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Dirac bilayer metasurfaces as an inverse Gires-Tournois etalon
- Lee, Ki Young;
- Yoo, Kwang Wook;
- Monticone, Francesco;
- Yoon, Jae Woong
WEB OF SCIENCE
5SCOPUS
4초록
Efficient transmissive pure-phase resonances are highly desirable for optical modulation and wave front engineering. Here, we propose a principle to realize a pure-phase resonance in an extremely broad transmission band, as opposed to previous approaches restricted to operating in reflection mode or over a narrow spectral band. We show that a glide-symmetric bilayer metasurface mathematically mimicking a two-dimensional Dirac semimetal induces unidirectional guided-mode excitation and perfect leakage-radiation blazing at the transmission channel. These effects create a peculiar resonant-scattering configuration, similar to the classical reflective Gires-Tournois etalon, but in transmission, providing full 2π phase modulation with constant transmittance near 100%. Most importantly, this effect persists over an extremely wide band, associated with topological effects. Hence, our proposed approach produces a spectrally and parametrically robust pure-phase resonance effect in transmission, which is highly beneficial for practical applications.
키워드
- 제목
- Dirac bilayer metasurfaces as an inverse Gires-Tournois etalon
- 저자
- Lee, Ki Young; Yoo, Kwang Wook; Monticone, Francesco; Yoon, Jae Woong
- 발행일
- 2025-10
- 유형
- Article
- 저널명
- PHYSICAL REVIEW RESEARCH
- 권
- 7
- 호
- 4
- 페이지
- 1 ~ 14