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Two-photon state selection and angular momentum polarization probed by velocity map imaging: Application to H atom photofragment angular distributions from the photodissociation of two-photon state selected HCl and HBr

机译:通过速度图成像探测双光子态选择和角动量极化:从双光子态选择的HCl和HBr的光解离应用于H原子光碎片角分布

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摘要

A formalism for calculating the angular momentum polarization of an atom or a molecule following two-photon excitation of a -selected state is presented. This formalism is used to interpret the H atom photofragment angular distributions from single-photon dissociation of two-photon rovibronically state selected HCl and HBr prepared via a -branch transition. By comparison of the angular distributions measured using the velocity map imaging technique with the theoretical model it is shown that single-photon dissociation of two-photon prepared states can be used for pathway identification, allowing for the identification of the virtual state symmetry in the two-photon absorption and/or the symmetry of the dissociative state. It is also shown that under conditions of excitation with circularly polarized light, or for excitation via non--branch transitions with linearly polarized light the angular momentum polarization is independent of the dynamics of the two-photon transition and analytically computable.©2004 American Institute of Physics.
机译:提出了用于在选择状态的双光子激发之后计算原子或分子的角动量极化的形式学。该形式学用于解释由通过分支转移制备的两个光子通过氢的Bribronic态选择的HCl和HBr的单光子解离的H原子光碎裂角分布。通过将使用速度图成像技术测得的角度分布与理论模型进行比较,表明可以将两个光子准备态的单光子解离用于路径识别,从而可以识别两个状态下的虚拟状态对称性。 -光子吸收和/或解离态的对称性。还显示出,在圆偏振光激发的条件下,或者通过线性偏振光的非分支跃迁进行激发的情况下,角动量偏振与双光子跃迁的动力学无关,并且可以分析计算得出。©2004 American Institute物理学。

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