Nalimov Anton, Kotlyar Victor
IPSI RAS-Branch of the FSRC "Crystallography and Photonics" RAS, Molodogvardeyskaya 151, 443001 Samara, Russia.
Technical Cybernetics Department, Samara National Research University, Moskovskoye Shosse 34, 443086 Samara, Russia.
Nanomaterials (Basel). 2022 Jul 28;12(15):2602. doi: 10.3390/nano12152602.
A combined high-aperture metalens in a thin silicon nitride film that consists of two tilted sectored metalenses is considered. Each sector of the metalens consists of a set of binary subwavelength gratings. The diameter of the metalens is 14 μm. Using a time-domain finite difference method, we show that the metalens can simultaneously detect optical vortices with two topological charges -1 and -2, almost over the entire spectrum of visible wavelengths. The metalens can distinguish several wavelengths that are focused at different points in the focal plane due to a 1-nm change in wavelength resulting in a focal spot shift of about 4 nm. When the metalens is illuminated by a Gaussian beam with left-handed circular polarization, two optical vortices with topological charges 1 and 2 are simultaneously formed 6-μm apart at the focal distance of 6 μm.
本文考虑了一种由两个倾斜扇形超透镜组成的、位于薄氮化硅薄膜中的组合式高孔径超透镜。超透镜的每个扇区由一组二元亚波长光栅组成。超透镜的直径为14μm。利用时域有限差分法,我们表明该超透镜几乎可以在整个可见光谱范围内同时检测拓扑电荷为-1和-2的光学涡旋。由于波长1nm的变化会导致焦斑偏移约4nm,因此该超透镜可以区分聚焦在焦平面不同点的几种波长。当用左旋圆偏振高斯光束照射超透镜时,在6μm的焦距处会同时形成两个拓扑电荷分别为1和2且相距6μm的光学涡旋。