Polarization-independent edge detection based on the spin–orbit interaction of light

Author:

Tang Peng1,Kim Yeseul1,Badloe Trevon1ORCID,Xiao Linlin,Yang Younghwan1,Kim Minkyung2,Rho Junsuk134ORCID,Li Guoqiang

Affiliation:

1. Pohang University of Science and Technology

2. Gwangju Institute of Science and Technology

3. POSCO-POSTECH-RIST Convergence Research Center for Flat Optics and Metaphotonics

4. National Institute of Nanomaterials Technology

Abstract

In previous edge detection schemes based on the spin-orbit interaction of light, the direction and intensity of the edge-enhanced images are influenced by the incident polarization state. In this study, we develop an edge detection strategy that is insensitive to changes in both the incident polarization and the incident angle. The output intensity and transfer function remain entirely impervious to changes in incident polarization, being explicitly formulated as functions of the incident angle, specifically in terms of cot2θ i and cotθ i , respectively. This behavior is attributed to the opposing nature of the polarization components E~ r HH and E~ r VV in the x-direction after undergoing mapping through the Glan polarizer, while the sum of polarization components E~ r HV and E~ r VH in the y-direction can be simplified to terms independent of incident polarization. Furthermore, we propose a metasurface design to achieve the required optical properties in order to realize the derived edge detection scheme.

Funder

Institute of Information and Communications Technology Planning and Evaluation

Chung Mong-Koo Foundation

China Scholarship Council

Ministry of Science and ICT, South Korea

National Natural Science Foundation of China

Publisher

Optica Publishing Group

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