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首页> 外文期刊>The Journal of Experimental Biology >Spectral reflectance and directional properties of structural coloration in bird plumage
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Spectral reflectance and directional properties of structural coloration in bird plumage

机译:鸟类羽毛结构色的光谱反射率和方向性

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摘要

Bird plumage is coloured both by pigments and by spectrally selective interference in the light reflected from feather barbs. These barbs are composites of high- and low-refractive-index materials, and light is reflected at refractive index boundaries. The spatial structure determines the wavelengths where constructive interference occurs and, hence, the spectral tuning. The spectral tuning of interference colours often varies with angles of illumination and reflection, which produces iridescence. Iridescence and other optical effects mean that interference coloration looks different from pigmentation and is visually striking. To study the optical and visual properties of structural plumage colours, we recorded the reflectance spectra of feathers and in particular their directional properties. A fixed spot on a feather was viewed from a fixed position, whilst the feather orientation and the angle of illumination were varied. We recognise two main types of coloration, 'directional' and 'diffuse'. Within these types, there is considerable variation, and five examples illustrate some features of structural plumage colours and suggest how their optical and visual properties can be measured and described.
机译:鸟类的羽毛被颜料和羽毛倒钩反射的光的光谱选择性干扰所着色。这些倒钩是高折射率材料和低折射率材料的复合材料,并且光在折射率边界处反射。空间结构确定发生相长干涉的波长,从而确定光谱调谐。干涉色的光谱调谐通常随照明和反射角度而变化,从而产生虹彩。虹彩和其他光学效果意味着干涉色看起来与色素沉着不同并且在视觉上引人注目。为了研究结构羽毛颜色的光学和视觉特性,我们记录了羽毛的反射光谱,尤其是它们的方向性。从固定位置观察羽毛上的固定点,同时改变羽毛的方向和照明角度。我们认识到两种主要的着色类型:“定向”和“扩散”。在这些类型中,变化很大,五个示例说明了结构羽毛颜色的一些特征,并提出了如何测量和描述其光学和视觉特性的方法。

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