OPAL a Versatile Tool for Charged Particle Accelerator Simulations
Andreas Adelmann, Pedro Calvo, Matthias Frey, Achim Gsell, Uldis, Locans, Christof Metzger-Kraus, Nicole Neveu, Chris Rogers, Steve Russell,, Suzanne Sheehy, Jochem Snuverink, Daniel Winklehner

TL;DR
OPAL is a versatile, open-source, parallel simulation tool for charged particle accelerators, capable of modeling complex physics processes in linear accelerators and rings with high performance computing support.
Contribution
This paper introduces OPAL, a flexible and scalable simulation framework for charged particle accelerators, integrating advanced physics modeling and parallel computing capabilities.
Findings
Supports 3D space charge effects in simulations
Runs efficiently on laptops and supercomputers
Includes validation through unit and system tests
Abstract
Many sophisticated computer models have been developed to understand the behaviour of particle accelerators. Even these complex models often do not describe the measured data. Interactions of the beam with external fields, other particles in the same beam and the beam walls all present modelling challenges. These can be challenging to model correctly even with modern supercomputers. This paper describes OPAL (Object Oriented Parallel Accelerator Library), a parallel open source tool for charged-particle optics in linear accelerators and rings, including 3D space charge. OPAL is built from the ground up as a parallel application exemplifying the fact that high performance computing is the third leg of science, complementing theory and experiment. Using the MAD language with extensions, OPAL can run on a laptop as well as on the largest high performance computing systems. The OPAL…
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Taxonomy
TopicsParticle accelerators and beam dynamics · Particle Accelerators and Free-Electron Lasers · Particle Detector Development and Performance
