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Enhanced relativistic-electron beam collimation using two consecutive laser pulses

机译:使用两个连续的激光脉冲增强相对论电子束准直

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摘要

The double laser pulse approach to relativistic electron beam (REB) collimation in solid targets has been investigated at the LULI-ELFIE facility. In this scheme two collinear laser pulses are focused onto a solid target with a given intensity ratio and time delay to generate REBs. The magnetic field generated by the first laser-driven REB is used to guide the REB generated by a second delayed laser pulse. We show how electron beam collimation can be controlled by properly adjusting the ratio of focus size and the delay time between the two pulses. We found that the maximum of electron beam collimation is clearly dependent on the laser focal spot size ratio and related to the magnetic field dynamics. Cu-Kα and CTR imaging diagnostics were implemented to evaluate the collimation effects on the respectively low energy (≤100 keV) and high energy (≥MeV) components of the REB.
机译:在LULI-ELFIE设施中已经研究了双激光脉冲方法对固体靶中的相对论电子束(REB)进行准直。在该方案中,两个共线激光脉冲以给定的强度比和时间延迟聚焦到一个固体目标上,以生成REB。由第一激光驱动REB产生的磁场用于引导由第二延迟激光脉冲产生的REB。我们展示了如何通过适当地调整焦点大小的比率和两个脉冲之间的延迟时间来控制电子束准直。我们发现,电子束准直的最大值明显取决于激光焦斑尺寸比,并且与磁场动力学有关。使用Cu-Kα和CTR成像诊断程序来评估准直对REB的低能量(≤100keV)和高能量(≥MeV)分量的影响。

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