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Metal-Insulator-Metal-Based Plasmonic Metamaterial Absorbers at Visible and Infrared Wavelengths: A Review

机译:可见光和红外波长的金属绝缘体 - 金属基质超材料吸收器:综述

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摘要

Electromagnetic wave absorbers have been investigated for many years with the aim of achieving high absorbance and tunability of both the absorption wavelength and the operation mode by geometrical control, small and thin absorber volume, and simple fabrication. There is particular interest in metal-insulator-metal-based plasmonic metamaterial absorbers (MIM-PMAs) due to their complete fulfillment of these demands. MIM-PMAs consist of top periodic micropatches, a middle dielectric layer, and a bottom reflector layer to generate strong localized surface plasmon resonance at absorption wavelengths. In particular, in the visible and infrared (IR) wavelength regions, a wide range of applications is expected, such as solar cells, refractive index sensors, optical camouflage, cloaking, optical switches, color pixels, thermal IR sensors, IR microscopy and gas sensing. The promising properties of MIM-PMAs are attributed to the simple plasmonic resonance localized at the top micropatch resonators formed by the MIMs. Here, various types of MIM-PMAs are reviewed in terms of their historical background, basic physics, operation mode design, and future challenges to clarify their underlying basic design principles and introduce various applications. The principles presented in this review paper can be applied to other wavelength regions such as the ultraviolet, terahertz, and microwave regions.
机译:已经研究了电磁波吸收器多年来,目的是通过几何控制,小和薄的吸收体积和简单的制造来实现吸收波长和操作模式的高吸光度和可调性。由于它们完全满足这些需求,特别涉及金属绝缘体 - 金属基等材料的超级材料吸收器(MIM-PIM-PMA)。 MIM-PMA包括顶周周期性微量单独,中间介电层和底部反射层,以在吸收波长下产生强大的局部表面等离子体共振。特别地,在可见光和红外(IR)波长区域中,预期各种应用,例如太阳能电池,折射率传感器,光学伪装,粘附,光开关,彩色像素,热IR传感器,IR显微镜和气体传感。 MIM-PMA的有希望的性质归因于由MIMS形成的顶部微量分谐谐振器的简单等离子体共振。在这里,根据其历史背景,基本物理,操作模式设计和未来挑战来审查各种类型的MIM-PIM-PIM-PIM-PIM-PIM-PIM-PIM-PIM-PIM-PIM-PIM-PIM-PIM-PIM-PIM-PIM-PIM-PMMS,以澄清其基本的基本设计原则并引入各种应用。本文提出的原理可以应用于其他波长区域,例如紫外线,太赫兹和微波区。

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