Kim Myunghwan, Kim Soeun
Integrated Optics Laboratory, Advanced Photonics Research Institute, GIST, Gwangju, 61005, Republic of Korea.
Sci Rep. 2020 Dec 1;10(1):20898. doi: 10.1038/s41598-020-77821-5.
Optical fibers have been utilized in various fields owing to their superior guiding performance. However, the modification of optical properties and light manipulation in fibers are restricted by the limitation of the core and cladding materials. In addition, the spot size of the light is constrained by the diffraction limit. In this study, we propose an all-dielectric metalens patterned on the facet of a photonic crystal fiber. The metasurface, which contains Si pillars, satisfies the required phase diagram for focusing light with high transmission. The proposed metalens has a focal length of 30 µm and achieves an outstanding efficiency of up to 88% at a wavelength of 1.55 µm, which is approximately 5 times higher than that of a metal-based metalens. We believe that this scheme may pave the way for in-fiber metasurface applications.
由于其卓越的导光性能,光纤已被应用于各个领域。然而,光纤光学特性的改变和光操控受到纤芯和包层材料的限制。此外,光的光斑尺寸受衍射极限的约束。在本研究中,我们提出了一种在光子晶体光纤端面上图案化的全介质超透镜。包含硅柱的超表面满足了高透射聚焦光所需的相位图。所提出的超透镜焦距为30微米,在1.55微米波长下实现了高达88%的出色效率,这比基于金属的超透镜高出约5倍。我们相信该方案可能为光纤超表面应用铺平道路。