Zhang Jihua, Wei Ran, ElKabbash Mohamed, Campbell E Michael, Guo Chunlei
Opt Lett. 2020 May 15;45(10):2800-2803. doi: 10.1364/OL.392651.
A thin-film perfect electromagnetic absorber with a tunable response in the infrared (IR) region is proposed using a metal-dielectric-metal configuration, which consists of a Ti top layer and a Ge spacer layer on a Ti substrate. The thin-film structure simplifies the absorber design by tuning the thicknesses of the two layers, which is suitable for large-scale fabrication by matured deposition technologies. The absorber supports perfect IR absorption with tunability from 3 µm to over 15 µm. Furthermore, the total thickness is much smaller than the wavelength, and the absorption has small iridescence. Based on this design, we demonstrated two samples with one supporting single-band absorption in the atmospheric absorption window (5-8 µm) and the other one supporting dual-band absorption in the two atmospheric transmission windows (3-5 and 8-13 µm). These absorption signatures can find applications in IR invisibility and radiative cooling.
提出了一种在红外(IR)区域具有可调响应的薄膜完美电磁吸收器,其采用金属 - 介质 - 金属结构,该结构由钛顶层和位于钛衬底上的锗间隔层组成。这种薄膜结构通过调整两层的厚度简化了吸收器设计,适合采用成熟的沉积技术进行大规模制造。该吸收器支持从3μm到超过15μm的可调完美红外吸收。此外,总厚度远小于波长,且吸收具有小的彩虹色。基于此设计,我们展示了两个样品,一个在大气吸收窗口(5 - 8μm)支持单波段吸收,另一个在两个大气传输窗口(3 - 5和8 - 13μm)支持双波段吸收。这些吸收特性可用于红外隐身和辐射冷却。