光学
红外线的
发射率
宽带
低发射率
可见光谱
材料科学
光电子学
遥感
物理
地质学
作者
W. G. Liu,Renjie Li,Chao Wang,Feiyue Zhu,Xiaowei Zhang,Yang Yang,Zhuo Li,Yanze Gao
出处
期刊:Optics Express
[Optica Publishing Group]
日期:2024-11-26
卷期号:32 (26): 46167-46167
被引量:3
摘要
An Al-Cr alloy absorber is proposed for light absorption in the visible and infrared bands. The absorber was fabricated on a 3-inch silicon wafer and quartz glass using magnetron sputtering and wet-etching techniques. Owing to its disordered nanocone structure, the absorber achieves an average absorption of up to 98.45% in the 400-1100 nm band. When the wavelengths are broadened to 3-5 µm and 8-12 µm, the average absorptions still reach 81.8% and 69.4%, respectively. Compared to a plain Al-Cr film without nanostructures, the absorption increases by approximately 70%. The infrared emission spectrum of the Al-Cr absorber is fully controllable, and an effective 3D FEM model is proposed to predict the peaks and valleys of its infrared spectrum with a prediction deviation of less than 7%. Al-Cr alloy absorbers offer advantages such as low cost, no requirement for photolithography, scalability in preparation, and controllable infrared emissivity. These advantages make the Al-Cr absorber a promising candidate for efficient infrared scene generation devices.
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