Multifunctional analysis and verification of lightning-type electromagnetic metasurfaces

Author:

Xu Jie1,Tang Jian2,Cheng Yu1,Chen Ming1ORCID,Wang Hexuan1,Xiong Jianfeng1,Wang Tianrang1,Wang Shuaizhao1,Zhang Youdan1,Wen Hui1,Qu Shiliang1ORCID,Yuan Libo1ORCID

Affiliation:

1. Guilin University of Electronic Technology

2. Guangxi Normal University

Abstract

Aiming at the problems that most of the existing electromagnetic metasurfaces have single function and narrow application scope, a highly integrated lightning-type metasurface is proposed in this study. It can realize the functions of circular dichroism (CD), absorption of electromagnetic waves, broadband x-to-y cross polarization conversion (CPC) function, linear-to-circular polarization conversion (LTC-PC) function and asymmetric transmission (AT), and its functions are also analyzed and verified. The designed metasurface consists of the bottom grating structure, the lower SiO2, the middle lightning-type graphene, the upper SiO2, the top graphene and photosensitive silicon. Through numerical calculations, the CD of design can reach more than 85% at 4.22 THz. The function of bimodal absorption is achieved at 4.09 and 8.69 THz. At 7.41∼8.21 THz, the polarization conversion ratio (PCR) of the metasurface reaches more than 99%. Simultaneously, the function of LTC-PC can be formed when PCR is 50%. Finally, when the designed metasurface is in the transmissive state, the AT of design is close to 60% at 7.84 THz. This design provides a new design idea and method for biomedical detection, image processing, modulators, smart switches, optical diodes and other fields.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Natural Science Foundation of Guangxi Province

Guangxi Key Laboratory of Automatic Detecting Technology and Instruments

Innovation Project of Guang Xi Graduate Education

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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