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首页> 外文期刊>Physical Review, A >Ultrafast x-ray-induced nuclear dynamics in diatomic molecules using femtosecond x-ray-pump-x-ray-probe spectroscopy
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Ultrafast x-ray-induced nuclear dynamics in diatomic molecules using femtosecond x-ray-pump-x-ray-probe spectroscopy

机译:使用飞秒X射线泵-X射线探针光谱法超快X射线诱导的硅藻分子中的核动力学

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摘要

The capability of generating two intense, femtosecond x-ray pulses with a controlled time delay opens the possibility of performing time-resolved experiments for x-ray-induced phenomena. We have applied this capability to study the photoinduced dynamics in diatomic molecules. In molecules composed of low-Z elements, K-shell ionization creates a core-hole state in which the main decay mode is an Auger process involving two electrons in the valence shell. After Auger decay, the nuclear wave packets of the transient two-valence-hole states continue evolving on the femtosecond time scale, leading either to separated atomic ions or long-lived quasibound states. By using an x-ray pump and an x-ray probe pulse tuned above the K-shell ionization threshold of the nitrogen molecule, we are able to observe ion dissociation in progress by measuring the time-dependent kinetic energy releases of different breakup channels. We simulated the measurements on N-2 with a molecular dynamics model that accounts for K-shell ionization, Auger decay, and the time evolution of the nuclear wave packets. In addition to explaining the time-dependent feature in the measured kinetic energy release distributions from the dissociative states, the simulation also reveals the contributions of quasibound states.
机译:产生具有受控时间延迟的两个强烈的飞秒X射线脉冲的能力打开了对X射线诱导的现象进行时间分辨实验的可能性。我们已经应用了这种能力来研究硅藻分子中的光诱导动力学。在由低Z元素组成的分子中,K-壳电离产生芯孔状态,其中主衰减模式是涉及价壳中的两个电子的螺旋钻过程。在螺旋衰减之后,瞬态双价孔状态的核波包继续在飞秒时间尺度上发展,以分离的原子离子或长寿的Quasibound状态。通过使用X射线泵和高于氮素分子的k壳电离阈值的X射线探针脉冲,我们能够通过测量不同分离通道的时间依赖性动能释放来观察正在进行的离子解离。我们用分子动力学模型模拟了N-2的测量,该模型占K-Shell电离,螺旋衰减和核波包的时间演变。除了解释来自解离状态的测量动力释放分布中的时间依赖性特征之外,模拟还揭示了拟击态的贡献。

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