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首页> 外文期刊>Optics and Photonics Journal >Light Reflection by Cuticles of Chrysina Jewel Scarabs: Optical Measurements, Morphology Characterization, and Theoretical Modeling
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Light Reflection by Cuticles of Chrysina Jewel Scarabs: Optical Measurements, Morphology Characterization, and Theoretical Modeling

机译:Chrysina Jewel Scarabs表皮的光反射:光学测量,形态表征和理论建模

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Cuticles of some Chrysina scarabs are characterized by flat, graded, and twisted structures of nanosized chitin fibrils. As inferred from SEM images, each species has its own spatial period or pitch P which is dependent on the depth z through the cuticle. From Berreman’s formalism, taking into account the corresponding P(z) dependence, we evaluate reflection spectra of C. aurigans and C. chrysargyrea scarabs. The spectra display the main spectral features observed in the measured ones when small sections of the cuticles are illuminated with non-polarized light, for wavelengths between 300 and 1100 nm. By considering these twisted structures as 1D photonic crystals, an approach is developed to show how the broad band characterizing the reflection spectra arises from a narrow intrinsic photonic band width, whose spectral position moves through visible and near infrared wavelengths. The role of the epicuticle that covers the twisted structures is analyzed in terms of a waxy layer acting as an anti-reflecting coating that also shows low levels of light scattering.
机译:某些Chrysina金龟子的表皮的特征是纳米级几丁质原纤维的扁平,渐变和扭曲结构。从SEM图像可以看出,每个物种都有其自己的空间周期或间距P,其取决于穿过角质层的深度z。根据Berreman的形式主义,考虑到相应的P(z)依赖性,我们评估了C. aurigans和C. chrysargyrea金龟子的反射光谱。光谱显示了当角质层的一小部分被非偏振光照射时(在300到1100 nm之间的波长),观察到的主要光谱特征。通过将这些扭曲的结构视为一维光子晶体,开发了一种方法来显示表征反射光谱的宽带是如何从窄的固有光子带宽中产生的,该窄的固有光子带宽在可见光和近红外波长范围内移动。通过蜡质层作为抗反射涂层来分析覆盖扭曲结构的表皮的作用,该蜡质层还显示出低水平的光散射。

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