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Fragmentation of clusters and recombination induced by intense and ultrashort X-ray laser pulses

机译:激烈和超薄X射线激光脉冲引起的簇和重组的碎片

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Understanding the ultrafast dynamics of matter under extreme conditions is relevant for structural studies and plasma physics with X-ray lasers. We used the pulses from free-electron lasers (FLASH in Hamburg and LCLS in Stanford) to trigger X-ray induced explosions in atomic atoms (Xe) and molecular clusters (CH4 and CD4). The explosion dynamics depends on cluster size and the intensity of the X-ray pulse, and a transition from Coulomb explosion to hydrodynamic expansion is expected with increasing size and increasing pulse intensity. In methane clusters experiments at FLASH, the time-of-flight spectrometry shows the appearance of molecular adducts which are the result of molecular recombination between ions and molecules. The recombination depends on the cluster size and the expansion mechanism and becomes significant in larger clusters. In Xenon cluster experiments at the LCLS, measurements of the ion charge states in clusters suggest a formation of Xe nanoplasma which expands hydrodynamically. The dominance of low charge states of Xe is due to three-body recombination processes involving electron and Xe ions, and it depends on the X-ray intensity and nanoplasma formation.
机译:了解极端条件下的超快动态与具有X射线激光器的结构研究和等离子体物理相关。我们使用自由电子激光器(汉堡和斯坦福的LCLS闪光灯)的脉冲,以触发原子原子(XE)和分子簇(CH 4和CD4)的X射线诱导的爆炸。爆炸动力学取决于簇大小和X射线脉冲的强度,并且由于尺寸增加和脉冲强度而增加,预期从库仑爆炸到流体动力学膨胀的转变。在闪蒸的甲烷簇实验中,飞行时间光谱法显示了分子加合物的外观,其是离子和分子之间的分子重组的结果。重组取决于簇尺寸和膨胀机制,在较大的簇中变得显着。在LCLS的氙聚类实验中,簇中的离子电荷状态的测量表明Xe纳米纳克马酶的形成,其膨胀了流体动力学。 XE低电荷状态的优势是由于涉及电子和Xe离子的三体重组过程,并且取决于X射线强度和纳米载体形成。

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