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γ-ray generation enhancement by the charge separation field in laser-target interaction in the radiation dominated regime

机译:在辐射主导条件下,激光-目标相互作用中的电荷分离场增强了γ射线的产生

摘要

A new source of radiation can be created with a laser pulse of intensity 1023W/cm2 interacting with a slightly overdense plasma. Collective effects driven by the electrostatic field significantly enhance the synchrotron radiation. They impact on the laser energy repartition leading to a specific emission but also constitute a crucial element for the intense radiation production. They allow electrons to be accelerated over a length up to 10 laser wavelengths favoring emission of an intense radiation. It is shown that charge separation field depends on the ion mass and target thickness but also on laser polarization. These phenomena are studied with an one dimensional relativistic particle-in-cell code accounting for the classical radiation reaction force.
机译:可以使用强度为1023W / cm2的激光脉冲与稍过密度的等离子体相互作用来创建新的辐射源。静电场驱动的集体效应显着增强了同步加速器辐射。它们影响激光能量的分配,导致特定的发射,但也构成产生强烈辐射的关键因素。它们允许电子在长达10个激光波长的长度上加速,从而有利于发射强辐射。结果表明,电荷分离场取决于离子质量和目标厚度,还取决于激光偏振。这些现象是用一维相对论的单元格内粒子代码研究了经典的辐射反作用力。

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