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Energetic electrons generation in high intensity and ultra-short laser pulse interactions with thin foil or low density gas jet targets

机译:精力充沛的电子在高强度和超短期激光脉冲相互作用与薄箔或低密度气体喷射靶

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摘要

Energy and angular distributions of the fast outgoing electron beam induced by the interaction of 1-2 J, 30 fs, 3-20x1018 W/cm2 laser with a thin foil or a gas jet target are characterized by using both an electron spectrometer and Bremsstrahlung induced photo-nuclear reactions. The supra-thermic electron beams production was investigated for a solid target versus its thickness and its Z number, and for a gas jet target versus its pressure. Using a polyethylene target and a supersonic Helium gas jet target, we measured, respectively, up to 4x108 and 3x109 electrons produced per laser pulse, with energies up to, respectively, 60 MeV and 160 MeV. The associated Boltzmann temperature of these electrons is colder for thin foils (9 MeV) than for gas jet (18 MeV). About, respectively 0.06% and 1% of the laser energy has been converted to outgoing electrons with energies above 5 MeV. Such electrons leave the plasma in the laser direction within a cone with an opening angle of, respectively, 2.5? and 8.5?. We discuss the physical processes of electron acceleration. Numerical calculations show a good agreement with the experiments.
机译:能量和由1-2Ĵ,30个FS,3-20x1018 W / cm 2的激光用薄箔或气体射流靶的相互作用所引起的快速的出射电子束的角分布的特征在于同时使用电子光谱仪和轫致辐射诱导光核反应。所述超THERMIC电子束的生产进行了研究用于固体靶材与它的厚度和它的Z数,以及用于气体射流目标相对于其压力。使用聚乙烯靶和超音速氦气喷射目标,我们测量,分别高达每激光脉冲产生4x108和3×10 9的电子,与能量高达分别60兆电子伏和160兆电子伏。这些电子的相关联的玻尔兹曼温度为薄箔(9 MeV)的注入比气体射流(18兆电子伏)更冷。约,分别为0.06%和激光能量的1%已经转化为出射电子与上述5MeV的能量。这种电子离开在激光方向上的等离子体的锥体内分别,2.5的,开口角θ和8.5 ?.我们讨论电子加速的物理过程。通过数值计算与实验吻合良好。

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