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首页> 外文期刊>Proceedings of the Workshop on Principles of Advanced and Distributed Simulation >A CO-SIMULATION TECHNIQUE FOR EFFICIENT PARTICLE TRACKING USING HYBRID NUMERICAL METHODS WITH APPLICATION IN HIGH ENERGY PHYSICS
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A CO-SIMULATION TECHNIQUE FOR EFFICIENT PARTICLE TRACKING USING HYBRID NUMERICAL METHODS WITH APPLICATION IN HIGH ENERGY PHYSICS

机译:高能物理应用杂种数值方法的高效粒子跟踪共仿真技术

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摘要

Particle tracking in physical systems is a well known simulation challenge in many domains. In particular, High Energy Physics (HEP) demand efficient simulations of charged particles moving throughout complex detector geometries in a magnetic field. Quantized State Systems (QSS) is a modern family of hybrid numerical methods that provides attractive performance features for these problems. Its state-of-the-art implementation is the general-purpose QSS Solver toolkit. Meanwhile, Geant4 is the most widely used platform for computational particle physics, embedding vast amounts of physics domain knowledge. Yet, Geant4 relies rigidly on classic discrete time numerical methods. In this work we present a robust co-simulation technique to apply QSS in the simulation of HEP experiments, thus leveraging the best of both toolkits. We obtained speedups of up to three times in synthetic, yet representative scenarios, and a competitive performance in a difficult benchmark modeled after the Compact Muon Solenoid (CMS) particle detector at CERN.
机译:物理系统中的粒子跟踪是许多域中的众所周知的模拟挑战。特别地,高能量物理(HEP)要求在磁场中的整个复杂的探测器几何形状中移动的带电粒子的有效模拟。量化状态系统(QSS)是一种现代化的混合数值方法,为这些问题提供有吸引力的性能特征。其最先进的实现是通用QSS Solver Toolkit。同时,GEANT4是用于计算粒子物理学最广泛的平台,嵌入了大量的物理域知识。然而,Geant4依然依赖于经典的离散时间数值方法。在这项工作中,我们展示了一种强大的共模技术来应用QSS在HEP实验的模拟中,从而利用两个工具包。我们在综合性尚未代表性场景中获得了多达三次的速度,以及在CERN的紧凑型MUON螺线管(CMS)粒子探测器之后的困难基准中的竞争性能。

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