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首页> 外文期刊>Physics of plasmas >Efficient proton acceleration and focusing by an ultraintense laser interacting with a parabolic double concave target with an extended rear
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Efficient proton acceleration and focusing by an ultraintense laser interacting with a parabolic double concave target with an extended rear

机译:高效的质子加速和超强激光与抛物线双凹靶相互作用的聚焦,并具有扩展的后部

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摘要

A new scheme for acceleration and focusing of protons via an improved parabolic double concave target irradiated by an ultraintense laser pulse is proposed. When an intense laser pulse illuminates a concave target, the hot electrons are concentrated on the focal region of the rear cavity and they form a strong space-charge-separation field, which accelerates the protons. For a simple concave target, the proton energy spectrum becomes very broad outside the rear cavity because of transverse divergence of the electromagnetic fields. However, particle-in-cell simulations show that, when the concave target has an extended rear, the hot electrons along the wall surface induce a transverse focusing sheath field, resulting in a clear enhancement of proton focusing, which makes the lower proton energy spread, while, leads to a little reduction of the proton bunch peak energy.
机译:提出了一种通过超强激光脉冲辐照改进的抛物线双凹靶来加速和聚焦质子的新方案。当强激光脉冲照亮凹形目标时,热电子会集中在后腔的焦点区域上,并形成一个强大的空间电荷分离场,从而加速质子。对于简单的凹形目标,由于电磁场的横向发散,质子能谱在后腔外部变得非常宽。然而,细胞内粒子模拟显示,当凹靶具有向后延伸时,沿壁表面的热电子会引起横向聚焦鞘层电场,从而明显增强质子聚焦,从而使较低的质子能量散布,而导致质子束峰值能量略有降低。

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