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首页> 外文期刊>Physics of plasmas >Probing electron acceleration and x-ray emission in laser-plasma accelerators
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Probing electron acceleration and x-ray emission in laser-plasma accelerators

机译:在激光等离子加速器中探测电子加速和X射线发射

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摘要

While laser-plasma accelerators have demonstrated a strong potential in the acceleration of electrons up to giga-electronvolt energies, few experimental tools for studying the acceleration physics have been developed. In this paper, we demonstrate a method for probing the acceleration process. A second laser beam, propagating perpendicular to the main beam, is focused on the gas jet few nanosecond before the main beam creates the accelerating plasma wave. This second beam is intense enough to ionize the gas and form a density depletion, which will locally inhibit the acceleration. The position of the density depletion is scanned along the interaction length to probe the electron injection and acceleration, and the betatron X-ray emission. To illustrate the potential of the method, the variation of the injection position with the plasma density is studied.
机译:虽然激光等离子加速器在将电子加速到千兆电子能量方面显示出了强大的潜力,但很少研究用于研究加速物理学的实验工具。在本文中,我们演示了一种探测加速过程的方法。垂直于主光束传播的第二激光束在主光束产生加速的等离子体波之前几秒钟内聚焦在气体射流上。第二束光强度足以使气体电离并形成密度耗尽,这将局部抑制加速度。沿着相互作用长度扫描密度耗尽的位置,以探测电子注入和加速以及电子感应加速器的X射线发射。为了说明该方法的潜力,研究了注入位置随等离子体密度的变化。

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