Opt Lett. 2023 Apr 1;48(7):1898-1901. doi: 10.1364/OL.482794.
Achromatic metalenses formed using previous design methods face a compromise between diameter, numerical aperture, and working wave band. To address this problem, the authors coat the refractive lens with a dispersive metasurface and numerically demonstrate a centimeter-scale hybrid metalens for the visible band of 440-700 nm. By revisiting the generalized Snell law, a universal design of a chromatic aberration correction metasurface is proposed for a plano-convex lens with arbitrary surface curvatures. A highly precise semi-vector method is also presented for large-scale metasurface simulation. Benefiting from this, the reported hybrid metalens is carefully evaluated and exhibits 81% chromatic aberration suppression, polarization insensitivity, and broadband imaging capacity.
先前设计方法所形成的消色差金属透镜在直径、数值孔径和工作波段之间存在折衷。为了解决这个问题,作者在折射透镜上覆盖了一个色散超表面,并数值演示了一个厘米级的混合金属透镜,用于 440-700nm 的可见光波段。通过重新审视广义斯涅尔定律,提出了一种用于任意表面曲率的平凸透镜的消色差超表面的通用设计。还提出了一种用于大规模超表面模拟的高精度半矢量方法。受益于此,所报道的混合金属透镜经过仔细评估,表现出 81%的色差抑制、偏振不敏感性和宽带成像能力。