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Role of stochastic heating in wakefield acceleration monitored by optical injection

机译:随机加热在光学注入监测尾流加速中的作用

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摘要

It is shown that stochastic heating can play an important role in Laser Wake Field Acceleration. When considering 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. The influence of stochastic acceleration on the trapping of electrons is compared to the one of cold injection by considering several polarizations of the colliding pulses. For some value of the plasma density and pulse duration, a transition from an injection due to stochastic acceleration to a cold injection dominated regime - regarding the trapped charge - has been observed from PIC code simulations. When the plasma density exceeds some value, stochastic heating becomes important and is necessary in some circumstances to get electrons trapped into the wakefield.
机译:结果表明,随机加热可以在激光唤醒场加速中发挥重要作用。当考虑低密度等离子体与被低强度反向传播波干扰的高强度波相互作用时,随机加热可以为电子提供合适的动量以捕获在唤醒场中。通过考虑碰撞脉冲的几种极化,将随机加速度对电子俘获的影响与冷注入的影响进行了比较。对于等离子体密度和脉冲持续时间的某个值,已经从PIC代码模拟中观察到从随机加速引起的注入到冷注入为主的状态(关于捕获的电荷)的过渡。当等离子体密度超过某个值时,随机加热变得很重要,在某些情况下,随机加热对于将电子捕获到尾流场中很有必要。

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