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Imaging molecular structure through femtosecond photoelectron diffraction on aligned and oriented gas-phase molecules

机译:通过飞秒光电子衍射对取向和取向的气相分子成像的分子结构

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摘要

This paper gives an account of our progress towards performing femtosecond time-resolved photoelectron diffraction on gas-phase molecules in a pump–probe setup combining optical lasers and an X-ray free-electron laser. We present results of two experiments aimed at measuring photoelectron angular distributions of laser-aligned 1-ethynyl-4-fluorobenzene (C8H5F) and dissociating, laser-aligned 1,4-dibromobenzene (C6H4Br2) molecules and discuss them in the larger context of photoelectron diffraction on gas-phase molecules. We also show how the strong nanosecond laser pulse used for adiabatically laser-aligning the molecules influences the measured electron and ion spectra and angular distributions, and discuss how this may affect the outcome of future time-resolved photoelectron diffraction experiments.
机译:本文介绍了我们在结合光学激光器和X射线自由电子激光器的泵浦探针装置中对气相分子执行飞秒时间分辨光电子衍射的进展。我们提供了两个旨在测量激光对准的1-乙炔基-4-氟苯(C8H5F)和离解的激光对准的1,4-二溴苯(C6H4Br2)分子的光电子角分布的实验的结果,并在较大的光电子环境中进行了讨论。气相分子的衍射。我们还展示了用于绝热激光对准分子的强纳秒激光脉冲如何影响测得的电子和离子光谱以及角度分布,并讨论了这将如何影响未来时间分辨光电子衍射实验的结果。

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