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Reaction dynamics of F+HD- HF+D at low energies: Resonant tunneling mechanism

机译:低能量下F + HD-> HF + D的反应动力学:共振隧穿机制

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The complete state-resolved differential cross section #sigma#(v', j', #theta#; E_c), investigated in a crossed-beam scattering study, is presented for the title reaction at six initial collision energies (E_c) which are below or near the barrier energy. At low energies, all reactive flux is gated through a trapped resonance state via a tunneling process. Hence, it serves as a benchmark system for better understanding the reactive resonance phenomenon. In addition to highlighting various resonance fingerprints of experimental observable, the concept of resonant tunneling reaction mechanism is elucidated. Particular emphasis is placed on its distinction from the more conventional transition-state reaction mechanism.
机译:在交叉光束散射研究中研究了完整的状态分辨微分截面#sigma#(v',j',#theta#; E_c),给出了在六个初始碰撞能(E_c)下的标题反应的标题反应低于或接近势垒能量。在低能量下,所有无功通量都通过隧穿过程被控制在捕获的共振状态。因此,它用作更好地了解电抗共振现象的基准系统。除了强调实验可观察到的各种共振指纹外,还阐明了共振隧穿反应机理的概念。特别强调其与更常规的过渡态反应机理的区别。

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