Zimmermann Tomáš, Vaníček Jiří
Laboratory of Theoretical Physical Chemistry, Institut des Sciences et Ingénierie Chimiques, Ecole Polytechnique Fédérale de Lausanne (EPFL), CH-1015 Lausanne, Switzerland.
J Chem Phys. 2014 Oct 7;141(13):134102. doi: 10.1063/1.4896735.
We derive a somewhat crude, yet very efficient semiclassical approximation for computing nonadiabatic spectra. The resulting method, which is a generalization of the multiple-surface dephasing representation, includes quantum effects through interference of mixed quantum-classical trajectories and through quantum treatment of the collective electronic degree of freedom. The method requires very little computational effort beyond the fewest-switches surface hopping or Ehrenfest locally mean-field dynamics and is very easy to implement. The proposed approximation is tested by computing the absorption and time-resolved stimulated emission spectra of pyrazine using the four-dimensional three-surface model which allows for comparison with the numerically exact quantum spectra. As expected, the multiple-surface dephasing representation is not suitable for high-resolution linear spectra, yet it seems to capture all the important features of pump-probe spectra. Finally, the method is combined with on-the-fly ab initio evaluation of the electronic structure (i.e., energies, forces, electric-dipole, and nonadiabatic couplings) in order to compute fully dimensional nonadiabatic spectra of pyrazine without approximations inherent to analytical, including vibronic-coupling models. The Appendix provides derivations of perturbative expressions for linear and pump-probe spectra of arbitrary mixed states and for arbitrary laser pulse shapes.
我们推导了一种用于计算非绝热光谱的较为粗略但非常有效的半经典近似方法。所得方法是多表面退相表示的推广,它通过混合量子 - 经典轨迹的干涉以及集体电子自由度的量子处理来包含量子效应。该方法除了最少开关表面跳跃或埃伦费斯特局部平均场动力学之外,所需的计算量极少,并且非常易于实现。通过使用允许与数值精确量子光谱进行比较的四维三表面模型计算吡嗪的吸收光谱和时间分辨受激发射光谱,对所提出的近似方法进行了测试。正如预期的那样,多表面退相表示不适用于高分辨率线性光谱,但它似乎捕捉到了泵浦 - 探测光谱的所有重要特征。最后,该方法与电子结构(即能量、力、电偶极和非绝热耦合)的即时从头算评估相结合,以便在没有包括振动耦合模型在内的解析近似所固有的近似情况下,计算吡嗪的全维非绝热光谱。附录提供了任意混合态的线性和泵浦 - 探测光谱以及任意激光脉冲形状的微扰表达式的推导。