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首页> 外文期刊>Journal of spectroscopy >Diode-Laser Induced Fluorescence Spectroscopy of an Optically Thick Plasma in Combination with Laser Absorption Spectroscopy
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Diode-Laser Induced Fluorescence Spectroscopy of an Optically Thick Plasma in Combination with Laser Absorption Spectroscopy

机译:光学厚等离子体的激光二极管诱导荧光光谱与激光吸收光谱的结合

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Distortion of laser-induced fluorescence profiles attributable to optical absorption and saturation broadening was corrected in combination with laser absorption spectroscopy in argon plasma flow. At high probe-laser intensity, saturated absorption profiles were measured to correct probe-laser absorption. At low laser intensity, nonsaturated absorption profiles were measured to correct fluorescence reabsorption. Saturation broadening at the measurement point was corrected using a ratio of saturated to non-saturated broadening. Observed LIF broadening and corresponding translational temperature without correction were, respectively,2.20±0.05 GHz and2510±100 K and corrected broadening and temperature were, respectively,1.96±0.07 GHz and1990±150 K. Although this correction is applicable only at the center of symmetry, the deduced temperature agreed well with that obtained by LAS with Abel inversion.
机译:与氩等离子体流中的激光吸收光谱相结合,校正了归因于光吸收和饱和加宽的激光诱导的荧光分布的畸变。在高探针激光强度下,测量饱和吸收曲线以校正探针激光吸收。在低激光强度下,测量了不饱和吸收曲线以校正荧光的重吸收。使用饱和与非饱和增宽之比校正测量点处的饱和增宽。观察到的LIF展宽和相应的平移温度未经校正,分别为2.20±0.05 GHz和2510±100 K,经校正的展宽和温度分别为1.96±0.07 GHz和1990±150 K,尽管该校正仅适用于对称中心,得出的温度与LAS通过Abel反演获得的温度非常吻合。

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