Department of Applied Physics, Nanjing University of Science and Technology, Nanjing, 210094, People's Republic of China.
J Comput Chem. 2013 Jul 30;34(20):1735-42. doi: 10.1002/jcc.23309. Epub 2013 May 14.
The quantum mechanics (QM) and quasiclassical trajectory (QCT) calculations have been carried out for the title reaction with the ground minimal allowed rotational state of CH (j = 1) on the 1 (1)A' potential energy surface. For the reaction probability at total angular momentum J = 0, a similar trend of the QM and QCT calculations is observed, and the QM results are larger than the latter almost in the whole considered energy range (0.1-1.5 eV). The QCT integral cross sections are larger than the QM results with centrifugal sudden approximation, while smaller than those from QM method including Coriolis coupling for collision energies bigger than 0.25 eV. The quantum wave-packet computations show that the Coriolis coupling effects get more and more pronounced with increasing of J. In addition to the scalar properties, the stereodynamical properties, such as the average rotational alignment factor <P2 (j'•k)>, the angular distributions P(θr ), P(ϕr ), P(θr ,ϕr ), and the polarization-dependent generalized differential cross sections have been explored in detail by QCT approach.
该标题反应在 CH(j = 1)的基态最小允许旋转态上进行了量子力学(QM)和准经典轨迹(QCT)计算,采用 1(1)A'势能面。对于总角动量 J = 0 的反应概率,观察到 QM 和 QCT 计算的相似趋势,并且 QM 结果几乎在整个考虑的能量范围内(0.1-1.5 eV)都大于后者。QCT 积分截面大于离心突发近似的 QM 结果,而对于碰撞能大于 0.25 eV 的 QM 方法包括科里奥利耦合的结果则较小。量子波包计算表明,随着 J 的增加,科里奥利耦合效应变得越来越明显。除了标量性质外,通过 QCT 方法还详细研究了立体动力学性质,例如平均旋转对准因子<P2(j'•k)>,角分布 P(θr),P(ϕr),P(θr,ϕr)和极化相关的广义微分截面。