High performance computation on beam dynamics problems in high intensity compact cyclotrons

This paper presents the research progress in the beam dynamics problems for future high intensity compact cyclotrons by utilizing the state-of-the-art high performance computation technology. A “Start-to-Stop” model, which includes both the interaction of the internal particles of a single bunch and...

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Veröffentlicht in:Science China. Physics, mechanics & astronomy mechanics & astronomy, 2011-12, Vol.54 (Suppl 2), p.249-254
Hauptverfasser: Yang, JianJun, Zhang, TianJue, Lin, YuZheng, Adelmann, Andreas, Wang, Feng, An, ShiZhong
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Sprache:eng
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Zusammenfassung:This paper presents the research progress in the beam dynamics problems for future high intensity compact cyclotrons by utilizing the state-of-the-art high performance computation technology. A “Start-to-Stop” model, which includes both the interaction of the internal particles of a single bunch and the mutual interaction of neighboring multiple bunches in the radial direction, is established for compact cyclotrons with multi-turn extraction. This model is then implemented in OPAL-CYCL, which is a 3D object-oriented parallel code for large scale particle simulations in cyclotrons. In addition, to meet the running requirement of parallel computation, we have constructed a small scale HPC cluster system and tested its performance. Finally, the high intensity beam dynamics problems in the 100 MeV compact cyclotron, which is being constructed at CIAE, are studied using this code and some conclusions are drawn.
ISSN:1674-7348
1869-1927
DOI:10.1007/s11433-011-4544-1