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Femtosecond laser-pumped plasmonically enhanced near-infrared random laser based on engineered scatterers

机译:基于工程散射体的飞秒激光泵浦量增强近红外随机激光

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摘要

In this Letter, we report on the design, fabrication, and implementation of a novel plasmon-mode-driven low-threshold near-infrared (NIR) random laser (RL) in the 850-900 nm range based on plasmonic ZnS@Au core-shell scatterers. Plasmon modes in the NIR region are used for nanoscale scatterer engineering of ZnS@Au core-shell particles to enhance scattering, as against pristine ZnS. This plasmonic scattering enhancement coupled with femtosecond (fs) laser pumping is shown to cause a three-fold lasing threshold reduction from 325 mu J/cm(2) to 100 mu J/cm(2) and a mode Q-factor enhancement from 200 to 540 for ZnS@Au-based RL, as compared to pristine ZnS-based RL. Local field enhancement due to plasmonic ZnS@Au scatterers, as evidenced in the finite-difference time-domain simulation, further adds to this enhancement. This work demonstrates a novel scheme of plasmonic mode coupling in the NIR region and fs excitation in a random laser photonic system, overcoming the inherent deficiencies of weak absorption of gain media and poor scattering cross sections of dielectric scatterers for random lasing in the NIR spectrum. (C) 2017 Optical Society of America
机译:在这封信中,我们在基于Plasmonic ZnS @ Au Core中报告了850-900nm范围内的新型等离子体模式驱动的低阈值近红外(NIR)随机激光(RL)的设计,制造和实施-shell散射者。 NIR区域中的等离子体模式用于ZNS @ Au核心壳颗粒的纳米级散射器工程,以增强散射,与原始ZnS相比。该等离子体散射增强耦合与飞秒(FS)激光泵浦的增强件被示出为使从325μmj/ cm(2)到100μmj/ cm(2)的三倍的激光阈值减小,以及从200的模式q因子增强与基于原始ZnS的RL相比,基于ZnS @ Au的RL为540。由于质位ZNS @ Au散射仪引起的本地现场增强,如有限差分时域模拟所证明,进一步增加了这种增强。这项工作展示了在随机激光光子系统中的NIR区域和FS激发中的等离子体模式耦合的新颖方案,克服了在NIR光谱中随机激光的介电散射体的弱吸收弱吸收的固有缺陷。 (c)2017年光学学会

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