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Geometric Phase Effects in Ultracold Chemical Reactions

机译:超克化学反应中的几何相效应

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摘要

The role of the geometric phase effect in chemical reaction dynamics has long been a topic of active experimental and theoretical investigations. The topic has received renewed interest in recent years in cold and ultracold chemistry where it was shown to play a decisive role in state-to-state chemical dynamics. We provide a brief review of these developments focusing on recent studies of O + OH and hydrogen exchange in the H + H 2 and D + HD reactions at cold and ultracold temperatures. Non-adiabatic effects in ultracold chemical dynamics arising from the conical intersection between two electronic potential energy surfaces are also briefly discussed. By taking the hydrogen exchange reaction as an illustrative example it is shown that the inclusion of the geometric phase effect captures the essential features of non-adiabatic dynamics at collision energies below the conical intersection.
机译:几何相位效应在化学反应动态中的作用长期以来一直是积极实验和理论研究的主题。该主题已于近年来在寒冷和超克化学中获得更新的兴趣,在寒冷和超薄化学中,它被证明在状态到国家化学动态中起着决定性作用。我们谨此简要回顾了这些发展,重点是在冷和超蚀地温度下的H + H 2和D + HD反应中的O + OH和氢交换的研究。还简要讨论了由两个电子潜在能量表面之间产生的超薄化学动力学中的非绝热效应。通过作为说明性实施例的氢交换反应,示出了包括几何相位效应的夹杂物在锥形交叉口下方的碰撞能量下捕获非绝热动力学的基本特征。

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