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Simulation and design of stable channel-guided laser wakefield accelerators - art. no. 036502

机译:稳定通道引导的激光尾场加速器的仿真和设计-艺术。没有。 036502

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摘要

Most laser wakefield accelerator (LWFA) experiments to date have operated in the self-modulated (SM) regime and have been self-guided. A channel-guided LWFA operating in the standard or resonant regime is expected to offer the possibility of high electron energy gain and high accelerating gradients without the instabilities and poor electron beam quality associated with the SM regime. Plasma channels such as those produced by a capillary discharge have demonstrated guiding of intense laser pulses over distances of several centimeters. Optimizing the performance in a resonant LWFA constrains the on-axis plasma density in the channel to a relatively narrow range. A scaling model is presented that quantifies resonant LFWA performance in terms of the maximum accelerating gradient, dephasing length, and dephasing-limited energy gain. These performance quantities are expressed in terms of laser and channel experimental parameters, clearly illustrating some of the tradeoffs in the choice of parameters. The predicted energy gain in this model is generally lower than that indicated by simpler scaling models. Simulations agree well with the scaling model in both low and high plasma density regimes. Simulations of a channel-guided, self-modulated LWFA are also presented. Compared with the resonant LWFA regime, the requirements on laser and channel parameters in the SM regime are easier to achieve, and a channel-guided SM-LWFA is likely to be less unstable than a self-guided SM-LWFA. [References: 64]
机译:迄今为止,大多数激光尾场加速器(LWFA)实验都是在自调制(SM)体制下进行的,并且是自导的。在标准或谐振方式下运行的通道引导LWFA有望提供高电子能量增益和高加速梯度的可能性,而不会出现与SM方式相关的不稳定和较差的电子束质量。等离子体通道(例如由毛细管放电产生的通道)已证明在几厘米的距离内可以引导强激光脉冲。在谐振LWFA中优化性能可将通道中的轴上等离子体密度限制在相对较窄的范围内。提出了一个缩放模型,该模型根据最大加速梯度,移相长度和移相限制的能量增益来量化谐振LFWA性能。这些性能量用激光和通道实验参数表示,清楚地说明了参数选择中的一些折衷。该模型中的预测能量增益通常低于较简单的缩放模型所指示的能量增益。在低和高血浆密度条件下,仿真与缩放模型非常吻合。还介绍了通道引导的自调制LWFA的仿真。与共振LWFA方案相比,SM方案中对激光和通道参数的要求更容易实现,并且与自导SM-LWFA相比,通道引导的SM-LWFA不稳定程度较小。 [参考:64]

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