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Broadband Antireflective Hybrid Micro/Nanostructure on Zinc Sulfide Fabricated by Optimal Bessel Femtosecond Laser
Li, Xun; Li, Ming
作者部门瞬态光学研究室
2023-04
发表期刊NANOMATERIALS
ISSN2079-4991
卷号13期号:7
产权排序1
摘要Enhancing the infrared window transmittance of zinc sulfide (ZnS) is important to improve the performance of infrared detector systems. In this work, a new hybrid micro/nanostructure was fabricated by an optimal Bessel femtosecond laser on ZnS substrate. The surface morphologies and profiles of ASS ablated by a 20x microscope objective Bessel beam are described, indicating that the nanoripples on the micropore were formed by the SPP interference and the SPP scattering in a particular direction. Further, the maximum average transmittance of ASS increased by 9.7% and 12.3% in the wavelength ranges of 5 similar to 12 mu m and 8 similar to 12 mu m, respectively. Finally, the antireflective mechanism of the hybrid micro/nanostructure is explored using the novel electromagnetic field model based on the FDTD method, and we attribute the stable antireflective performance of ASS in broadband to the interface effective dielectric effect and LLFE.
关键词femtosecond laser infrared antireflection micro/nano hybrid structure
DOI10.3390/nano13071225
收录类别SCI
语种英语
WOS记录号WOS:000969015100001
出版者BASEL
引用统计
文献类型期刊论文
条目标识符http://ir.opt.ac.cn/handle/181661/96431
专题瞬态光学研究室
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GB/T 7714
Li, Xun,Li, Ming. Broadband Antireflective Hybrid Micro/Nanostructure on Zinc Sulfide Fabricated by Optimal Bessel Femtosecond Laser[J]. NANOMATERIALS,2023,13(7).
APA Li, Xun,&Li, Ming.(2023).Broadband Antireflective Hybrid Micro/Nanostructure on Zinc Sulfide Fabricated by Optimal Bessel Femtosecond Laser.NANOMATERIALS,13(7).
MLA Li, Xun,et al."Broadband Antireflective Hybrid Micro/Nanostructure on Zinc Sulfide Fabricated by Optimal Bessel Femtosecond Laser".NANOMATERIALS 13.7(2023).
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