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Near-perfect broadband absorption from hyperbolic metamaterial nanoparticles

机译:双曲超材料纳米粒子的近乎完美的宽带吸收

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摘要

Broadband absorbers are essential components of many light detection, energy harvesting, and camouflage schemes. Current designs are either bulky or use planar films that cause problems in cracking and delamination during flexing or heating. In addition, transferring planar materials to flexible, thin, or low-cost substrates poses a significant challenge. On the other hand, particle-based materials are highly flexible and can be transferred and assembled onto a more desirable substrate but have not shown high performance as an absorber in a standalone system. Here, we introduce a class of particle absorbers called transferable hyperbolic metamaterial particles (THMMP) that display selective, omnidirectional, tunable, broadband absorption when closely packed. This is demonstrated with vertically aligned hyperbolic nanotube (HNT) arrays composed of alternating layers of aluminum-doped zinc oxide and zinc oxide. The broadband absorption measures >87% from 1,200 nm to over 2,200 nm with a maximum absorption of 98.1% at 1,550 nm and remains large for high angles. Furthermore, we show the advantages of particle-based absorbers by transferring the HNTs to a polymer substrate that shows excellent mechanical flexibility and visible transparency while maintaining near-perfect absorption in the telecommunications region. In addition, other material systems and geometries are proposed for a wider range of applications.
机译:宽带吸收器是许多光检测,能量收集和伪装方案的重要组成部分。当前的设计要么体积大要么使用平面膜,这些平面膜在挠曲或加热过程中导致破裂和分层的问题。另外,将平面材料转移到柔性的,薄的或低成本的衬底上提出了巨大的挑战。另一方面,基于颗粒的材料具有很高的柔韧性,可以转移并组装到更理想的基材上,但在独立系统中作为吸收剂并未表现出很高的性能。在这里,我们介绍一类称为可转移双曲线超材料粒子(THMMP)的粒子吸收器,当紧密堆积时,它们会显示出选择性,全向,可调,宽带吸收。这由垂直排列的双曲线纳米管(HNT)阵列证明,该阵列由铝掺杂的氧化锌和氧化锌的交替层组成。从1,200 nm到2,200 nm以上的宽带吸收度大于87%,在1,550 nm处的最大吸收率为98.1%,对于大角度而言仍保持较大。此外,我们通过将HNT转移到聚合物基材上显示了基于颗粒的吸收剂的优点,该聚合物基材具有出色的机械柔韧性和可见透明性,同时在电信领域保持了近乎完美的吸收。另外,提出了其他材料系统和几何形状以用于更广泛的应用。

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