Amaran Saieswari, Kumar Sanjay, Köppel H
Department of Chemistry, Indian Institute of Technology Madras, Chennai 600 036, India.
J Chem Phys. 2008 Mar 28;128(12):124305. doi: 10.1063/1.2894308.
Ab initio calculations on the H(+)+NO system have been carried out in Jacobi coordinates at the multireference configuration interaction level employing Dunning's correlation-consistent polarized valence triple zeta basis set to analyze the role of low-lying electronic excited states in influencing the collision dynamics relevant to the experimental collision energy range of 9.5-30 eV. The lowest two adiabatic potential energy surfaces, asymptotically correlating to H(+)+NO(X (2)Pi) and H((2)S)+NO(+)(X (1)Sigma(+)), have been obtained. Using ab initio procedures, the (radial) nonadiabatic couplings and the mixing angle between the lowest two electronic states (1 (2)A' and 2 (2)A') have been obtained to yield the corresponding quasidiabatic potential energy matrix. The strengths of the computed vibrational coupling matrix elements reflect a similar trend, as has been observed experimentally in the magnitudes of the state-to-state transition probability for the inelastic vibrational excitations [J. Krutein and F. Linder, J. Chem. Phys. 71, 559 (1979); F. A. Gianturco et al., J. Phys. B 14, 667 (1981)].
在雅可比坐标下,采用邓宁的相关一致极化价三重ζ基组,在多参考组态相互作用水平上对H(+)+NO体系进行了从头算计算,以分析低电子激发态在影响与9.5 - 30 eV实验碰撞能量范围相关的碰撞动力学中的作用。得到了最低的两个绝热势能面,它们分别渐近关联到H(+)+NO(X (2)Pi)和H((2)S)+NO(+)(X (1)Sigma(+))。利用从头算程序,得到了最低的两个电子态(1 (2)A'和2 (2)A')之间的(径向)非绝热耦合和混合角,以产生相应的准绝热势能矩阵。计算得到的振动耦合矩阵元的强度反映了一种相似的趋势,这与非弹性振动激发的态 - 态跃迁概率大小的实验观测结果一致[J. Krutein和F. Linder,《化学物理杂志》71, 559 (1979); F. A. Gianturco等人,《物理杂志B》14, 667 (1981)]。