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Structural coloured feathers of mallards act by simple multilayer photonics

机译:野鸭的结构化彩色羽毛通过简单的多层光子学起作用

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摘要

The blue colours of the speculum of the mallard (Anas platyrhynchos), both male and female, and the green head feathers of the male arise from light interacting with stacks of melanosomes residing in the feather barbules. Here, we show that the iridescent colours can be quantitatively explained with an optical multilayer model by using a position-dependent effective refractive index, which results from the varying ratio of melanin and keratin. Reflectance spectra obtained by multilayer modelling and three-dimensional finite-difference time-domain calculations were virtually identical. The spectral properties of the barbules' photonic structures are sensitive to variations in the multilayer period and the cortex thickness, but they are surprisingly robust to variations in the spatial parameters of the barbules' melanosome stacks. The blue and green reflectance spectra of the structural-coloured feathers correspond with the sensitivity spectra of the short- and middle-wavelength-sensitive photoreceptors, indicating their biological significance for intraspecific signalling.
机译:雄性和雌性野鸭(Anas platyrhynchos)的窥器的蓝色,以及雄性的绿色头羽毛是由光与驻留在羽毛小球中的黑素体堆栈相互作用产生的。在这里,我们表明,可以通过使用光学多层模型,通过使用取决于位置的有效折射率来定量地解释彩虹色,该位置依赖的有效折射率是由黑色素和角蛋白的比率变化所导致的。通过多层建模和三维有限差分时域计算获得的反射光谱实际上是相同的。直管的光子结构的光谱特性对多层周期和皮质厚度的变化敏感,但令人惊讶地对直管的黑素体堆叠的空间参数的变化具有鲁棒性。结构色羽毛的蓝色和绿色反射光谱与短波和中波敏感的感光体的灵敏度光谱相对应,表明它们对于种内信号传导的生物学意义。

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