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首页> 外文期刊>IEEE Transactions on Plasma Science >A PIC-Fluid Hybrid Algorithm for Multiscale Simulations of Laser-Plasma Interactions
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A PIC-Fluid Hybrid Algorithm for Multiscale Simulations of Laser-Plasma Interactions

机译:用于激光-等离子体相互作用的多尺度仿真的PIC-流体混合算法

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A recently introduced algorithm for performing integrated kinetic simulations of the fast ignition approach to laser fusion is reviewed. The integrated algorithm uses a conventional fully electromagnetic relativistic particle-in-cell algorithm in vacuum and plasma up to a density well above cutoff for the incident laser, above which density the plasma is sufficiently collisional so that light waves and electron plasma waves are unimportant and a simplified physics model is justified that leads to improved computational efficiencies. Integrated comprehensive kinetic simulation of fast ignition is rendered more practical with this two-region algorithm. Professor C. K. Birdsall was a pioneer in computational plasma physics and enthusiastically championed the expansion of its use for discovery science and to simulate plasma phenomena in a wall-to-wall manner.
机译:综述了一种最新引入的算法,该算法用于对激光聚变的快速点火方法进行集成动力学仿真。集成算法在真空和等离子体中使用常规的完全电磁相对论单元内粒子算法,直至密度远高于入射激光的截止强度,在该密度以上,等离子体具有足够的碰撞性,因此光波和电子等离子体波不重要,并且简化的物理模型是合理的,可以提高计算效率。这种两区域算法使快速点火的综合综合动力学仿真更加实用。 C. K. Birdsall教授是计算等离子体物理学的先驱,并热烈拥护其在发现科学中的应用扩展以及以逐墙方式模拟等离子体现象。

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