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Parallel Particle-In-Cell Simulation of Colliding Beams in High Energy Accelerators

机译:高能加速器中碰撞光束的并行粒子内模拟

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In this paper we present a self-consistent simulation model of colliding beams in high energy accelerators. The model, which is based on a particle-in-cell method, uses a new developed shifted-Green function algorithm for the efficient calculation of the beam-beam interaction. The model uses transfer maps to treat the external focusing elements and a stochastic map to treat radiation damping and quantum excitation of the beams. In the parallel implementation we studied various strategies to deal with the particular nature of the colliding beam system - a system in which there can be significant particle movement between beam-beam collisions. We chose a particle-field decomposition approach instead of the conventional domain decomposition or particle decomposition approach. The particle-field approach leads to good load balance, reduced communication cost, and shows the best scalability on an IBM SP3 among the three parallel implementations we studied. A performance test of the beam-beam model on aCray T3E, IBM SP3, and a PC cluster is presented. As an application, we studied the effect of long-range collisions on antiproton lifetime in the Fermilab Tevatron.
机译:在本文中,我们提出了高能加速器中碰撞光束的自洽仿真模型。该模型基于单元中的粒子方法,它使用新开发的shift-Green函数算法来有效地计算束-束相互作用。该模型使用转移贴图来处理外部聚焦元件,并使用随机贴图来处理光束的辐射衰减和量子激发。在并行实现中,我们研究了各种策略来应对碰撞光束系统的特殊性质,该系统在光束与光束碰撞之间可能存在明显的粒子运动。我们选择了粒子场分解方法,而不是常规的域分解或粒子分解方法。粒子场方法可导致良好的负载平衡,降低的通信成本,并且在我们研究的三个并行实现中,在IBM SP3上显示出最佳的可伸缩性。提出了在aCray T3E,IBM SP3和PC集群上对光束模型进行的性能测试。作为应用,我们研究了费米实验室Tevatron中远距离碰撞对反质子寿命的影响。

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