do N Varella Márcio T, Arasaki Yasuki, Ushiyama Hiroshi, Takatsuka Kazuo, Wang Kwanghsi, McKoy Vincent
Department of Basic Science, Graduate School of Arts and Sciences, University of Tokyo, Komaba, Tokyo 153-8902, Japan.
J Chem Phys. 2007 Feb 7;126(5):054303. doi: 10.1063/1.2432119.
The authors report on studies of time-resolved photoelectron spectra of intramolecular proton transfer in the ground state of chloromalonaldehyde, employing ab initio photoionization matrix elements and effective potential surfaces of reduced dimensionality, wherein the couplings of proton motion to the other molecular vibrational modes are embedded by averaging over classical trajectories. In the simulations, population is transferred from the vibrational ground state to vibrationally hot wave packets by pumping to an excited electronic state and dumping with a time-delayed pulse. These pump-dump-probe simulations demonstrate that the time-resolved photoelectron spectra track proton transfer in the electronic ground state well and, furthermore, that the geometry dependence of the matrix elements enhances the tracking compared with signals obtained with the Condon approximation. Photoelectron kinetic energy distributions arising from wave packets localized in different basins are also distinguishable and could be understood, as expected, on the basis of the strength of the optical couplings in different regions of the ground state potential surface and the Franck-Condon overlaps of the ground state wave packets with the vibrational eigenstates of the ion potential surface.
作者报告了关于氯代丙二醛基态分子内质子转移的时间分辨光电子能谱的研究,采用了从头算光电离矩阵元以及降维有效势能面,其中质子运动与其他分子振动模式的耦合通过对经典轨迹进行平均来体现。在模拟中,通过泵浦到激发电子态并利用延迟脉冲进行倾卸,使布居从振动基态转移到振动激发的波包。这些泵浦 - 倾卸 - 探测模拟表明,时间分辨光电子能谱能很好地跟踪基态中的质子转移,此外,与使用康登近似得到的信号相比,矩阵元的几何依赖性增强了跟踪效果。由位于不同势阱中的波包产生的光电子动能分布也是可区分的,并且正如预期的那样,可以根据基态势能面不同区域的光学耦合强度以及基态波包与离子势能面振动本征态的弗兰克 - 康登重叠来理解。