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Photodissociation dynamics of OCS at 248nm: The S(D21) atomic angular momentum polarization

机译:248nm处的OCS的Photodissociation Dynamics:S(D21)原子角动量极化

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摘要

The dissociation of OCS has been investigated subsequent to excitation at 248 nm. Speed distributions, speed dependent translational anisotropy parameters, angular momentum alignment, and orientation are reported for the channel leading to S((1)D(2)). In agreement with previous experiments, two product speed regimes have been identified, correlating with differing degrees of rotational excitation in the CO coproducts. The velocity dependence of the translational anisotropy is also shown to be in agreement with previous work. However, contrary to previous interpretations, the speed dependence is shown to primarily reflect the effects of nonaxial recoil and to be consistent with predominant excitation to the 2 (1)A(') electronic state. It is proposed that the associated electronic transition moment is polarized in the molecular plane, at an angle greater than approximately 60 degrees to the initial linear OCS axis. The atomic angular momentum polarization data are interpreted in terms of a simple long-range interaction model to help identify likely surfaces populated during dissociation. Although the model neglects coherence between surfaces, the polarization data are shown to be consistent with the proposed dissociation mechanisms for the two product speed regimes. Large values for the low and high rank in-plane orientation parameters are reported. These are believed to be the first example of a polyatomic system where these effects are found to be of the same order of magnitude as the angular momentum alignment.
机译:在248nm激发后,已研究OC的解离。速度分布,速度依赖性转化各向异性参数,角动量对准和定向,用于通道通向S((1)D(2))。在与先前的实验一致中,已经确定了两种产品速度制度,与CO副族的不同旋转激发程度相关。翻译各向异性的速度依赖性也与以前的工作达成一致。然而,与先前的解释相反,速度依赖性被示出主要反映非轴反冲的影响,并且与2(1)A(')电子状态的主要激发一致。提出,相关的电子转换力矩在分子面上偏振,其角度大于约60度到初始线性OCS轴。原子角动量偏振数据在简单的远程交互模型中解释,以帮助识别在解离期间填充的可能的表面。虽然模型忽略了表面之间的相干性,但是偏振数据被示出与两个产品速度制度的所提出的解离机构一致。报告了低级别和高级别面内取向参数的大值。这些被认为是多原子系统的第一例,其中这些效果被发现与角动量对准相同的数量级。

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