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首页> 外文期刊>Journal of Plasma Physics >Collimation of laser-driven energetic protons in a capillary
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Collimation of laser-driven energetic protons in a capillary

机译:激光驱动的高能质子在毛细管中的准直

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Energetic divergent proton beams can be generated in the interaction of ultra-intense laser pulses with solid-density foil targets via target normal sheath acceleration (TNSA). In this paper, a scheme using a capillary to reduce the proton beam divergence is proposed. By two-dimensional particle-in-cell (PIC) simulations, it is shown that strong transverse electric and magnetic fields rapidly grow at the inner surface of the capillary when the laser-driven hot electrons propagate through the target and into the capillary. The spontaneous magnetic field collimates the electron flow, and the ions dragged from the capillary wall by hot electrons neutralize the negative charge and thus restrain the transverse extension of the sheath field set up by electrons. The proton beam divergence, which is mainly determined by the accelerating sheath field, is therefore reduced by the transverse limitation of the sheath field in the capillary.
机译:高强度发散质子束可以通过目标法向鞘层加速度(TNSA)在超强激光脉冲与固体密度箔靶相互作用中产生。本文提出了一种使用毛细管来减少质子束发散的方案。通过二维单元格内粒子(PIC)模拟,表明当激光驱动的热电子传播通过目标并进入毛细管时,强大的横向电场和磁场会在毛细管的内表面迅速生长。自发磁场使电子流准直,被热电子从毛细管壁拖动的离子将中和负电荷,从而限制了由电子建立的鞘层电场的横向扩展。因此,质子束发散主要由加速的护套场决定,因此通过毛细管中护套场的横向限制而减小。

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