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首页> 外文期刊>The Journal of Chemical Physics >Excited state non-adiabatic dynamics of the smallest polyene, trans 1,3-butadiene. II. Ab initio multiple spawning simulations
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Excited state non-adiabatic dynamics of the smallest polyene, trans 1,3-butadiene. II. Ab initio multiple spawning simulations

机译:激发态的最小多烯的非绝热动力学,反式1,3-丁二烯。 II。 AB Initio多个产卵模拟

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The excited state non-adiabatic dynamics of the smallest polyene, trans 1,3-butadiene (BD), has long been the subject of controversy due to its strong coupling, ultrafast time scales and the difficulties that theory faces in describing the relevant electronic states in a balanced fashion. Here we apply Ab Initio Multiple Spawning (AIMS) using state-averaged complete active space multistate second order perturbation theory [SA-3-CAS(4/4)-MSPT2] which describes both static and dynamic electron correlation effects, providing a balanced description of both the initially prepared bright 1(1)B(u) (pi pi*) state and non-adiabatically coupled dark 2(1)A(g) state of BD. Importantly, AIMS allows for on-the-fly calculations of experimental observables. We validate our approach by directly simulating the time resolved photoelectron-photoion coincidence spectroscopy results presented in Paper I [A. E. Boguslavskiy et al., J. Chem. Phys. 148, 164302 (2018)], demonstrating excellent agreement with experiment. Our simulations reveal that the initial excitation to the 11Bu state rapidly evolves via wavepacket dynamics that follow both bright-and dark-state pathways as well as mixtures of these. In order to test the sensitivity of the AIMS results to the relative ordering of states, we considered two hypothetical scenarios biased toward either the bright B-1(u) or the dark 2(1)A(g) state. In contrast with AIMS/SA-3-CAS(4/4)-MSPT2 simulations, neither of these scenarios yields favorable agreement with experiment. Thus, we conclude that the excited state non-adiabatic dynamics in BD involves both of these ultrafast pathways. Published by AIP Publishing.
机译:由于其强烈的耦合,超快时间尺度和理论面描述相关电子国家的困难,最小多烯的激发态的非绝热动力学(Trans 1,3-丁二烯)长期以来一直是争议的主题以平衡的方式。在这里,我们使用状态平均完整的有效空间多态二阶扰动理论[SA-3-CAS(4/4)-MSPT2]应用AB Initio多产卵(AIMS),其描述了静态和动态电子相关效果,提供了平衡的描述初始制备的亮1(1 )b(U)(PI PI *)状态和非绝热偶联的BD的暗2(1)A(g)状态。重要的是,AIMS允许对实验性可观察结果的现场计算。我们通过直接模拟纸质中提出的时间分辨的光电子 - 光重合光谱结果来验证我们的方法[A. E. Boguslavskiy等,J.Chem。物理。 148,164302(2018)]展示了与实验的良好协议。我们的模拟表明,11BU状态的初始激励通过遵循明亮和黑暗状态的波波斩波动态而迅速发展,以及它们的混合物。为了测试目标的敏感性导致状态的相对排序,我们认为朝向明亮B-1(U)或暗2(1)A(G)状态偏置的两个假设情景。与AIMS / SA-3-CAS(4/4)-MSPT2模拟相比,这些方案既不会产生有利的协议。因此,我们得出结论,BD中的激发态非绝热动态涉及这些超快途径。通过AIP发布发布。

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