Topological Exciton Polaritons in Compact Perovskite Junction Metasurfaces

  • An, Soo-Chan; 
  • Lim, Yeonsoo; 
  • Lee, Ki Young; 
  • Choi, Daegwang; 
  • Kim, Seongheon; 
  • ... Gong, Su-Hyun; 
  • 외 2명
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초록

Exciton polaritons are hybrid light-matter quasi-particles that hold exceptional opportunities for future optoelectronic devices. Taking the synergic advantages of room-temperature perovskite excitons and topological photonic structures, topological exciton-polaritons are experimentally demonstrated in organic-inorganic hybrid perovskite thin films. Topological junction structures based on perovskite gratings are realized using a momentum-space analog of the 1D Dirac system. Desired enhancement phenomena are observed including narrow-beam polariton emission from a tightly localized junction region, polaritonic nonlinearity boost, and enhanced luminescence. These remarkable features are obtained from highly compact devices with footprint widths on the order of a few micrometers and are efficiently tailorable with simple unit-cell geometry control. Therefore, the proposed approach can be a powerful platform for room-temperature topological exciton-polaritons and concomitant device applications. Topological exciton-polaritons are realized at room temperature by combining perovskite excitons with unique topological junction structures based on guided-mode resonances. The perovskite topological junctions manifest remarkable spatial and spectral features, while strong nanophotonic light-matter enhancement and flexible tunability are obtained in highly simplified, compact geometries. Narrow-angled, strongly enhanced polariton emissions are observed with a nonlinearity boost. image

키워드

exciton polaritons; guided-mode resonances; organic-inorganic hybrid perovskite thin films; perovskite gratings; topological junction metasurfaces; GUIDED-MODE RESONANCES; STATES
제목
Topological Exciton Polaritons in Compact Perovskite Junction Metasurfaces
저자
An, Soo-Chan; Lim, Yeonsoo; Lee, Ki Young; Choi, Daegwang; Kim, Seongheon; Gong, Su-Hyun; Yoon, Jae Woong; Jun, Young Chul
DOI
10.1002/adfm.202313840
발행일
2024-05-10
유형
Article; Early Access
저널명
Advanced Functional Materials
권
34
호
32