Longitudinal Manipulation of Scalar to Vector Vortex Beams Evolution Empowered by All‐Silicon Metasurfaces

Author:

Li Hui1ORCID,Duan Shouxin2,Zheng Chenglong1,Li Jie13,Xu Hang1,Song Chunyu1,Yang Fan1,Liu Yanyan4,Shi Wei1,Zhang Yating1,Shen Yun2,Yao Jianquan1

Affiliation:

1. Key Laboratory of Opto‐Electronics Information Technology (Tianjin University) Ministry of Education School of Precision Instruments and Opto‐Electronics Engineering Tianjin University No. 92 WeiJin Road Tianjin 300072 China

2. Department of Physics School of Physics and Materials Science Nanchang University Nanchang 330031 China

3. Information Materials and Device Applications Key Laboratory of Sichuan Province Chengdu University of Information Technology Chengdu 610225 China

4. Science and Technology on Electro‐Optical Information Security Control Laboratory Tianjin 300308 China

Abstract

AbstractManipulating the trend of polarization profiles in the propagation direction, especially the evolution from homogeneous to inhomogeneous distribution, can provide subtle implements for light‐matter interactions. The implementation of conventional stacked structures in the terahertz (THz) band to maneuver polarization states within a finite distance will result in large insertion losses due to inherent material absorption or Fabry–Perot resonance. Metasurfaces have proved to possess many extraordinary properties and propelled the integration of THz functional devices. Herein, the evolution from scalar vortex to vector vortex beams in the longitudinal direction is experimentally demonstrated using all‐silicon metasurfaces generated by spin‐polarization multiplexing encoding techniques. The coaxial universalized phase design scheme with extended focal length provides a paradigm for polarization manipulation that is not limited to the THz band. As a conceptual investigation of the working mechanism, a series of all‐silicon samples are fabricated to experimentally evaluate the conversion capability from scalar to vortex beams, that is, homogeneous to inhomogeneous polarization profiles. The mode weight recorded in the effective region is utilized to further analyze the setting laws of topological charges in orthogonal channels, providing great opportunities for fundamental applications in emerging fields, such as singular optics and quantum science.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Publisher

Wiley

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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