Topological guided-mode resonances at non-Hermitian nanophotonic interfaces

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초록

The topological properties of photonic microstructures are of great interest because of their experimental feasibility for fundamental study and potential applications. Here, we show that robust guided-mode-resonance states exist in photonic domain-wall structures whenever the complex photonic band structures involve certain topological correlations in general. Using the non-Hermitian photonic analogy of the one-dimensional Dirac equation, we derive essential conditions for photonic Jackiw-Rebbi-state resonances taking advantage of unique spatial confinement and spot-like spectral features which are remarkably robust against random parametric errors. Therefore, the proposed resonance configuration potentially provides a powerful method to create compact and stable photonic resonators for various applications in practice.

키워드

guided-mode resonancenon-Hermitian effectsubwavelength gratingtopological effectDomain wallsGuided electromagnetic wave propagationLinear equationsRandom errorsTopologyFundamental studiesGuided-mode resonanceParametric errorsPhotonic band structuresPhotonic domainsSpatial confinementSpectral featureTopological propertiesResonance
제목
Topological guided-mode resonances at non-Hermitian nanophotonic interfaces
저자
Lee, Ki YoungYoo, Kwang WookChoi, YoungsunKim, GunpyoCheon, SangmoYoon, Jae WoongSong, Seok Ho
DOI
10.1515/nanoph-2021-0024
발행일
2021-05
유형
Article
저널명
NANOPHOTONICS
10
7
페이지
1853 ~ 1860

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