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首页> 外文期刊>Plasma Science, IEEE Transactions on >Dynamics of a Charged Particle in Progressive Plane Waves: Stochastic Acceleration. Application to the Wake Field Acceleration Process
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Dynamics of a Charged Particle in Progressive Plane Waves: Stochastic Acceleration. Application to the Wake Field Acceleration Process

机译:渐进平面波中带电粒子的动力学:随机加速度。在唤醒场加速过程中的应用

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The dynamics of a charged particle in a relativistic strong electromagnetic plane wave propagating in vacuum is studied first, the problem is shown to be integrable when the wave propagates in vacuum. One particle in a high-intensity wave, propagating in a vacuum, perturbed by a low-intensity traveling wave is considered next. Resonances are identified, and conditions for resonance overlap are studied. Stochastic acceleration is shown by considering a single particle. It is confirmed in plasma in realistic situations with particle-in-cell code simulations. Finally, it is 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 wakefield and efficient acceleration.
机译:首先研究了在真空中传播的相对论强电磁平面波中带电粒子的动力学,当该波在真空中传播时,该问题被证明是可积分的。接下来考虑在高强度波中在真空中传播并被低强度行波干扰的粒子。识别共振,并研究共振重叠的条件。通过考虑单个粒子来显示随机加速度。在实际情况下,等离子体中的粒子代码模拟已证实了这一点。最后,表明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,以捕获在尾流场中并实现有效的加速。

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