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Ultrafast, nonblinking single-photon sources from perovskite quantum dots in plasmonic nanocavities
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Ultrafast, nonblinking single-photon sources from perovskite quantum dots in plasmonic nanocavities

Tzu-Hao Liao, Yung-Tang Chuang, Pei-En Jan, Hao-Cheng Lin, Tzu-Yi Yang, Yu-Lun ChuehHao-Wu Lin
Science advances, 卷.12(18), eaec4380
01/05/2026
PMCID: PMC13134613
PMID: 42066096
Web of Science ID: WOS:001788827800001

摘要

Multidisciplinary Sciences Science & Technology Science & Technology - Other Topics
Achieving strong light-matter interaction to manipulate emission requires integrating colloidal perovskite quantum dots (PQDs) with plasmonic nanocavities, yet this integration is challenged by their vulnerability to polar solvents. We successfully synthesized highly emissive, solvent-resistant CsPbI3 PQDs and integrated them into nanoparticle-on-mirror structures. This integration enabled a 435-fold reduction in emission lifetime and a 250-fold increase in total emission intensity. Key results include a very short radiative lifetime below 12 picoseconds and a record-high single-photon emission rate exceeding 2.3 x 10(9) counts per second at room temperature. Notably, we also observed nonblinking single-photon emission with high purity arising from nanocavity-enhanced radiative electron-hole recombination. Finite-difference time-domain simulations confirmed ultrasmall mode volumes of similar to 3 x 10(-5) (lambda/n)(3), effectively enhancing spontaneous emission via the Purcell effect. These ultrabright and nonblinking properties highlight the strong potential of this platform for future quantum technology applications.

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https://doi.org/10.1126/sciadv.aec4380檢視
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