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Monte Carlo simulation study of positron generation in ultra-intense laser-solid interactions

机译:超强激光-固体相互作用中正电子生成的蒙特卡罗模拟研究

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摘要

The Monte Carlo transport code Geant4 has been used to study positron production in the transport of laser-produced hot electrons in solid targets. The dependence of the positron yield on target parameters and the hot-electron temperature has been investigated in thick targets (mm-scale), where only the Bethe-Heitler process is considered. The results show that Au is the best target material, and an optimal target thickness exists for generating abundant positrons at a given hot-electron temperature. The positron angular distributions and energy spectra for different hot electron temperatures were studied without considering the sheath field on the back of the target. The effect of the target rear sheath field for positron acceleration was studied by numerical simulation while including an electrostatic field in the Monte Carlo model. It shows that the positron energy can be enhanced and quasi-monoenergetic positrons are observed owing to the effect of the sheath field.
机译:蒙特卡洛运输代码Geant4已用于研究固体靶中激光产生的热电子的运输中的正电子产生。在厚靶(毫米级)中研究了正电子产量对靶参数和热电子温度的依赖性,其中仅考虑了Bethe-Heitler过程。结果表明,Au是最佳靶材,并且在给定的热电子温度下,存在用于生成大量正电子的最佳靶材厚度。在不考虑靶背面的鞘层场的情况下,研究了不同热电子温度下的正电子角度分布和能谱。通过数值模拟研究了目标后鞘层场对正电子加速的影响,同时在Monte Carlo模型中包括了静电场。结果表明,由于鞘层场的作用,可以提高正电子能量,并观察到准单能正电子。

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