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Quantum phase space theory for the calculation of v-j vector correlations

机译:量子相空间理论用于计算v-j矢量相关

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Abstract: The quantum state-counting phase space theory commonly used to describe 'barrierless' dissociation is recast in a helicity basis to calculate photofragment v$DOT@j correlations. Counting pairs of fragment states with specific angular momentum projection numbers on the relative velocity provides a simple connection between angular momentum conservation and the v$DOT@j correlation, which is not so evident in the conventional basis for phase space state counts. The upper bound on the orbital angular momentum, l, imposed by the centrifugal barrier cannot be included simply in the helicity basis, where l is not a good quantum number. Two approaches for a quantum calculation of the v$DOT@j correlation are described to address this point. An application to the photodissociation of NCCN is consistent with recent classical phase space calculations of Klippenstein and Cline. The observed vector correlation exceeds the phase space theory prediction. We take this as evidence of incomplete mixing of the K states of the linear parent molecule at the transition state, corresponding to an evolution of the body-fixed projection number K into the total helicity of the fragment pair state. The average over a thermal distribution of parent angular momentum in the special case of a linear molecule does not significantly reduce the v$DOT@j correlation below that computed for total J $EQ 0. !10
机译:摘要:重述了通常用于描述“无障碍”解离的量子状态计数相空间理论,以计算光碎片v $ DOT @ j相关性。对具有相对角动量投影数的相对速度的碎片状态对进行计数,就可以在角动量守恒和v $ DOT @ j相关性之间建立简单的联系,这在相空间状态计数的常规基础上不是很明显。离心势垒所施加的轨道角动量l的上限不能简单地包含在螺旋度基础中,其中l不是一个好的量子数。描述了解决v $ DOT @ j相关性的两种量子方法。 NCCN的光解离的应用与Klippenstein和Cline的最新经典相空间计算是一致的。观测到的矢量相关性超出了相空间理论的预测。我们以此为证据,认为线性母体分子的K状态在过渡状态下不完全混合,这对应于固定的投影数K演变为片段对状态的总螺旋度。在线性分子的特殊情况下,母体角动量的热分布上的平均值不会显着降低v $ DOT @ j相关性,使其低于为总J $ EQ 0计算的相关性。!10

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