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Control of electron beam energy-spread by beam loading effects in a laser-plasma accelerator

机译:通过光束加速器在激光等级加速器中控制电子束能量扩散

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摘要

We present experimental results from a laser wakefield electron accelerator driven by 70 TW ultrashort laser pulses in Helium and Helium-Nitrogen gaseous plasmas with two different Nitrogen concentrations, showing distinct electron-beam qualities. In order to get a clear view of the involved phenomenon, two-dimensional particle-in-cell simulations are performed which not only agreed with the experimental results but also provided an investigation on the evolution of accelerating structures. The experimental and simulation results depict that the beam loading effect can strongly modify the longitudinal accelerating electric field of the wake wave, imposing diametrically opposite effects on the final electron-beam qualities, especially the energy-spread, in the Helium-Nitrogen gas mixtures with different Nitrogen concentrations. In the Helium-Nitrogen-mixed plasma with a lower Nitrogen concentration (0.5%), if appropriately controlled, the beam loading effect can be employed to flatten the accelerating electric field for reducing the electron-beam energy spread. In contrast, in the Helium-Nitrogen-mixed plasmas with a higher Nitrogen concentration (5%), the accelerating electric field of the wake is locally reversed by the self-fields of the overloaded electron bunch, and the correspondingly generated negative-slope region of electric field increases the electron-beam energy-spread.
机译:我们以氦气和氦 - 氮气气相等级驱动的激光唤醒电子加速器的实验结果用氦气和氦 - 氮气气相等离子体驱动,具有两种不同的氮气浓度,显示出不同的电子束质量。为了清楚地看出所涉及的现象,进行二维粒子内模拟,这不仅同意实验结果而且还提供了对加速结构的演变的研究。实验和仿真结果描绘了光束负载效果可以强烈地改变尾波的纵向加速电场,对氦 - 氮气混合物中的最终电子束品质,尤其是能量扩散施加截然相反的效果。不同的氮浓度。在具有较低氮气浓度(0.5%)的氦 - 氮气混合等离子体中,如果适当地控制,可以采用光束负载效果来平整加速电场以降低电子束能量扩散。相反,在具有较高氮浓度(5%)的氦 - 氮气混合等离子体中,唤醒的加速电场通过超载电子束的自田局部反转,并且相应地产生的负斜率区域电场增加了电子束能量扩散。

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