Retter Jonathan E, Elliott Gregory S
Appl Opt. 2019 Apr 1;58(10):2557-2566. doi: 10.1364/AO.58.002557.
Optical signals of gas temperature, species concentration, and electric field are monitored in simple mixtures at room temperature and in the fuel-rich region of a hydrogen diffusion flame. A two-beam pure-rotational coherent anti-Stokes Raman scattering (CARS) approach was utilized for the temperature and species detection, where the combined pump/Stokes pulse doubled as the electric field induced second harmonic generation (EFISHG) pump for the electric field detection. Time-averaged EFISHG signals in environments with argon, nitrogen, oxygen, hydrogen, and air were found to match the relative hyperpolarizabilities of the molecules tabulated in literature. Measurements in a dynamic -air environment represented the ability to monitor the signal dependence of species on a single-shot basis. Time-averaged EFISHG signals in different thermal environments showed the expected ∝1 EFISHG signal dependence when also correcting for relative / concentrations. Finally, measurements in a flame showed the ability to monitor the EFISHG signal dependence on the gas temperature on a single-shot basis in a plasma discharge environment.
在室温下的简单混合物以及氢扩散火焰的富燃料区域中,监测气体温度、物种浓度和电场的光信号。采用双光束纯转动相干反斯托克斯拉曼散射(CARS)方法进行温度和物种检测,其中组合的泵浦/斯托克斯脉冲兼作电场诱导二次谐波产生(EFISHG)泵浦用于电场检测。发现在含有氩气、氮气、氧气、氢气和空气的环境中,时间平均的EFISHG信号与文献中列出的分子的相对超极化率相匹配。在动态空气环境中的测量表明能够单次监测物种的信号依赖性。当校正相对浓度时,在不同热环境中的时间平均EFISHG信号显示出预期成正比的EFISHG信号依赖性。最后,在火焰中的测量表明能够在等离子体放电环境中单次监测EFISHG信号对气体温度的依赖性。