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Tracing ultrafast hydrogen migration in allene in intense laser fields by triple-ion coincidence momentum imaging

机译:通过三重离子重合动量成像在强激光场中追踪Allene中的超快氢迁移

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摘要

Ultrafast hydrogen migration in allene (CH_2=C=CH_2) in intense laser fields was investigated by triple-ion coincidence momentum imaging. The migrating proton covering the entire range of an allene molecule was visualized by the momentum correlation maps and by the geometrical structure of triply charged allene reconstructed from the observed momentum vectors of fragment ions. The extent of hydrogen migration was found to play a decisive role in breaking selectively one of the two initially equivalent C–C chemical bonds that become inequivalent in the course of the hydrogen migration.
机译:通过三重离子重合动量成像研究了强激光场中丙二烯(CH_2 = C = CH_2)中超快氢的迁移。通过动量相关图和从碎片离子的动量矢量重建的三重带电荷的异戊二烯的几何结构,可以观察到覆盖在异戊二烯分子整个范围内的迁移质子。发现氢迁移的程度在选择性破坏两个最初等效的CC化学键之一中起着决定性的作用,这些化学键在氢迁移过程中变得不等价。

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