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首页> 外文期刊>Applied optics >Picosecond laser-induced fluorescence measurement of rotational energy transfer of OH A(2)Sigma(+) (v' = 2) in atmospheric pressure flames
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Picosecond laser-induced fluorescence measurement of rotational energy transfer of OH A(2)Sigma(+) (v' = 2) in atmospheric pressure flames

机译:皮秒激光诱导的大气压火焰中OH A(2)Sigma(+)(v'= 2)的旋转能量转移的荧光测量

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摘要

Rate constants for total and state-specific rotational energy transfer (RET) of OHA (2) Sigma(+) (v' = 2) have been measured directly in atmospheric methane-air and methane-oxygen flames for the first time to our knowledge. We used a picosecond Raman-excimer laser (tau(l) = 300 ps, lambda = 268 nm) to excite the P-11(12.5) and Q(11)(16.5) A-X transitions in the (2, 0) band of OH molecules. We analyzed the resultant fluorescence with a high-resolution spectrometer in combination with a fast-gated, intensified CCD camera (tau(g) = 400 ps). We recorded the temporal evolution of the emission spectrum by shifting the detection time with respect to the laser pulse. Measured emission spectra were inverted to yield the time-dependent population of rotational levels in the excited state. We calculated rate constants for RET from the results of the fit. The total RET in v' = 2 is similar to v' = 0, 1. The state-specific rates are represented well by a simple energy-gap law. (C) 1997 Optical Society of America.
机译:据我们所知,首次在大气甲烷-空气和甲烷-氧气火焰中直接测量了OHA(2)Sigma(+)(v'= 2)的总和特定于状态的旋转能量转移(RET)的速率常数。 。我们使用皮秒拉曼准分子激光器(tau(l)= 300 ps,lambda = 268 nm)激发在(2,0)波段的P-11(12.5)和Q(11)(16.5)AX跃迁。 OH分子。我们用高分辨率光谱仪结合快速门控的增强型CCD相机(tau(g)= 400 ps)分析了产生的荧光。我们通过改变相对于激光脉冲的检测时间来记录发射光谱的时间演化。倒转测得的发射光谱以产生在激发态下随时间变化的旋转能级。我们根据拟合结果计算了RET的速率常数。 v'= 2时的总RET与v'= 0,1相似。状态系数由一个简单的能隙定律很好地表示。 (C)1997年美国眼镜学会。

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