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Stable long range proton acceleration driven by intense laser pulse with underdense plasmas

机译:带有弱等离子体的强激光脉冲驱动稳定的远程质子加速

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摘要

Proton acceleration is investigated by 2.5-dimensional particle-in-cell simulations in an interaction of an ultra intense laser with a near-critical-density plasma. It was found that multi acceleration mechanisms contribute together to a 1.67 GeV collimated proton beam generation. The W-BOA (breakout afterburner based on electrons accelerated by a wakefield) acceleration mechanism plays an important role for the proton energy enhancement in the area far from the target. The stable and continuous acceleration maintains for a long distance and period at least several pico-seconds. Furthermore, the energy scalings are also discussed about the target density and the laser intensity.
机译:在超强激光与近临界密度等离子体的相互作用中,通过2.5维单元内粒子模拟研究了质子加速度。已发现,多重加速机制共同促进了1.67 GeV准直质子束的产生。 W-BOA(基于由尾波场加速的电子的突破加力燃烧器)加速机制对于远离靶区的质子能量增强起着重要作用。稳定且连续的加速度可在很长的距离和周期内保持至少几皮秒的时间。此外,还讨论了有关目标密度和激光强度的能量缩放。

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