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Inverse Design of Electromagnetic Phase Singularities
- Bae, Munseong;
- Chung, Haejun;
- Boriskina, Svetlana V
SCOPUS
0초록
The optical vortex has a rapidly changing spatial phase with orbital angular momentum centered by zero electromagnetic field intensity. It opens new strategies for optical communications, sensing, and imaging systems. Nevertheless, generating high-quality optical vortices at the appropriate wavelengths and polarizations is still challenging. In order to produce high-quality optical vortices, we optimize the 2D grating structure with nearly perfect absorption via inverse design in this work. We apply an inverse design, a broad-area computational optimization method, to generate multiple high-quality optical vortices within a 300 nmthick silicon. The grating-structure-based optimization shows nearly perfect absorption (97.02%). Our design shows the maximum purity of the optical vortex as 97.82% for mode 1 and 89.66% for mode -1, which can directly affect the quality of orbital angular momentum communication. Our design mechanism may open a new strategy for generating highquality optical vortices for optical communication, sensing, and many other applications.
키워드
- 제목
- Inverse Design of Electromagnetic Phase Singularities
- 저자
- Bae, Munseong; Chung, Haejun; Boriskina, Svetlana V
- 발행일
- 2023-11
- 유형
- Conference paper
- 저널명
- Proceedings of 2023 8th IEEE International Conference on Network Intelligence and Digital Content, IC-NIDC 2023
- 페이지
- 320 ~ 324