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Determination of population, orientation and alignment of symmetric top molecule using laser-induced fluorescence

机译:激光诱导荧光法测定对称性顶部分子的数量,取向和排列

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摘要

General expressions used for transforming the laser-induced fluorescence (LIF) intensity into the population, orientation and alignment parameters of a symmetric top molecule are derived by employing the density matrix approach. The molecular population, orientation and alignment are described by molecular state multipoles. Both excitation and detection are circularly polarized lights. The problem on how to extract the initial molecular state multipoles from the resolved LIF intensity is discussed in detail. In general eases, the LIF intensity is a complex function of the initial molecular state multipoles, the dynamic factors and the excitation-detection geometrical factors. It contains a population, 10 orientation and 14 alignment multipoles. The theoretical results show that it is possible for experimentalists to determine all these state multipoles by controlling the propagation directions of excitation and detection light beams.
机译:通过采用密度矩阵方法,可以得出用于将激光诱导的荧光(LIF)强度转换为对称的顶部分子的种群,方向和排列参数的一般表达式。分子态多极描述了分子种群,取向和排列。激发和检测都是圆偏振光。详细讨论了如何从解析的LIF强度中提取初始分子态多极子的问题。通常,LIF强度是初始分子态多极,动力学因子和激发检测几何因子的复杂函数。它包含一个总体,10个方向和14个对齐多极。理论结果表明,实验人员可以通过控制激发和检测光束的传播方向来确定所有这些状态多极。

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