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Stochastic heating in high intensity laser-plasma interaction. Application to the wake field acceleration process

机译:高强度激光等离子体相互作用的随机加热。应用于Wake Field加速过程

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Recently, PIC simulations results published by Tajima et al. and Sheng et al. have shown that chaos can play an important role in the efficient electron heating observed in laser-plasma interaction at very high intensities. These results led us to investigate the condition under which significant stochastic heating is likely to take place. First, we shall consider the dynamics of a single charged particle in the field of a high intensity wave propagating in an unmagnetized vacuum or plasma. In a second part, the effect of a constant homogeneous magnetic field will be discussed. Third, in the case of a plasma interacting with several electromagnetic waves, the use of Chirikov's criterion to predict the conditions favouring stochastic heating will be presented. Finally, it will be shown that when considering a low density plasma interacting with a high intensity wave perturbed by a low intensity counterpropagating wave, stochastic heating can provide electrons with the right momentum for trapping in the wake field and efficient acceleration.
机译:最近,Tajima等人发布的PIC模拟结果。和盛等。已经表明,混沌可以在非常高强度下在激光 - 血浆相互作用中观察到的有效电子加热中起重要作用。这些结果导致我们研究了可能发生显着随机加热的条件。首先,我们将考虑在未达到的真空或等离子体中传播的高强度波领域中的单个带电粒子的动态。在第二部分中,将讨论恒定均匀磁场的效果。第三,在与多个电磁波相互作用的等离子体的情况下,呈现Chirikov的标准预测有利于随机加热的条件。最后,示出,当考虑到与低强度反向波的高强度波相互作用的低密度等离子体相互作用时,随机加热可以提供具有较好动量的电子,用于捕获唤醒场和有效的加速度。

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