Merritt Isabella C D, Jacquemin Denis, Vacher Morgane
Nantes Université, CNRS, CEISAM UMR 6230, F-44000 Nantes, France.
J Chem Theory Comput. 2023 Mar 28;19(6):1827-1842. doi: 10.1021/acs.jctc.2c00968. Epub 2023 Mar 10.
Photochemical reactions are widely modeled using the popular trajectory surface hopping (TSH) method, an affordable mixed quantum-classical approximation to the full quantum dynamics of the system. TSH is able to account for nonadiabatic effects using an ensemble of trajectories, which are propagated on a single potential energy surface at a time and which can hop from one electronic state to another. The occurrences and locations of these hops are typically determined using the nonadiabatic coupling between electronic states, which can be assessed in a number of ways. In this work, we benchmark the impact of some approximations to the coupling term on the TSH dynamics for several typical isomerization and ring-opening reactions. We have identified that two of the schemes tested, the popular local diabatization scheme and a scheme based on biorthonormal wave function overlap implemented in the OpenMOLCAS code as part of this work, reproduce at a much reduced cost the dynamics obtained using the explicitly calculated nonadiabatic coupling vectors. The other two schemes tested can give different results, and in some cases, even entirely incorrect dynamics. Of these two, the scheme based on configuration interaction vectors gives unpredictable failures, while the other scheme based on the Baeck-An approximation systematically overestimates hopping to the ground state as compared to the reference approaches.
光化学反应广泛采用流行的轨迹表面跳跃(TSH)方法进行建模,这是一种对系统全量子动力学的经济实惠的混合量子-经典近似方法。TSH能够使用轨迹系综来考虑非绝热效应,这些轨迹一次在单个势能面上传播,并且可以从一个电子态跳跃到另一个电子态。这些跳跃的发生和位置通常使用电子态之间的非绝热耦合来确定,这可以通过多种方式进行评估。在这项工作中,我们对耦合项的一些近似对几种典型异构化和开环反应的TSH动力学的影响进行了基准测试。我们发现,所测试的两种方案,即流行的局域 diabatic 方案和作为这项工作一部分在OpenMOLCAS代码中实现的基于双正交波函数重叠的方案,以大大降低的成本重现了使用明确计算的非绝热耦合矢量获得的动力学。所测试的另外两种方案可能会给出不同的结果,在某些情况下,甚至会给出完全错误的动力学。在这两种方案中,基于组态相互作用矢量的方案会出现不可预测的失败,而另一种基于Baeck-An近似的方案与参考方法相比,系统地高估了向基态的跳跃。