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The ion microscope as a tool for quantitative measurements in the extreme ultraviolet

机译:离子显微镜可作为极紫外光下定量测量的工具

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摘要

We demonstrate a tool for quantitative measurements in the extreme ultraviolet (EUV) spectral region measuring spatially resolved atomic ionization products at the focus of an EUV beam. The ionizing radiation is a comb of the 11th–15th harmonics of a Ti:Sapphire femtosecond laser beam produced in a Xenon gas jet. The spatial ion distribution at the focus of the harmonics is recorded using an ion microscope. Spatially resolved single- and two-photon ionization products of Argon and Helium are observed. From such ion distributions single- and two-photon generalized cross sections can be extracted by a self-calibrating method. The observation of spatially resolved two-EUV-photon ionization constitutes an initial step towards future single-shot temporal characterization of attosecond pulses.
机译:我们展示了一种用于在极紫外(EUV)光谱区域中进行空间测量的原子电离产物的极紫外(EUV)光谱区域中定量测量的工具,该极紫外光束的焦点。电离辐射是氙气喷射中产生的Ti:Sapphire飞秒激光束的第11 –15 谐波的梳状。使用离子显微镜记录谐波焦点处的空间离子分布。观察到空间分辨的氩和氦的单光子和双光子电离产物。从这种离子分布中,可以通过自校准方法提取单光子和双光子的广义截面。对空间分辨的两个EUV光子电离的观察构成了未来对阿秒脉冲的单次瞬态表征的第一步。

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