Strong interlayer coupling and chiral flat-band cascades in twisted bilayer gratings

  • Choi, Daegwang; 
  • Lee, Soon-Jae; 
  • Cho, Seung-Woon; 
  • Bark, Chan Bin; 
  • Pak, Seik; 
  • ... Gong, Su-Hyun; 
  • 외 2명
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초록

From atomic crystals to macroscopic material structures, twisted bilayer systems have emerged as a promising route to control wave phenomena. In few-layer van der Waals materials, however, the intrinsically weak interlayer coupling typically demands precise control of small twist angles to reach magic-angle conditions. Here, we show that twisted one-dimensional photonic crystal bilayers can overcome this limitation by accessing a regime of strong interlayer coupling-comparable to intralayer coupling. This strong coupling enables ultrawide flat-band formation even at large twist angles. We experimentally realize this regime by stacking tungsten disulfide gratings using a two-step lithography method, resulting in ultrawide chiral flat-band cascades in magic-angle twisted bilayer gratings. Our work not only provides a platform for designing photonic applications with a tunable photonic band but also explores a previously unidentified regime of physics that is unattainable in conventional solid-state-based moir & eacute; systems.

키워드

LIGHT
제목
Strong interlayer coupling and chiral flat-band cascades in twisted bilayer gratings
저자
Choi, Daegwang; Lee, Soon-Jae; Cho, Seung-Woon; Bark, Chan Bin; Pak, Seik; Shin, Dong-Jin; Park, Moon Jip; Gong, Su-Hyun
DOI
10.1126/sciadv.aed8846
발행일
2026-08-28
유형
Article
저널명
Science Advances
권
12
호
35