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100-kHz-rate gas-phase thermometry using 100-ps pulses from a burst-mode laser

机译:使用突发模式激光的100 ps脉冲进行100 kHz速率的气相测温

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摘要

Temperature measurements based on gas-phase coherent anti-Stokes Raman scattering (CARS) spectroscopy are demonstrated in reacting flows at a rate of 100 kHz employing a burst-mode laser with a pulse duration of similar to 100 ps. The recently developed picosecond-duration, high-energy burst-mode laser is used to pump an optical parametric generator/optical parametric amplifier that produces broadband light centered at similar to 680 nm to provide the Stokes beams for excitation of the rovibrational Raman transitions of H-2. The 532-nm output of the picosecond burst-mode laser is then utilized as a pump beam for the CARS process that generates 100 single-shot spectra at a rate of 100 kHz during the 1-ms duration burst. Coherent spectroscopy-based temperature measurements at 100 kHz will significantly aid the understanding of transient and unsteady flow phenomena related to turbulent combustion, transonic and hypersonic flows, high-enthalpy flows, and the dynamics of energetic materials. (C) 2015 Optical Society of America
机译:基于气相相干反斯托克斯拉曼散射(CARS)光谱的温度测量在使用脉冲持续时间类似于100 ps的突发模式激光器以100 kHz的速率进行反应流中得到了证明。最近开发的皮秒持续时间,高能量突发模式激光器用于泵浦光参量发生器/光参量放大器,该放大器产生集中在大约680 nm处的宽带光,以提供斯托克斯束来激发H的振动拉曼跃迁。 -2。皮秒突发模式激光器的532 nm输出随后被用作CARS过程的泵浦光束,该过程在1 ms持续时间突发期间以100 kHz的速率生成100个单发光谱。基于相干光谱的100 kHz温度测量将极大地帮助理解与湍流燃烧,跨音速和高音速流,高焓流以及高能材料动力学有关的瞬态和非稳态流动现象。 (C)2015年美国眼镜学会

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