Compatible camouflage for dual-band guided-laser radar and infrared via a metamaterial perfect absorber
Mingyu Luo, Tong Xie, Xin Li, Lin Zheng, Te Du, Zhenrong Zhang, Junbo Yang
Abstract
Laser-guided detector and infrared detection have attracted increasing attention in a wide range of research fields, including multispectral detection, radiative cooling, and thermal management. Previously reported absorbers presented shortcomings of lacking either tunability or compatibility. In this study, a metamaterial perfect absorber based on a Helmholtz resonator and fractal structure is proposed, which realizes tunable perfect absorptivity ( α 1.06 μ m >0.99, α 10.6 μ m >0.99) of guided-laser radar dual operating bands (1.06 µm and 10.6 µm) and a low infrared average emissivity ( ε ¯ 3−5 μ m =0.03, ε ¯ 8−14 μ m =0.31) in two atmospheric windows for compatible camouflage. The proposed perfect absorber provides a dynamically tunable absorptivity without structural changes and can be applied to optical communication, military stealth or protection, and electromagnetic detection.