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Super Black Material from Low-Density Carbon Aerogels With Subwavelength Structures

机译:低密度碳气凝胶具有亚波长结构的超黑材料

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摘要

Many scientists have devoted themselves to the study of the interaction between subwavelength structures and electromagnetic waves. These structures are commonly composed of regular arrays of subwavelength protuberances, which can be artificially designed. However, extending from 2D periodic patterns to 3D disordered subwavelength structures has not been studied yet. In this study, we studied the total diffuse reflectivity of carbon aerogels with various 3D networks of randomly oriented particle-like nanostructures by using normally incident visible light (430-675 nm). We observed that the different 3D network nanostructures of carbon aerogels, especially for the structures with the minimum size, reduced the reflectivity effectively. It was found that the key mechanism for the subwavelength-structure-induced ultralow reflectivity property is due to the decrease of the amplitude of electron vibration forced by the electromagnetic wave, which provides a simple method for designing perfect black materials.
机译:许多科学家致力于研究亚波长结构与电磁波之间的相互作用。这些结构通常由可人工设计的亚波长突起的规则阵列组成。但是,尚未研究从2D周期性模式扩展到3D无序亚波长结构。在这项研究中,我们通过使用垂直入射的可见光(430-675 nm)研究了具有随机取向的颗粒状纳米结构的各种3D网络的碳气凝胶的总漫反射率。我们观察到碳气凝胶的不同3D网络纳米结构,特别是对于最小尺寸的结构,有效地降低了反射率。发现亚波长结构引起的超低反射率特性的关键机制是由于电磁波强迫的电子振动幅度的减小,这为设计完美的黑色材料提供了一种简单的方法。

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