Ibele Lea M, Curchod Basile F E, Agostini Federica
Department of Chemistry, Durham University, Durham DH1 3LE, United Kingdom.
Université Paris-Saclay, CNRS, Institut de Chimie Physique UMR8000, 91405 Orsay, France.
J Phys Chem A. 2022 Feb 24;126(7):1263-1281. doi: 10.1021/acs.jpca.1c09604. Epub 2022 Feb 14.
The Born-Oppenheimer picture has forged our representation and interpretation of photochemical processes, from photoexcitation down to the passage through a conical intersection, a funnel connecting different electronic states. In this work, we analyze a full in silico photochemical experiment, from the explicit electronic excitation by a laser pulse to the formation of photoproducts following a nonradiative decay through a conical intersection, by contrasting the picture offered by Born-Oppenheimer and that proposed by the exact factorization. The exact factorization offers an alternative understanding of photochemistry that does not rely on concepts such as electronic states, nonadiabatic couplings, and conical intersections. On the basis of nonadiabatic quantum dynamics performed for a two-state 2D model system, this work allows us to compare Born-Oppenheimer and exact factorization for (i) an explicit photoexcitation with and without the Condon approximation, (ii) the passage of a nuclear wavepacket through a conical intersection, (iii) the formation of excited stationary states in the Franck-Condon region, and (iv) the use of classical and quantum trajectories in the exact factorization picture to capture nonadiabatic processes triggered by a laser pulse.
玻恩-奥本海默图景塑造了我们对光化学过程的描述与阐释,涵盖从光激发到通过锥形交叉点(连接不同电子态的漏斗状区域)的过程。在这项工作中,我们通过对比玻恩-奥本海默图景与精确因子分解所提供的图景,分析了一个完整的计算机模拟光化学实验,该实验从激光脉冲的显式电子激发开始,到通过锥形交叉点的非辐射衰变形成光产物。精确因子分解提供了一种对光化学的不同理解,它不依赖于诸如电子态、非绝热耦合和锥形交叉点等概念。基于对一个两态二维模型系统进行的非绝热量子动力学,这项工作使我们能够比较玻恩-奥本海默图景和精确因子分解在以下方面的情况:(i)有无康登近似的显式光激发;(ii)核波包通过锥形交叉点的过程;(iii)弗兰克-康登区域中激发稳态的形成;以及(iv)在精确因子分解图景中使用经典和量子轨迹来捕捉由激光脉冲触发的非绝热过程。