Realizing zero-threshold population inversion via plasmonic doping

Mohsin Ijaz, Hao Zhang, Isabella Wagner, Fengjiang Liu, Margarita Samoli, Zeger Hens, Pieter Geiregat, Justin M. Hodgkiss, Richard J. Blaikie, Boyang Ding, Yu Hui Chen*, Kai Chen*, Min Qiu*

*此作品的通讯作者

科研成果: 期刊稿件文章同行评审

摘要

Lowering the population inversion threshold is key to leveraging quantum dots (QDs) for nanoscale lasing and laser miniaturization. However, optical realization of population inversion in QDs has an inherent limitation: the number of excited electrons per QD is bound by the absorbed photons. Here we show that one can break this population limit and realize near-zero threshold inversion via plasmonic doping. Specifically, we integrate QDs into a grating-like plasmonic resonator, which, upon optical excitation, can transiently dope the QDs with numerous highly energetic electrons and make excited electrons in the QDs outnumber absorbed photons. This high population under low excitation blocks QD absorption and reduces the population-inversion threshold over 100 times compared to neutrally populated QDs. Our findings not only reveal new understanding of cavity-emitter interactions but also provide practical avenues for zero-threshold lasing, nanolasing and amplification devices.

源语言英语
页(从-至)4776-4782
页数7
期刊Nanoscale
17
8
DOI
出版状态已出版 - 18 1月 2025

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