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High-Performance Computing Modeling Advances Accelerator Science for High-Energy Physics

机译:高性能计算建模促进了高能物理加速器科学的发展

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The development and optimization of particle accelerators are essential for advancing our understanding of the properties of matter, energy, space, and time. Particle accelerators are complex devices whose behavior involves many physical effects on multiple scales. Therefore, advanced computational tools utilizing high-performance computing are essential for accurately modeling them. In the past decade, the US Department of Energy's SciDAC program has produced accelerator-modeling tools that have been employed to tackle some of the most difficult accelerator science problems. Here, the authors discuss the Synergia framework and its applications to high-intensity particle accelerator physics. Synergia is an accelerator simulation package capable of handling the entire spectrum of beam dynamics simulations. The authors present Synergia's design principles and its performance on HPC platforms.
机译:粒子加速器的开发和优化对于增进我们对物质,能量,空间和时间的性质的理解至关重要。粒子加速器是复杂的设备,其行为涉及多个尺度的许多物理效应。因此,利用高性能计算的高级计算工具对于准确地对其建模至关重要。在过去的十年中,美国能源部的SciDAC计划产生了加速器建模工具,这些工具已用于解决一些最困难的加速器科学问题。在这里,作者讨论了Synergia框架及其在高强度粒子加速器物理学中的应用。 Synergia是一个加速器仿真程序包,能够处理光束动力学仿真的整个范围。作者介绍了Synergia的设计原理及其在HPC平台上的性能。

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