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Dynamics of (H-,H-2) collisions: A time-dependent quantum mechanical investigation on a new ab initio potential energy surface

机译:(H-,H-2)碰撞的动力学:新的从头算势能面的时间依赖量子力学研究

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A global analytical potential energy surface for the ground state of H-3(-) has been constructed by fitting an analytic function to the ab initio potential energy values computed using coupled cluster singles and doubles with perturbative triples [CCSD(T)] method and Dunning's augmented correlation consistent polarized valence triple zeta basis set. Using this potential energy surface, time-dependent quantum mechanical wave packet calculations were carried out to calculate the reaction probabilities (P-R) for the exchange reaction H-+H-2(v,j)-->H-2+H-, for different initial vibrational (v) and rotational (j) states of H-2, for total angular momentum equal to zero. With increase in v, the number of oscillations in the P-R(E) plot increases and the oscillations become more pronounced. While P-R increases with increase in rotational excitation from j=0 to 1, it decreases with further increase in j to 2 over a wide range of energies. In addition, rotational excitation quenches the oscillations in P-R(E) plots. (C) 2004 American Institute of Physics.
机译:通过将解析函数拟合到使用扰动三元组[CCSD(T)]和耦合三重耦合偶数和双精度计算的从头算势能值,来构造H-3(-)基态的全局分析势能面Dunning的增强相关性一致的极化价三重zeta基集。利用这个势能面,进行了时间相关的量子力学波包计算,以计算交换反应H- + H-2(v,j)-> H-2 + H-的反应概率(PR),对于H-2的不同初始振动(v)和旋转(j)状态,总角动量等于零。随着v的增加,P-R(E)图中的振荡次数增加,并且振荡变得更加明显。尽管P-R随着旋转激发的增加而从j = 0增大到1,但在更大的能量范围内随着j的增大进一步减小,P-R减小。此外,旋转激励可以消除P-R(E)图中的振荡。 (C)2004年美国物理研究所。

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