Cascaded metasurfaces for high-purity vortex generation

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作者
Feng Mei
Geyang Qu
Xinbo Sha
Jing Han
Moxin Yu
Hao Li
Qinmiao Chen
Ziheng Ji
Jincheng Ni
Cheng-Wei Qiu
Qinghai Song
Yuri Kivshar
Shumin Xiao
机构
[1] Harbin Institute of Technology Shenzhen,Ministry of Industry and Information Technology Key Lab of Micro
[2] Pengcheng Laboratory,Nano Optoelectronic Information System
[3] National University of Singapore,Department of Electrical and Computer Engineering
[4] Australian National University,Nonlinear Physics Center, Research School of Physics
[5] Harbin Engineering University,Qingdao Innovation and Development Center
[6] Shanxi University,Collaborative Innovation Center of Extreme Optics
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摘要
We introduce a new paradigm for generating high-purity vortex beams with metasurfaces. By applying optical neural networks to a system of cascaded phase-only metasurfaces, we demonstrate the efficient generation of high-quality Laguerre-Gaussian (LG) vortex modes. Our approach is based on two metasurfaces where one metasurface redistributes the intensity profile of light in accord with Rayleigh-Sommerfeld diffraction rules, and then the second metasurface matches the required phases for the vortex beams. Consequently, we generate high-purity LGp,l optical modes with record-high Laguerre polynomial orders p = 10 and l = 200, and with the purity in p, l and relative conversion efficiency as 96.71%, 85.47%, and 70.48%, respectively. Our engineered cascaded metasurfaces suppress greatly the backward reflection with a ratio exceeding −17 dB. Such higher-order optical vortices with multiple orthogonal states can revolutionize next-generation optical information processing.
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