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激光诱导预解离荧光:动力学、偏振以及低态转动能量转移对定量诊断的影响

Laser-induced predissociative fluorescence: dynamics and polarization and the effect of lower-state rotational energy transfer on quantitative diagnostics.

作者信息

Rothe E W, Gu Y W, Reck G P

出版信息

Appl Opt. 1996 Feb 20;35(6):934-47. doi: 10.1364/AO.35.000934.

DOI:10.1364/AO.35.000934
PMID:21069092
Abstract

Laser-induced predissociative fluorescence is often used for diagnostics because its short-lived upper states are minimally disturbed by collisions. We discuss the effects of lower-state collisions with parameters relevant to our atmospheric H(2)-O(2) flame. A pulse of tunable KrF excimer-laser light induces the A ? X, Q(1)(11), 3 ? 0 transition in OH. We measure the intensity and the polarization of the resulting A ? X, Q(1)(11), 3 ? 2 fluorescence as a function of laser brightness. A simple model that uses no adjustable parameters produces a reasonable fit to the data. It predicts that, even at very modest laser energies, the fluorescence intensity is almost directly proportional to the rate constant for rotational energy transfer (RET) within the lower vibrational state. That rate constant can be a strong function of local conditions. Furthermore, under typical operating conditions the excimer will pump an amount of OH out of the lower state that is many times as large as that originally present. This occurs because RET within the X-state continuously replenishes the lower state during the laser pulse. Even when this occurs, the signal may still vary linearly with laser intensity, and the polarization may be nearly that expected for weak pumping. At the higher laser intensities, a significant fraction of the measured OH arises from two-photon photodissociation of the water from the flame reaction.

摘要

激光诱导预解离荧光常用于诊断,因为其寿命较短的高能态受碰撞干扰极小。我们讨论了与大气中H(2)-O(2)火焰相关参数的低能态碰撞的影响。可调谐KrF准分子激光脉冲诱导OH中的A ? X、Q(1)(11)、3 ? 0跃迁。我们测量了所得A ? X、Q(1)(11)、3 ? 2荧光的强度和偏振度随激光亮度的变化。一个无需可调参数的简单模型对数据给出了合理拟合。它预测,即使在非常适度的激光能量下,荧光强度几乎与低振动态内转动能量转移(RET)的速率常数成正比。该速率常数可能是局部条件的强函数。此外,在典型操作条件下,准分子会将大量OH从低能态泵出,其数量是最初存在量的许多倍。这是因为在激光脉冲期间,X态内的RET不断补充低能态。即便如此,信号仍可能与激光强度呈线性变化,且偏振可能接近弱泵浦预期的偏振。在较高激光强度下,测得的OH中有很大一部分来自火焰反应中水分子的双光子光解离。

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