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INFRNO Modeling of 10 GeV-Class Electron Beams from a Laser-Plasma Accelerator Driven by the BELLA Laser

机译:来自贝拉激光器驱动的激光等离子加速器10 GEV级电子束的INF&RNO建模

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Particle-in-cell modeling of 10 GeV-Class laser-plasma accelerators, where a short and intense laser pulse with an energy of tens of Joules propagates in a plasma with a length of a few tens of cm and a density ~1017 cm-3, is a computationally challenging task, requiring several tens of millions of core hours on today's supercomputers. In this paper, we present simulations results, obtained with the computationally-efficient code INF&RNO [8]-[10], concerning the production of 10 GeV-class electron beams in a 20 cm plasma under realistic conditions using the PW BELLA laser at the Lawrence Berkeley National Laboratory (LBNL). The computational savings provided by INF&RNO allows for extensive parameter scans and detailed characterization of the accelerator performance.
机译:10 GEV级激光等级促进剂的粒子电池型建模,其中短且强烈的激光脉冲具有数十焦耳的能量的脉冲在等离子体中传播,长度为几十厘米,密度〜10 17 厘米 -3 ,是一个计算上具有挑战性的任务,在今天的超级计算机上需要几十百万核心时间。在本文中,我们存在使用计算上有效的码INF&RNO [8] - [10]获得的模拟结果,其在使用PW Bella激光器下在20cm等离子体中产生10个GEV类电子束。劳伦斯伯克利国家实验室(LBNL)。 INF&RNO提供的计算节省允许广泛的参数扫描和加速器性能的详细表征。

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