Sangwon BaekJoohoon KimYeseul KimWon Seok ChoTrevon BadloeSeong‐Won MoonJunsuk RhoJong‐Lam Lee
We theoretically and experimentally demonstrate an RGB achromatic metalens that operates concurrently at three visible wavelengths ( λ = 450 , 532, and 700 nm) with a high numerical aperture of 0.87. The RGB metalens is designed by simple integration of metalens components with the spatial interleaving method. The simulated spatial interleaving metalens shows RGB achromatic operation with focusing efficiencies of 25.2%, 58.7%, and 66.4% at the wavelengths of 450, 532, and 700 nm, respectively. A 450 μm diameter metalens operating at three designated wavelengths is fabricated with low-loss hydrogenated amorphous silicon. The fabricated metalens has the measured focusing efficiencies of 5.9%, 11.3%, and 13.6% at λ = 450 , 532, and 700 nm, respectively. The Strehl ratios of 0.89, 0.88, and 0.82 are obtained at given wavelengths, which show a capability of diffraction-limited operation.
Heming WeiWen‐Chen HuJingtian HuGuoqiang HeFufei PangSridhar KrishnaswamyJan NedomaCarlos Marques
Chengfeng PanHao WangJoel K. W. Yang
Xiaosai WangJiabao YaoYing CuiYongyuan Jiang
Haowen LiangQiaoling LinXiangsheng XieQian SunYin WangLidan ZhouLin LiuXiangyang YuJianying ZhouThomas F. KraussJuntao Li
Haowen Liang (5461265)Qiaoling Lin (5461271)Xiangsheng Xie (4481029)Qian Sun (53880)Yin Wang (34938)Lidan Zhou (3742942)Lin Liu (74495)Xiangyang Yu (1615093)Jianying Zhou (506073)Thomas F Krauss (5461268)Juntao Li (33229)