首页> 外文期刊>The Journal of Chemical Physics >Quantum study of the N+N-2 exchange reaction: State-to-state reaction probabilities, initial state selected probabilities, Feshbach resonances, and product distributions
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Quantum study of the N+N-2 exchange reaction: State-to-state reaction probabilities, initial state selected probabilities, Feshbach resonances, and product distributions

机译:N + N-2交换反应的量子研究:状态间的反应概率,初始状态选择的概率,Feshbach共振和产物分布

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We report a detailed three-dimensional time-dependent quantum dynamics study of the state-to-state N+N-2 exchange scattering in the 2.1-3.2 eV range using a recently developed ab initio potential energy surface (PES). The reactive flux arrives at the dividing surface in the asymptotic product region in a series of six packets, instead of a single packet. Further study shows that these features arise from the "Lake Eyring" region of the PES, a region with a shallow well between two transition states. Trappings due to Feshbach resonances are found to be the major cause of the time delay. A detailed analysis of the Feshbach resonance features is carried out using an L-2 calculation of the metastable states in the "Lake Eyring" region. Strong resonance features are found in the state-to-state and initial state selected reaction probabilities. The metastable states with bending motions and/or bending coupled with stretching motions are found to be the predominant source of the resonance structure. Initial state selected reaction probabilities further indicate that the lifetimes of the metastable states with bending motions in the "Lake Eyring" region are longer than those of states with stretching motions and thus dominate the reactive resonances. Resonance structures are also visible in some of the integral cross sections and should provide a means for future experimental observation of the resonance behavior. A study of the final rotational distributions shows that, for the energy range studied here, the final products are distributed toward high-rotational states. Final vibrational distributions at the temperatures 2000 and 10 000 K are also reported. (C) 2004 American Institute of Physics. [References: 34]
机译:我们报告使用最新开发的从头算势能面(PES)在2.1-3.2 eV范围内进行状态到状态N + N-2交换散射的详细三维时间依赖的量子动力学研究。无功通量以一系列六个包而不是单个包的形式到达渐近积区域中的分割表面。进一步的研究表明,这些特征来自PES的“ Eyring Lake”区域,该区域在两个过渡状态之间具有浅阱。发现由于Feshbach共振引起的陷波是时间延迟的主要原因。对Feshbach共振特征的详细分析是通过使用L-2计算“湖环”区域中的亚稳态进行的。在状态到状态和初始状态选择的反应概率中发现强共振特征。发现具有弯曲运动和/或弯曲并具有拉伸运动的亚稳态是共振结构的主要来源。初始状态选择的反应概率进一步表明,在“ Eyring湖”区域中具有弯曲运动的亚稳态的寿命比具有拉伸运动的状态的寿命长,因此支配了反应共振。共振结构在某些整体横截面中也可见,并且应为以后的共振行为实验观察提供一种手段。对最终旋转分布的研究表明,对于此处研究的能量范围,最终产品向高旋转状态分布。还报告了温度为2000和10000 K时的最终振动分布。 (C)2004年美国物理研究所。 [参考:34]

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