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Review of Plasmonic Nanocomposite Metamaterial Absorber

机译:等离子体纳米复合超材料吸收剂的综述

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摘要

Plasmonic metamaterials are artificial materials typically composed of noble metals in which the features of photonics and electronics are linked by coupling photons to conduction electrons of metal (known as surface _lasmon). These rationally designed structures have spurred interest noticeably since they demonstrate some fascinating properties which are unattainable with naturally occurring materials. Complete absorption of light is one of the recent exotic properties of plasmonic metamaterials which has broadened its application area considerably. This is realized by designing a medium whose impedance matches that of free space while being opaque. If such a medium is filled with some lossy medium, the resulting structure can absorb light totally in a sharp or broad frequency range. Although several types of metamaterials perfect absorber have been demonstrated so far, in the current paper we overview (and focus on) perfect absorbers based on nanocomposites where the total thickness is a few tens of nanometer and the absorption band is broad, tunable and insensitive to the angle of incidence. The nanocomposites consist of metal nanoparticles embedded in a dielectric matrix with a high filling factor close to the percolation threshold. The filling factor can be tailored by the vapor phase co-deposition of the metallic and dielectric components. In addition, novel wet chemical approaches are discussed which are bio-inspired or involve synthesis within levitating Leidenfrost drops, for instance. Moreover, theoretical considerations, optical properties, and potential application of perfect absorbers will be presented.
机译:等离子体超材料是通常由贵金属组成的人造材料,其中光子和电子器件的特征是通过将光子耦合到金属的传导电子(称为表面lasmon)来链接的。这些合理设计的结构引起了人们的极大兴趣,因为它们表现出一些自然产生的材料无法达到的令人着迷的特性。完全吸收光是等离子体超材料的最新奇特特性之一,极大地扩展了其应用范围。这是通过设计一种阻抗不透明但与自由空间的阻抗匹配的介质来实现的。如果这种介质中填充有损耗的介质,则最终的结构可以完全吸收尖锐或宽频率范围内的光。尽管到目前为止已经展示了几种类型的超材料完美吸收体,但在本文中,我们概述(并着重于)基于纳米复合材料的完美吸收体,其中纳米复合膜的总厚度为几十纳米,吸收带宽,可调谐且对吸收体不敏感。入射角。纳米复合材料由嵌入在介电基质中的金属纳米颗粒组成,其填充因子接近渗滤阈值。填充因子可以通过金属和介电组分的气相共沉积来定制。另外,例如,讨论了新颖的湿化学方法,其是受生物启发的或涉及在悬浮的莱顿弗罗斯特液滴内的合成。此外,将提出理论上的考虑,光学性质以及理想吸收体的潜在应用。

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