He Hairong, Yang Hui, Xie Zhenwei, Yuan Xiaocong
Nanophotonics Research Center, Shenzhen Key Laboratory of Micro-Scale Optical Information Technology, Shenzhen University, Shenzhen 518060, China.
Nanoscale. 2022 Sep 2;14(34):12476-12482. doi: 10.1039/d2nr03116g.
Mid-infrared metalenses are promising for potential applications in a range of fields, including molecular detection, imaging, and optical sensing. To fulfil the different requirements of these diverse application scenarios, engineering of the ability to control the chromatic dispersion of these lenses at will is vitally important. Herein, we demonstrate broadband mid-infrared metalenses with polarization-controlled at-will chromatic dispersion capability based on all-silicon metasurfaces. Both polarization-insensitive and polarization-sensitive mid-infrared metalenses with at-will chromatic dispersion capabilities are demonstrated numerically for operation at wavelengths ranging from 3.75 μm to 4.75 μm. The average focusing efficiency of all these metalenses exceeds 40% in the wavelength range of interest, and the highest focusing efficiency ranges up to 67%. The mid-infrared metalenses with at-will chromatic dispersion proposed here may be beneficial for mid-infrared sensing, communications, and imaging applications in the future.
中红外超构透镜在包括分子检测、成像和光学传感在内的一系列领域具有潜在应用前景。为满足这些不同应用场景的不同要求,随意控制这些透镜的色散能力的设计至关重要。在此,我们展示了基于全硅超表面的具有偏振可控的随意色散能力的宽带中红外超构透镜。数值模拟展示了具有随意色散能力的偏振不敏感和偏振敏感的中红外超构透镜,其工作波长范围为3.75μm至4.75μm。在感兴趣的波长范围内,所有这些超构透镜的平均聚焦效率超过40%,最高聚焦效率可达67%。这里提出的具有随意色散的中红外超构透镜未来可能对中红外传感、通信和成像应用有益。