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Thermal radiation management by natural photonic structures: Morimus asper funereus case

机译:天然光子结构的热辐射管理:Morimus asper funereus case

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摘要

Convective, conductive and radiative mechanisms of thermal management are extremely important for life. Photonic structures, used to detect infrared radiation (IR) and enhance radiative energy exchange, were observed in a number of organisms. Here we report on sophisticated radiative mechanisms used by Morimus asper funereus, a longicorn beetle whose elytra possess a suitably aligned array of lenslets and blackbodies. Additionally, a dense array of microtrichia hyperuniformly covers blackbodies and operates as a stochastic, full-bandgap, IR-photonic structure. All these features, whose characteristic dimensions cover a range from several hundred down to a few micrometres, operate synergistically to improve the absorption, emission and, possibly, detection of IR radiation. We present a morphological characterization of the elytron, thermal imaging measurements and a theoretical IR model of insect elytron, uncovering a synergistic operation of all structures.
机译:热管理的对流、传导和辐射机制对生命极其重要。光子结构,用于探测红外辐射(IR)和增强辐射能量交换,在许多生物体中被观察到。在这里,我们报道了Morimus asper funereus使用的复杂辐射机制。Morimus asper funereus是一种天牛甲虫,它的鞘膜上有一排适当排列的透镜和黑体。此外,致密的微鞭毛虫阵列超均匀地覆盖着黑体,并作为一种随机的、全带隙的红外光子结构运行。所有这些特征的特征尺寸范围从几百到几微米不等,它们协同工作,以改善红外辐射的吸收、发射和探测。本文介绍了昆虫鞘翅子的形态特征、热成像测量和理论红外模型,揭示了所有结构的协同作用。

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