Wang Wei, Zhao Zehan, Guo Chong, Guo Kai, Guo Zhongyi
Department of Mathematics and Physics, Shijiazhuang Tiedao University, Shijiazhuang 050043, China.
School of Computer and Information, Hefei University of Technology, Hefei 230009, China.
Nanomaterials (Basel). 2019 May 17;9(5):761. doi: 10.3390/nano9050761.
Several novel spin-selected dual-wavelength metalenses have been proposed and investigated based on the plasmonic metasurface consisting of two kinds of rotary rectangle gap nanoantennas (RGN), which are designed based on merging two or four polarity-inverse lenses corresponding to different wavelengths (765 and 1300 nm). The spin-selected dual-wavelength metalenses with two similar and two different vertical and lateral focal points have also been proposed respectively, which can focus two wavelengths with inverse spin states to arbitrary special positions. The three-dimensional metalens with four focal points have also been proposed, which can focus four beams with inverse spin states and different wavelengths to preset positions. Moreover, a spin-dependent achromatic metalens has also been proposed, which can focus left circularly polarized (LCP) incidence with different wavelengths to the same position. Our work opens up new avenues toward establishing novel spin-selected and wavelength-selected metadevices, and is significant for the development of spin-controlled photonics and particles manipulation. In addition, it provides a new idea for solving the problem of data transmission from optical fiber communication to visible light communication.
基于由两种旋转矩形间隙纳米天线(RGN)组成的等离子体超表面,人们已经提出并研究了几种新型的自旋选择双波长超透镜,这些超透镜是基于合并对应于不同波长(765和1300纳米)的两个或四个极性反转透镜而设计的。还分别提出了具有两个相似的以及两个不同的垂直和横向焦点的自旋选择双波长超透镜,它们可以将具有相反自旋状态的两个波长聚焦到任意特殊位置。还提出了具有四个焦点的三维超透镜,它可以将具有相反自旋状态和不同波长的四束光聚焦到预设位置。此外,还提出了一种自旋相关消色差超透镜,它可以将不同波长的左旋圆偏振(LCP)入射光聚焦到同一位置。我们的工作为建立新型的自旋选择和波长选择超器件开辟了新途径,对自旋控制光子学和粒子操纵的发展具有重要意义。此外,它为解决从光纤通信到可见光通信的数据传输问题提供了新的思路。