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Load management strategy for Particle-In-Cell simulations in high energy particle acceleration

机译:高能粒子加速中的粒子模拟中的负载管理策略

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In the wake of the intense effort made for the experimental CILEX project, numerical simulation campaigns have been carried out in order to finalize the design of the facility and to identify optimal laser and plasma parameters. These simulations bring, of course, important insight into the fundamental physics at play. As a by-product, they also characterize the quality of our theoretical and numerical models. In this paper, we compare the results given by different codes and point out algorithmic limitations both in terms of physical accuracy and computational performances. These limitations are illustrated in the context of electron laser wakefield acceleration (LWFA). The main limitation we identify in state-of-the-art Particle-In-Cell (PIC) codes is computational load imbalance. We propose an innovative algorithm to deal with this specific issue as well as milestones towards a modern, accurate high-performance PIC code for high energy particle acceleration.
机译:在为实验性CILEX项目付出巨大努力之后,开展了数值模拟活动,以便最终确定设施的设计并确定最佳的激光和等离子体参数。当然,这些模拟为基础物理学带来了重要的见解。作为副产品,它们还表征了我们的理论和数值模型的质量。在本文中,我们比较了不同代码给出的结果,并指出了在物理准确性和计算性能方面的算法局限性。这些限制在电子激光尾波加速(LWFA)的背景下得到了说明。我们在最先进的单元内粒子(PIC)代码中确定的主要限制是计算负载不平衡。我们提出了一种创新的算法来解决这一特定问题,并为实现高能粒子加速的现代,精确的高性能PIC代码迈出了里程碑。

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