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首页> 外文期刊>IEEE Transactions on Plasma Science >A Proposed 100-kHz fs Laser Plasma Hard X-Ray Source at the ELI-ALPS Facility
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A Proposed 100-kHz fs Laser Plasma Hard X-Ray Source at the ELI-ALPS Facility

机译:在ELI-ALPS设施中提议的100kHz fs激光等离子硬X射线源

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摘要

Femtosecond lasers are a proven source of hard X-rays for ultrafast probing applications; however, such X-ray sources do not offer significant advantages over accelerator-based photon sources. In this paper, the use of the proposed 100-kHz two-cycle ALPS-HR laser at the ELI-ALPS facility to drive a femtosecond hard X-ray source is investigated and target-related issues for high repetition rates are also discussed. A particle-in-cell simulation is used to determine the optimal plasma scale length for the investigated laser parameters to generate the necessary hot electron spectrum. Electron transport and photon creation are simulated using a Monte Carlo method in liquid droplet targets. The generated photon characteristics are postprocessed to build the synthetic X-ray spectrum and temporal pulse shape. The X-ray source characteristics are compared with other similar laser plasma X-ray sources. The parameters for the preliminary experiments are also discussed.
机译:飞秒激光是用于超快探测应用的硬X射线的可靠来源;然而,与基于加速器的光子源相比,这种X射线源没有提供明显的优势。在本文中,研究了在ELI-ALPS设施中使用拟议的100 kHz两周期ALPS-HR激光器驱动飞秒硬X射线源,并讨论了与目标有关的高重复率问题。单元中的粒子模拟用于确定所研究激光参数的最佳等离子体尺度长度,以生成必要的热电子光谱。使用蒙特卡洛方法在液滴目标中模拟电子传输和光子产生。对生成的光子特性进行后处理,以建立合成的X射线光谱和时间脉冲形状。将X射线源的特性与其他类似的激光等离子体X射线源进行比较。还讨论了初步实验的参数。

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