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Relaxation dynamics through a conical intersection: Quantum and quantum-classical studies

机译:通过锥形交叉口的放松动态:量子和量子古典研究

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We study the relaxation process through a conical intersection of a photo-excited retinal chromophore model. The analysis is based on a two-electronic-state two-dimensional Hamiltonian developed by Hahn and Stock [J. Phys. Chem. B 104 1146 (2000)] to reproduce, with a minimal model, the main features of the 11-cis to all-trans isomerization of the retinal of rhodopsin. In particular, we focus on the performance of various trajectory-based schemes to nonadiabatic dynamics, and we compare quantum-classical results to the numerically exact quantum vibronic wavepacket dynamics. The purpose of this work is to investigate, by analyzing electronic and nuclear observables, how the sampling of initial conditions for the trajectories affects the subsequent dynamics.
机译:我们通过光激发视网膜生色团模型的锥形交叉点来研究弛豫过程。该分析基于哈恩和斯托克[J.Phys.Chem.B 104 1146(2000)]开发的两电子态二维哈密顿量,以最小模型再现视紫红质视网膜11顺式到全反式异构化的主要特征。特别是,我们关注各种基于轨迹的方案对非绝热动力学的性能,并将量子经典结果与数值精确的量子振动波包动力学进行比较。这项工作的目的是通过分析电子和核观测,研究轨道初始条件的采样如何影响后续动力学。

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