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Ultraviolet reflecting photonic microstructures in the King Penguin beak

机译:企鹅金喙中的紫外线反射光子微观结构

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King and emperor penguins (Aptenodytes patagonicus and Aptenodytes forsteri) are the only species of marine birds so far known to reflect ultraviolet (UV) light from their beaks. Unlike humans, most birds perceive UV light and several species communicate using the near UV spectrum. Indeed, UV reflectance in addition to the colour of songbird feathers has been recognized as an important signal when choosing a mate. The king penguin is endowed with several highly coloured ornaments, notably its beak horn and breast and auricular plumage, but only its beak reflects UV, a property considered to influence its sexual attraction. Because no avian UV-reflecting pigments have yet been identified, the origin of such reflections is probably structural. In an attempt to identify the structures that give rise to UV reflectance, we combined reflectance spectrophotometry and morphological analysis by both light and electron microscopy, after experimental removal of surface layers of the beak horn. Here, we characterize for the first time a multilayer reflector photonic microstructure that produces the UV reflections in the king penguin beak.
机译:帝王企鹅和帝企鹅(Aptenodytes patagonicus和Aptenodytes forsteri)是迄今为止已知的唯一能从喙反射紫外线(UV)的海洋鸟类。与人类不同,大多数鸟类会感知紫外线,并且有几种物种使用近紫外光谱进行通讯。实际上,在选择配偶时,除了鸣禽羽毛的颜色外,紫外线反射率也被认为是重要的信号。企鹅王拥有数种色彩鲜艳的饰物,特别是其喙角,胸部和耳廓羽毛,但只有其喙会反射紫外线,这种性质被认为会影响其性吸引力。由于尚未鉴定出禽类紫外线反射颜料,因此这种反射的起源可能是结构性的。为了确定引起紫外线反射的结构,我们在实验除去喙角的表层后,将反射分光光度法和通过光学和电子显微镜进行的形态分析相结合。在这里,我们首次表征了多层反射器光子微观结构,该结构在企鹅王喙中产生了紫外线反射。

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