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Study of electron acceleration and x-ray radiation as a function of plasma density in capillary-guided laser wakefield accelerators

机译:研究毛细管引导激光尾场加速器中电子加速度和X射线辐射与等离子体密度的关系

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摘要

Laser wakefield electron acceleration in the blow-out regime and the associated betatron X-ray radiation were investigated experimentally as a function of the plasma density in a configuration where the laser is guided. Dielectric capillary tubes were employed to assist the laser keeping self-focused over a long distance by collecting the laser energy around its central focal spot. With a 40 fs, 16 TW pulsed laser, electron bunches with tens of pC charge were measured to be accelerated to an energy up to 300 MeV, accompanied by X-ray emission with a peak brightness of the order of 10 21 ph/s/mm(2)/mrad(2)/0.1%BW. Electron trapping and acceleration were studied using the emitted X-ray beam distribution to map the acceleration process; the number of betatron oscillations performed by the electrons was inferred from the correlation between measured X-ray fluence and beam charge. A study of the stability of electron and X-ray generation suggests that the fluctuation of X-ray emission can be reduced by stabilizing the beam charge. The experimental results are in good agreement with 3D particle-in-cell (PIC) simulation. (C) 2013 AIP Publishing LLC.
机译:在引导激光器的配置中,实验研究了在喷吹状态下的激光尾场电子加速度和相关的电子感应加速器X射线辐射随等离子体密度的变化。使用介电毛细管通过在其中心焦点附近收集激光能量来帮助激光在很长的距离上保持自聚焦。使用40 fs,16 TW脉冲激光,可以测量带有数十pC电荷的电子束加速至300 MeV的能量,并伴随X射线发射,其峰值亮度约为10 21 ph / s / mm(2)/ mrad(2)/0.1%带宽使用发射的X射线束分布来研究电子俘获和加速,以绘制加速过程;由测量的X射线通量和电子束电荷之间的相关性可以推断出电子执行的电子加速器振荡的次数。对电子和X射线产生的稳定性的研究表明,可以通过稳定束电荷来减小X射线发射的波动。实验结果与3D单元中粒子(PIC)模拟非常吻合。 (C)2013 AIP Publishing LLC。

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