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Detailed Experimental Study of Ion Acceleration by Interaction of an Ultra-Short Intense Laser with an Underdense Plasma

机译:超短强激光与低密度等离子体相互作用对离子加速的详细实验研究

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摘要

Ion acceleration from intense (Iλ2 > 1018 Wcm−2 μm2) laser-plasma interaction is experimentally studied within a wide range of He gas densities. Focusing an ultrashort pulse (duration  ion plasma period) on a newly designed submillimetric gas jet system, enabled us to inhibit total evacuation of electrons from the central propagation channel reducing the radial ion acceleration associated with ponderomotive Coulomb explosion, a mechanism predominant in the long pulse scenario. New ion acceleration mechanism have been unveiled in this regime leading to non-Maxwellian quasi monoenergetic features in the ion energy spectra. The emitted nonthermal ion bunches show a new scaling of the ion peak energy with plasma density. The scaling identified in this new regime differs from previously reported studies.
机译:实验研究了强烈的(Iλ 2 18 Wcm −2 μm 2 )离子的等离子体加速作用在广泛的氦气浓度范围内进行了研究。将超短脉冲(持续时间的等离子体周期)聚焦在新设计的亚微米级气体喷射系统上,使我们能够抑制电子从中央传播通道完全逸出,从而减少了与重质库仑爆炸有关的径向离子加速度,这是长脉冲的主要机制场景。在这种情况下,新的离子加速机制已经被揭示出来,从而导致了离子能谱中的非麦克斯韦准单能特征。发射的非热离子束显示出离子峰值能量随等离子体密度的新变化。在这种新制度下确定的规模与先前报道的研究不同。

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