National Laboratory for Infrared Physics, Shanghai Institute of Technical Physics, Chinese Academy of Sciences, 500 Yu Tian Road, Shanghai, 200083, China.
Nanoscale. 2018 Oct 18;10(40):19154-19161. doi: 10.1039/c8nr07480a.
The optical vortex beam with an orbital angular momentum, featuring a doughnut intensity distribution and a helically structured wavefront, has received extensive attention due to its applications in nanoparticle manipulation and optical communications. In this paper, we propose high-efficiency polarization-independent vortex beam generators which are capable of transforming the arbitrarily polarized plane wave into a focusing optical vortex beam and an abruptly focusing airy vortex beam. Besides, based on holographic metasurfaces, we provide a general design scheme for detecting the topological charges. With such a design strategy, multichannel topological charge resolved devices are demonstrated, which successfully implement the detection of the topological charges from -2 to 2. The metasurfaces designed with a simple and effective method in light manipulation promise photonic applications in secure communications and other related areas.
具有轨道角动量的光学涡旋光束,具有环形强度分布和螺旋形波前结构,由于其在纳米粒子操纵和光通信中的应用而受到广泛关注。在本文中,我们提出了高效的偏振无关的涡旋光束发生器,它可以将任意偏振的平面波转换成聚焦的光学涡旋光束和突然聚焦的艾里涡旋光束。此外,基于全息超表面,我们提供了一种用于检测拓扑电荷的通用设计方案。通过这种设计策略,演示了多通道拓扑电荷分辨器件,成功实现了从-2 到 2 的拓扑电荷检测。使用简单有效的方法设计的超表面在光操纵方面具有应用前景,有望在安全通信和其他相关领域得到应用。