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Ultralow-threshold six-photon-excited upconversion lasing in a plasmonic microcavity

机译:Ultralow-threshold six-photon-excited上转换在电浆微腔激光

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摘要

Nonlinear multiphoton absorption (MPA) upconversion lasers have critical applications in fluorescence imaging probes and biological photonics. Here, we report the realization of ultralow-threshold six-photon-excited upconversion lasing through cavity quantum electrodynamics effects in a plasmonic microcavity. The value of the Purcell factor (Fp) in hybrid whisper-gallery mode (WGM) is enhanced five-fold relative to a bare microwire (MW), which enhances the nonlinear light–matter interactions dramatically. Compared with a MW, the threshold of six-photon upconversion WGM lasing is reduced by one order magnitude due to plasmonic enhancement effects. In addition, the temperature and polarization characteristics of upconversion lasing via a plasmonic-WGM approach show a distinct evolution, different from a bare MW. This work paves the way for extreme nonlinear optics, taking advantage of the processability and high Purcell factor of plasmonic microcavities.
机译:非线性多光子吸收(MPA)上转换激光器有重要应用荧光成像探针和生物光子学。ultralow-threshold six-photon-excited上转换激光腔量子在电浆电动力学的影响微腔。在混合whisper-gallery模式(WGM)是增强相对于裸导电带五倍(MW),这提高了非线性件轻松事交互作用显著。six-photon的门槛上转换WGM激光是减少由于级电浆的增强效果。温度和极化特性上转换激光通过plasmonic-WGM方法显示一个独特的进化,不同于一个光秃秃的MW。光学加工性能的利用和高Purcell电浆相结合。

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