首页> 外文期刊>The Journal of Chemical Physics >Angular and energy distributions of fragment ions in dissociative double photoionization of acetylene molecules in the 31.9-50.0 eV photon energy range
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Angular and energy distributions of fragment ions in dissociative double photoionization of acetylene molecules in the 31.9-50.0 eV photon energy range

机译:乙炔分子在31.9-50.0 eV光子能量范围内的解离性双光电离中的碎片离子的角度和能量分布

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摘要

The two-body dissociation reactions of the dication C2H2+2, initiated via double ionization of acetylene molecules by photons in the energy range 31.9-50.0 eV, have been studied by coupling photoelectron-photoion-photoion coincidence and ion imaging techniques. The angular distributions and kinetic energy of product ions, measured in the 31.9-50.0 eV energy range, exhibit significant differences for the three leading dissociation reactions with respect to a previous investigation carried out at a fixed energy of 39.0 eV, providing thus new information on the dynamical evolution of the system. The analysis of the results indicates that such dissociation reactions occur with a different mechanism. In particular, the symmetric dissociation in two CH+ ions is characterized by different dynamics, and the anisotropy of the angular distribution of ionic products increases with photon energy in a more pronounced way than the other two reactions. Moreover, the kinetic energy distribution of the symmetric dissociation reaction exhibits several components that change with photon energy. The new experimental findings cast light on the microscopic evolution of the system and can provide a laboratory reference for new theoretical calculations on specific features of the multidimensional potential energy surface, namely, the structure, energy and symmetry of dication states, the electronic state of dissociation products, energy barriers and their dependence on the geometry of the intermediate state. Published by AIP Publishing.
机译:通过耦合光电子-光子-光子重合和离子成像技术,研究了C2H2 + 2的两体解离反应,该反应是通过能量范围为31.9-50.0 eV的光子通过乙炔分子的双电离引发的。在31.9-50.0 eV的能量范围内测得的产物离子的角分布和动能,相对于先前在39.0 eV的固定能量下进行的研究,三个主要的解离反应具有显着差异,从而提供了有关系统的动态演化。结果分析表明,这种离解反应以不同的机理发生。特别是,两个CH +离子的对称解离具有不同的动力学特征,并且离子产物的角度分布的各向异性随着光子能量的增加而比其他两个反应更明显。而且,对称解离反应的动能分布表现出随光子能量而变化的几种成分。新的实验结果为该系统的微观发展提供了线索,并可以为多维势能面的特定特征(即离子状态的结构,能量和对称性,解离的电子状态)的新理论计算提供实验室参考。产品,能垒及其对中间态几何形状的依赖性。由AIP Publishing发布。

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