论文标题
表征回忆期间的多电动动力学
Characterizing multielectron dynamics during recollision
论文作者
论文摘要
衡量电子从不同状态出现的延迟是Attosecond科学的主要成就之一。该延迟可以具有两个起源 - 电子波数据包在离子化介质的静电场期间重塑,或者通过与其余电子的动态相互作用进行了修改。大多数实验都观察到了前者,但是确认需要进行复杂的计算。需要直接测量多电体动力学。照片结构化 - 光电离的倒数 - 在电子回忆期间自然发生,可以通过将扰动束组合在重组前修改回忆电子来测量。这些原位方法使我们能够明确分离多电体动力学 - 参考是同时在没有多电体相互作用的光谱区域测量的Attosend脉冲的光谱阶段。在这里,我们测量由XE等离激元共振动力学引起的回旋电子的组延迟,模拟在存在C $ _ {60} $中等离激元共振的情况下产生的回旋电子的原位测得的光谱阶段,并呈现基于强场上近似的相应的半古典理论。我们的结果表明,原位技术以及300 eV回忆电子将允许测量电子物质的最终时间响应。
Measuring the delay for an electron to emerge from different states is one of the major achievements of attosecond science. This delay can have two origins - the electron wave packet is reshaped during departure by the electrostatic field of the ionizing medium or it is modified by dynamic interaction with the remaining electrons. Most experiments have observed the former, but confirmation requires a complex calculation. A direct measurement of multielectron dynamics is needed. Photo-recombination - the inverse of photoionization - occurs naturally during electron recollision and can be measured by combining a perturbing beam to modify the recollision electron before recombination. These in situ methods allow us to unambiguously isolate multielectron dynamics - the reference being the spectral phase of an attosecond pulse simultaneously measured in spectral regions without multielectron interaction. Here, we measure the group delay of the recollision electron caused by plasmonic resonance dynamics in Xe, simulate the in situ measured spectral phase of a recollision electron generated in the presence of the plasmonic resonance in C$_{60}$ and present a corresponding semi-classical theory based on the strong-field approximation. Our results suggest that in situ techniques, together with 300 eV recollision electrons, will allow the ultimate time response of electronic matter to be measured.