井喷状态轴对称等离子体尾流场加速结构的快速模拟新技术

P. Baxevanis, G. Stupakov
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引用次数: 3

摘要

在等离子体尾流场加速(PWFA)井喷状态下,由超相对论驱动光束激发的等离子体流是高度非线性的,这是当前和未来应用和实验中最相关的配置。因此,快速准确的仿真代码是研究这一极其重要问题不可或缺的工具。我们开发了一种新的算法来处理轴对称束在均匀密度的冷等离子体中的传播。与现有的PWFA模拟工具相比,我们的代码等离子体电子束模拟(PLEBS)使用了一种新的计算方案,该方案确保横向和纵向完全解耦,这一特征显著提高了新方法的速度和鲁棒性。我们的数值结果与QuickPIC代码[14]进行了基准测试,两种方法之间建立了良好的一致性。
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Novel Fast Simulation Technique for Axisymmetric Plasma Wakefield Acceleration Configurations in the Blowout Regime
In the blowout regime of plasma wakefield acceleration (PWFA), which is the most relevant configuration for current and future applications and experiments, the plasma flow that is excited by the ultra-relativistic drive beam is highly nonlinear. Thus, fast and accurate simulation codes are indispensable tools in the study of this extremely important problem. We have developed a novel algorithm that deals with the propagation of axisymmetric bunches of otherwise arbitrary profile through a cold plasma of uniform density. In contrast to the existing PWFA simulation tools, our code PLasma-Electron Beam Simulations (PLEBS) uses a new computational scheme which ensures that the transverse and longitudinal directions are completely decoupled-a feature which significantly enhances the speed and robustness of the new method. Our numerical results are benchmarked against the QuickPIC code [14] and excellent agreement is established between the two approaches.
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