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A highly conspicuous mineralized composite photonic architecture in the translucent shell of the blue-rayed limpet

机译:一种高度显眼的矿化复合光子结构,位于蓝光帽贝壳的半透明外壳中

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摘要

Many species rely on diverse selections of entirely organic photonic structures for the manipulation of light and the display of striking colours. Here we report the discovery of a mineralized hierarchical photonic architecture embedded within the translucent shell of the blue-rayed limpet Patella pellucida. The bright colour of the limpet’s stripes originates from light interference in a periodically layered zig-zag architecture of crystallographically co-oriented calcite lamellae. Beneath the photonic multilayer, a disordered array of light-absorbing particles provides contrast for the blue colour. This unique mineralized manifestation of a synergy of two distinct optical elements at specific locations within the continuum of the limpet’s translucent protective shell ensures the vivid shine of the blue stripes, which can be perceived under water from a wide range of viewing angles. The stripes’ reflection band coincides with the spectral range of minimal light absorption in sea water, raising intriguing questions regarding their functional significance.
机译:许多物种依赖于对整个有机光子结构的多种选择来操纵光并显示出惊人的色彩。在这里,我们报告发现埋在蓝光帽贝Pat骨的半透明壳内的矿化分层光子结构的发现。帽贝条纹的亮色源于晶体共取向方解石薄片周期性分层的锯齿形结构中的光干扰。在光子多层下面,无序排列的吸光颗粒阵列为蓝色提供了对比度。在帽贝的半透明保护壳的连续区域内的特定位置,两种独特的光学元素协同作用的独特矿化表现,确保了蓝色条纹的鲜明光泽,可以在水下从各种视角观察到蓝色条纹。条纹的反射带与海水中最小光吸收的光谱范围相吻合,引发了有关其功能重要性的有趣问题。

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