Department of Chemistry, University of Alberta, Edmonton, Alberta T6G 2G2, Canada.
J Chem Phys. 2011 Mar 7;134(9):094110. doi: 10.1063/1.3553179.
We have demonstrated the use of ab initio molecular dynamics (AIMD) trajectories to compute the vibrational energy levels of molecular systems in the context of the semiclassical initial value representation (SC-IVR). A relatively low level of electronic structure theory (HF/3-21G) was used in this proof-of-principle study. Formaldehyde was used as a test case for the determination of accurate excited vibrational states. The AIMD-SC-IVR vibrational energies have been compared to those from curvilinear and rectilinear vibrational self-consistent field/vibrational configuration interaction with perturbation selected interactions-second-order perturbation theory (VSCF/VCIPSI-PT2) and correlation-corrected vibrational self-consistent field (cc-VSCF) methods. The survival amplitudes were obtained from selecting different reference wavefunctions using only a single set of molecular dynamics trajectories. We conclude that our approach is a further step in making the SC-IVR method a practical tool for first-principles quantum dynamics simulations.
我们已经证明了使用从头算分子动力学(AIMD)轨迹在半经典初始值表示(SC-IVR)的背景下计算分子系统的振动能级。在这项原理验证研究中,使用了相对较低水平的电子结构理论(HF/3-21G)。甲醛被用作确定准确激发振动态的测试案例。AIMD-SC-IVR 振动能与曲线和直线振动自洽场/振动构型相互作用与微扰选择相互作用-二阶微扰理论(VSCF/VCIPSI-PT2)和相关校正振动自洽场(cc-VSCF)方法的振动能进行了比较。通过仅使用一组分子动力学轨迹从选择不同的参考波函数中获得了生存振幅。我们得出结论,我们的方法是使 SC-IVR 方法成为第一性原理量子动力学模拟实用工具的又一步。