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Vibrationally Mediated Photodissociation of C2H_4~+

机译:振动介导的C2H_4〜+光解离

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摘要

We report the vibrationally mediated photodissociation dynamics of C2H4~+ excited through the B~2A_g state.Vibrational state-selected ions were prepared by two-photon resonant,three-photon ionization of ethylene via(pi,3s)and(pi,3p)Rydberg intermediate states in the wavelength range 298-349 nm.Absorption of a fourth photon led to dissociation of the cation,and images of the product ions C2H3~+ and C2H2~+ were simultaneously recorded using reflectron multimass velocity map imaging.Analysis of the multimass images yielded,with high precision,both the total translational energy distributions for the two dissociation channels and the branching between them as a function of excitation energy.The dissociation of ions that were initially prepared with torsional excitation exceeding the barrier to planarity in the cation ground state consistently gave enhanced branching to the H elimination channel.The results are discussed in terms of the influence of the initial state preparation on the competition between the internal conversion to the ground state and to the first excited state.
机译:我们报道了通过B〜2A_g态激发的C2H4〜+的振动介导的光解离动力学。通过(pi,3s)和(pi,3p)通过乙烯的双光子共振,三光子电离制备了振动态选择离子。 Rydberg的中间态在298-349 nm的波长范围内。第四光子的吸收导致阳离子解离,同时使用反射电子多质量速度图成像同时记录了产物离子C2H3〜+和C2H2〜+的图像。多质量图像可以高精度地产生两个解离通道的总平移能分布以及它们之间的分支随激发能的变化。最初通过扭转激发制备的离子的离解超过了阳离子在平面中的障碍基态始终如一地增强了H消除通道的分支。根据初始状态准备对化合物的影响讨论了结果内部转换为基态和第一激发态之间的距离。

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