuticular structure behind when the cell dies.The scales of C.rubi are a potentially attractive biotemplate for producing three-dimensional optical photonic crystals since for these scales the cuticle-filling fraction is nearly optimal for obtaining the largest photonic band gap in a gyroid structure.
机译:我们对一些乳突类(Parides sesostris和Teinopalpus imperialis)和lycaenids(Callophrys rubi Cyanophrys remus,Mitoura gryneus和Callophrys dumetorum)的蝶翅鳞片中的表皮结构进行了系统的研究。 ,分析模型和计算机生成的TEM显微照片,我们发现可以用具有各种填充率和晶格参数的螺旋状结构来建模三维表皮结构。我们简要讨论了由平滑内质网形成立方状螺旋状膜的过程。在鳞片的细胞中,它死后会干燥并变硬,从而留下表皮结构。C.rubi的鳞片是生产三维光学光子晶体的潜在有吸引力的生物模板,因为对于这些鳞片,角质层的填充率接近最适合获得回旋结构中最大的光子带隙。

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