Topological surface plasmon resonance in deep subwavelength structure

Topological surface plasmon resonance in deep subwavelength structure
Citations

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9
Citations

SCOPUS

10

초록

We propose a plasmonic topological junction structure that combines topological robustness and subwavelength localization properties. The proposed structure is a junction of two topologically distinguished metal-insulator-metal waveguide gratings. Assuming Au–SiO2–Au waveguide gratings, we theoretically demonstrate a plasmonic Jackiw-Rebbi-state resonance which has substantially small effective mode-field area in the order of 0.1 μm2 at 1560 nm wavelength and requires only 10 periods for fully sustaining the ideal resonance Q-factor of the infinitely large array. Therefore, our proposed approach provides an efficient scheme for creating various plasmonic leaky-mode resonance components that can take advantages of spectral robustness and strong localization properties.

키워드

Guided-mode resonancePlasmonicSubwavelength gratingTopological effectBAND DYNAMICSMODEPHASE
제목
Topological surface plasmon resonance in deep subwavelength structure
제목 (타언어)
Topological surface plasmon resonance in deep subwavelength structure
저자
Choi, Yu SungLee, Ki YoungYoon, Jae Woong
DOI
10.1016/j.cap.2022.11.002
발행일
2023-01
유형
Article
저널명
Current Applied Physics
45
페이지
72 ~ 75

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