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首页> 外文期刊>Applied Optics >Detection of atomic hydrogen in flames using picosecond two-color two-photon-resonant six-wave-mixing spectroscopy
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Detection of atomic hydrogen in flames using picosecond two-color two-photon-resonant six-wave-mixing spectroscopy

机译:皮秒二色双光子共振六波混合光谱法检测火焰中的氢原子

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摘要

We report an investigation of two-color six-wave-mixing spectroscopy techniques using picosecond lasers for the detection of atomic hydrogen in an atmospheric-pressure hydrogen-air flame. An ultraviolet laser at 243 nm was two-photon-resonant with the 2S_(1/2) ←← 1S_(1/2) transition, and a visible probe laser at 656 nm was resonant with H_α transitions (n = 3 ← n = 2). The signal dependence on the polarization of the pump laser was investigated for a two-beam polarization-spectroscopy experimental configuration and for a four-beam grating configuration. A direct comparison of the absolute signal and background levels in the two experimental geometries demonstrated a significant advantage to using the four-beam grating geometry over the simpler two-beam configuration. Picosecond laser pulses provided sufficient time resolution to investigate hydrogen collisions in the atmospheric-pressure flame. Time-resolved two-color laser-induced fluorescence was used to measure an n = 2 population lifetime of 110 ps, and time-resolved two-color six-wave-mixing spectroscopy was used to measure a coherence lifetime of 76 ps. Based on the collisional time scale, we expect that the six-wave-mixing signal dependence on collisions is significantly reduced with picosecond laser pulses when compared to laser pulse durations on the nanosecond time scale.
机译:我们报告了使用皮秒激光器检测大气压氢气-空气火焰中的氢原子的两色六波混合光谱技术的研究。 243 nm处的紫外线激光具有2S_(1/2)←←1S_(1/2)跃迁的两个光子共振,而656 nm处的可见探针激光则具有H_α跃迁(n = 3←n = 2)。对于两光束偏振光谱实验配置和四光束光栅配置,研究了泵浦激光的信号依赖性。直接比较两种实验几何结构中的绝对信号和背景水平,证明了使用四光束光栅几何结构比简单的两光束配置具有明显优势。皮秒激光脉冲提供了足够的时间分辨率,以研究大气压火焰中的氢碰撞。时间分辨的二色激光诱导的荧光用于测量110 ps的n = 2人口寿命,时间分辨的二色六波混合光谱用于测量76 ps的相干寿命。基于碰撞时间尺度,我们期望与皮秒级激光脉冲持续时间相比,皮秒级激光脉冲会显着降低六波混合信号对碰撞的依赖性。

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