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Direct measurement of S-branch N(2)-H(2) Raman linewidths using time-resolved pure rotational coherent anti-Stokes Raman spectroscopy.

机译:使用时间分辨纯旋转相干反斯托克斯拉曼光谱直接测量s分支N(2)-H(2)拉曼线宽。

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摘要

S-branch N(2)-H(2) Raman linewidths have been measured in the temperature region 294-1466 K using time-resolved dual-broadband picosecond pure rotational coherent anti-Stokes Raman spectroscopy (RCARS). Data are extracted by mapping the dephasing rates of the CARS signal temporal decay. The J-dependent coherence decays are detected in the time domain by following the individual spectral lines as a function of probe delay. The linewidth data set was employed in spectral fits of N(2) RCARS spectra recorded in binary mixtures of N(2) and H(2) at calibrated temperature conditions up to 661 K using a standard nanosecond RCARS setup. In this region, the set shows a deviation of less than 2% in comparison with thermocouples. The results provide useful knowledge for the applicability of N(2) CARS thermometry on the fuel-side of H(2) diffusion flames.
机译:使用时间分辨双宽带皮秒纯旋转相干反斯托克斯拉曼光谱仪(RCARS)在温度区域294-1466 K中测量了S分支N(2)-H(2)拉曼线宽。通过映射CARS信号时间衰减的相移速率来提取数据。通过遵循各个谱线作为探测延迟的函数,可以在时域中检测出J相关的相干衰减。使用标准纳秒RCARS设置,在高达661 K的校准温度条件下,将线宽数据集用于N(2)和H(2)的二元混合物中记录的N(2)RCARS光谱的光谱拟合。在该区域中,与热电偶相比,该组的偏差小于2%。结果为N(2)CARS测温法在H(2)扩散火焰的燃料侧的适用性提供了有用的知识。

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