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Dispersion tuning in sub-micron tapers for third-harmonic and photon triplet generation

机译:三谐波和光子三联代代亚微米锥体中的分散调谐

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摘要

Precise control of the dispersion landscape is of crucial importance if optical fibers are to be successfully used for the generation of three-photon states of light-the inverse of third-harmonic generation (THG). Here we report gas-tuning of intermodal phase-matched THG in submicron-diameter tapered optical fiber. By adjusting the pressure of the surrounding argon gas up to 50 bars, intermodally phase-matched third-harmonic light can be generated for pump wavelengths within a 15 nm range around 1.38 mu m. We also measure the infrared fluorescence generated in the fiber when pumped in the visible and estimate that the accidental coincidence rate in this signal is lower than the predicted detection rate of photon triplets. (C) 2018 Optical Society of America
机译:如果要成功地用于生成光线的三光子态 - 第三谐波产生(THG)的倒数,则对分散景观的精确控制是至关重要的重要性。 在这里,我们在亚微米直径锥形光纤中报告多式相位匹配的THG的气体调整。 通过将周围氩气的压力调节至50巴,可以为泵波长在15nm范围内的泵波长内产生相互形式相位匹配的第三谐波光。 在泵送在可见的和估计中,我们还测量光纤中产生的红外荧光,以至于该信号中的意外重合率低于预测的光子三联网的检测率。 (c)2018年光学学会

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