论文标题

通过刺激的超快X - 射线拉曼信号产生

Visualizing Conical Intersection Passages via Vibronic Coherence Maps Generated by Stimulated Ultrafast X--Ray Raman Signals

论文作者

Keefer, Daniel, Schnappinger, Thomas, de Vivie-Riedle, Regina, Mukamel, Shaul

论文摘要

几乎所有光体物理和光化学过程的速率和结果均由圆锥形交集确定。这些是电子状态之间在分子的核景观上进行退化的区域,其中电子和细胞核在可比的时间尺度上演变,并强烈耦合,从而在光激发时可以实现无辐射松弛通道。由于它们的超快性质和巨大的复杂性,在实验上监测圆锥形交叉点是一个开放的挑战。我们提出了一项关于乌拉西尔超快光片化的模拟研究,该研究通过记录瞬态波袋连贯性在此通道中使用X射线游离电子激光脉冲记录瞬态波袋连贯性,从而证明了一个新的窗口。我们报告了两个主要发现。首先,我们发现锥形交叉路口的振动连贯性生存了数百个飞秒,可以在整个过程中进行测量。其次,参与振动和电子状态的时间依赖性能量分裂景观直接从信号的Wigner频谱中提取。这些通过可视化其瞬态振动相干性分布,提供了量子圆锥形交叉路口途径的新型物理图片。拟议的实验直接映射了圆锥交叉围绕核波袋的路径。

The rates and outcomes of virtually all photophysical and photochemical processes are determined by Conical Intersections. These are regions of degeneracy between electronic states on the nuclear landscape of molecules where electrons and nuclei evolve on comparable timescales and become strongly coupled, enabling radiationless relaxation channels upon optical excitation. Due to their ultrafast nature and vast complexity, monitoring Conical Intersections experimentally is an open challenge. We present a simulation study on the ultrafast photorelaxation of uracil, which demonstrates a new window into Conical Intersections obtained by recording the transient wavepacket coherence during this passage with an x-ray free electron laser pulse. We report two major findings. First, we find that the vibronic coherence at the conical intersection lives for several hundred femtoseconds and can be measured during this entire time. Second, the time-dependent energy splitting landscape of the participating vibrational and electronic states is directly extracted from Wigner spectrograms of the signal. These offer a novel physical picture of the quantum Conical Intersection pathways through visualizing their transient vibronic coherence distributions. The path of a nuclear wavepacket around the Conical Intersection is directly mapped by the proposed experiment.

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