Laser-pulse and electron-bunch plasma wakefield accelerator

Tianhong Wang, V. Khudik, G. Shvets
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引用次数: 3

Abstract

Propagation distances of intense laser pulses and high-charge electron beams through the plasma are, respectively, limited by diffraction and self-deceleration. This imposes severe constraints on the performance of the two major advanced accelerator concepts: laser and plasma wakefield accelerators. Using numerical simulations, we demonstrate that when the two beams co-propagate in the plasma, they can interact synergistically and extend each other's travel distances. The key interactions responsible for the synergy are found to be laser channeling by the electron bunch, and direct laser acceleration of the bunch electrons by the laser pulse. Remarkably, the amount of energy transferred from the laser pulse to the plasma can be increased by several times by the guiding electron bunch despite its small energy content. Implications of such synergistic interactions for the high-gradient acceleration of externally injected witness charges are discussed, and a new concept of a Laser-pulse and Electron-bunch Plasma Accelerator (LEPA) is formulated.
激光脉冲和电子束等离子体尾流场加速器
强激光脉冲和高电荷电子束在等离子体中的传播距离分别受到衍射和自减速的限制。这对两个主要的先进加速器概念:激光和等离子尾流场加速器的性能造成了严重的限制。通过数值模拟,我们证明了当两束光束在等离子体中共传播时,它们可以协同作用并延长彼此的传播距离。产生协同作用的关键相互作用是电子束的激光通道和激光脉冲对电子束电子的直接激光加速。值得注意的是,从激光脉冲传递到等离子体的能量可以通过引导电子束增加几倍,尽管它的能量含量很小。讨论了这种协同作用对外部注入见证电荷的高梯度加速的影响,并提出了激光脉冲和电子束等离子体加速器(LEPA)的新概念。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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