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Guiding and collimation of laser-accelerated proton beams using thin foils followed with a hollow plasma channel

机译:使用薄箔和空心等离子通道引导和准直激光加速质子束

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摘要

It is proposed that guided and collimated proton acceleration by intense lasers can be achieved using an advanced target-a thin foil followed by a hollow plasma channel. For the advanced target, the laser-accelerated hot electrons can be confined in the hollow channel at the foil rear side, which leads to the formation of transversely localized, Gaussian-distributed sheath electric field and resultantly guiding of proton acceleration. Further, due to the hot electron flow along the channel wall, a strong focusing transverse electric field is induced, taking the place of the original defocusing one driven by hot electron pressure in the case of a purely thin foil target, which results in collimation of proton beams. Two-dimensional particle-in-cell simulations show that collimated proton beams with energy about 20 MeV and nearly half-reduced divergence of 26 degrees are produced at laser intensities 10(20)W/cm(2) by using the advanced target. (C) 2015 AIP Publishing LLC.
机译:有人提出,通过使用先进的靶材-薄箔片,然后是空心等离子通道,可以实现强激光引导和准直的质子加速。对于先进的目标,可以将激光加速的热电子限制在箔背面的空心通道中,这导致形成横向局部分布的,高斯分布的鞘层电场,从而引导质子加速。此外,由于热电子沿着通道壁流动,因此产生了强烈的聚焦横向电场,从而在纯薄箔靶材的情况下代替了由热电子压力驱动的原始散焦场,从而导致准直。质子束。二维单元格内的粒子模拟显示,使用先进的靶标,在激光强度10(20)W / cm(2)时,产生的能量约为20 MeV的准直质子束会产生近一半的26度减散。 (C)2015 AIP Publishing LLC。

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