Large-scale achromatic flat lens by light frequency-domain coherence optimization

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Abstract

Flat lenses, including metalens and diffractive lens, have attracted increasing attention due to their ability to miniaturize the imaging devices. However, realizing a large scale achromatic flat lens with high performance still remains a big challenge. Here, we developed a new framework in designing achromatic multi-level diffractive lenses by light coherence optimization, which enables the implementation of large-scale flat lenses under non-ideal conditions. As results, a series achromatic polymer lenses with diameter from 1 to 10 mm are successfully designed and fabricated. The subsequent optical characterizations substantially validate our theoretical framework and show relatively good performance of the centimeter-scale achromatic multi-level diffractive lenses with a super broad bandwidth in optical wavelengths (400–1100 nm). After comparing with conventional refractive lens, this achromatic lens shows significant advantages in white-light imaging performance, implying a new strategy in developing practical planar optical devices.

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Xiao, X., Zhao, Y., Ye, X., Chen, C., Lu, X., Rong, Y., … Li, T. (2022). Large-scale achromatic flat lens by light frequency-domain coherence optimization. Light: Science and Applications, 11(1). https://doi.org/10.1038/s41377-022-01024-y

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