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Interference of Quantized Transition-State Pathways in the H + D_2 → D + HD Chemical Reaction

机译:H + D_2→D + HD化学反应中定量过渡态途径的干扰

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摘要

The collision-energy dependence of the state-resolved differential cross section at a specific backward-scattering angle for the reaction H + D_2 → D + HD is measured with the D-atom Rydberg "tagging" time-of-flight technique. The reaction was modeled theoretically with converged quantum scattering calculations that provided physical interpretation of the observations. Oscillations in the differential cross sections in the backward-scattering direction are clearly observed and are attributed to the transition-state structures that originate from the interferences of different quantized transition-state pathways.
机译:使用D原子Rydberg“标记”飞行时间技术测量了反应H + D_2→D + HD在特定的向后散射角下状态分辨的微分截面的碰撞能量依赖性。从理论上用聚合量子散射计算对反应进行建模,该计算提供了观测结果的物理解释。清楚地观察到了在向后散射方向上的微分横截面中的振荡,这归因于过渡态结构,该过渡态结构源于不同量化过渡态路径的干扰。

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