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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Ab initio quantum study of nonadiabatic S1-S2 photodynamics of s-trans-butadiene
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Ab initio quantum study of nonadiabatic S1-S2 photodynamics of s-trans-butadiene

机译:反式丁二烯非绝热S1-S2光动力学的从头算量子研究

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摘要

The nonadiabatic photodynamics of s-trans-butadiene in its lowest singlet excited states is studied theoretically, using a fully quantal approach. The coupled 1Bu and 2A_g states are considered in the calculation, representing the lowest dipole-allowed electronic transition, and the dipole-forbidden state with substantial double-excitation character, respectively. Up to six nuclear degrees of freedom, including out-of-plane dihedral angles, are included. The calculation of the underlying potential energy surfaces relies on the CASPT2 method, where widely different CAS spaces have been compared. The ultrafast electronic population decay is confirmed, proceeding on a time scale of 30-40 fs. Pronounced out-of-plane distortions are obtained for the first time from fully quantal calculations. The complexity of the electronic absorption spectrum increases substantially upon including additional vibrational modes in the calculation. Further computations were performed to facilitate inclusion of the coupling to the ground state in subsequent work.
机译:理论上,使用完全定量方法研究了S-反丁二烯在其最低单重态激发态下的非绝热光动力学。在计算中考虑了耦合的1Bu和2A_g状态,分别表示最低的偶极子允许电子跃迁和具有实质性双激发特性的禁止偶极子态。最多包括六个核自由度,包括平面外二面角。潜在势能面的计算依赖于CASPT2方法,在该方法中已比较了广泛不同的CAS空间。证实了超快电子种群衰减,其时间尺度为30-40 fs。首次从完全量化计算中获得了明显的面外失真。在计算中包括其他振动模式时,电子吸收谱的复杂性会大大增加。进行了进一步的计算,以利于在后续工作中包括与基态的耦合。

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