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Revealing the Microscopic Real-Space Excursion of a Laser-Driven Electron

机译:揭示激光驱动电子的微观实时偏移

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High-order harmonic spectroscopy allows one to extract information on fundamental quantum processes, such as the exit time in the tunneling of an electron through a barrier with attosecond time resolution and molecular structure with angstrom spatial resolution. Here, we study the spatial motion of the electron during high-order harmonic generation in an in?situ pump-probe measurement using high-density liquid water droplets as a target. We show that molecules adjacent to the emitting electron-ion pair can disrupt the electron’s trajectory when positioned within the range of the maximum electronic excursion distance. This allows us to use the parent ion and the neighboring molecules as boundaries for the electronic motion to measure the maximum electronic excursion distance during the high-order harmonic generation process. Our analysis of the process is relevant for optimizing high-harmonic yields in dense media.
机译:高阶谐波光谱允许一个人提取关于基本量子工艺的信息,例如通过具有抗焦平时间分辨率的屏障的隧道隧道隧道的出口时间和具有埃克斯坦空间分辨率的分子结构。这里,我们在高阶谐波生成期间研究了电子的空间运动,使用高密度液体水滴作为目标。我们表明,当定位在最大电子偏移距离的范围内时,与发射电子离子对相邻的分子可以破坏电子的轨迹。这允许我们使用父离子和相邻分子作为电子运动的边界,以测量高阶谐波生成过程中的最大电子偏移距离。我们对该过程的分析是为了优化密集介质中的高谐波产量。

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