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首页> 外文期刊>The Journal of Chemical Physics >Coupled nuclear and electron dynamics in the vicinity of a conical intersection
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Coupled nuclear and electron dynamics in the vicinity of a conical intersection

机译:耦合核和电子动力学在锥形交叉口附近

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摘要

Ultrafast optical techniques allow us to study ultrafast molecular dynamics involving both nuclear and electronic motion. To support interpretation, theoretical approaches are needed that can describe both the nuclear and electron dynamics. Hence, we revisit and expand our ansatz for the coupled description of the nuclear and electron dynamics in molecular systems (NEMol). In this purely quantum mechanical ansatz, the quantum-dynamical description of the nuclear motion is combined with the calculation of the electron dynamics in the eigenfunction basis. The NEMol ansatz is applied to simulate the coupled dynamics of the molecule NO2 in the vicinity of a conical intersection (CoIn) with a special focus on the coherent electron dynamics induced by the non-adiabatic coupling. Furthermore, we aim to control the dynamics of the system when passing the CoIn. The control scheme relies on the carrier envelope phase of a few-cycle IR pulse. The laser pulse influences both the movement of the nuclei and the electrons during the population transfer through the CoIn.
机译:超快光学技术使我们能够研究涉及核和电子运动的超快分子动力学。为了支持解释,需要能够描述核动力学和电子动力学的理论方法。因此,我们重新回顾并扩展了分子系统(NEMol)中核和电子动力学耦合描述的ansatz。在这个纯量子力学的ansatz中,核运动的量子动力学描述与本征函数基中电子动力学的计算相结合。应用NEMol-ansatz模拟了NO2分子在锥形交叉点(CoIn)附近的耦合动力学,重点研究了非绝热耦合引起的相干电子动力学。此外,我们的目标是在传递硬币时控制系统的动力学。该控制方案依赖于几个周期红外脉冲的载波包络相位。在通过硬币的粒子转移过程中,激光脉冲影响原子核和电子的运动。

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