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首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Controlled fluorescence in a beetle's photonic structure and its sensitivity to environmentally induced changes
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Controlled fluorescence in a beetle's photonic structure and its sensitivity to environmentally induced changes

机译:甲虫光子结构中的受控荧光及其对环境诱导变化的敏感性

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摘要

The scales covering the elytra of the male Hoplia coerulea beetle contain fluorophores embedded within a porous photonic structure. The photonic structure controls both insect colour (reflected light) and fluorescence emission. Herein, the effects of water-induced changes on the fluorescence emission from the beetle were investigated. The fluorescence emission peak wavelength was observed to blue-shift on water immersion of the elytra whereas its reflectance peak wavelength was observed to red-shift. Time-resolved fluorescence measurements, together with optical simulations, confirmed that the radiative emission is controlled by a naturally engineered photonic bandgap while the elytra are in the dry state, whereas non-radiative relaxation pathways dominate the emission response of wet elytra.
机译:覆盖雄性霍普利亚小蓝藻甲虫的鞘翅的鳞片包含嵌入在多孔光子结构中的荧光团。光子结构控制昆虫的颜色(反射光)和荧光发射。在本文中,研究了水诱导的变化对甲虫荧光发射的影响。在鞘管的水浸入中观察到荧光发射峰波长蓝移,而观察到其反射峰波长红移。时间分辨的荧光测量结果以及光学模拟结果证实,当鞘翅处于干燥状态时,辐射发射是由自然工程光子带隙控制的,而非辐射弛豫途径主导着湿鞘翅的发射响应。

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