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Parallel Computation of Beam-Beam Interactions including Longitudinal Motion

In beam-beam macroparticle simulations for collider rings, the accurate determination of the incoherent spectrum and potentially unstable coherent modes requires (1) large numbers of collisions, and (2) accurate electric field solutions at each collision. On single processor, a self consistent simul...

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Detalles Bibliográficos
Autores principales: Herr, Werner, Jones, F W
Lenguaje:eng
Publicado: 2003
Materias:
Acceso en línea:http://cds.cern.ch/record/618382
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author Herr, Werner
Jones, F W
author_facet Herr, Werner
Jones, F W
author_sort Herr, Werner
collection CERN
description In beam-beam macroparticle simulations for collider rings, the accurate determination of the incoherent spectrum and potentially unstable coherent modes requires (1) large numbers of collisions, and (2) accurate electric field solutions at each collision. On single processor, a self consistent simulation typically uses a 2D model of the beam-beam interaction in order to achieve a reasonable computation time, however for the long (~0.3m) bunches in the LHC we wish to include the 3rd dimension in order to account for effects such as longitudinal motion, crossing angle, and the beam size and density variations. We describe here a parallel algorithm, developed with MPI on a small commodity Linux cluster, to extend our simulation code BeamX from 2D to 3D using longitudinal subdivision (slicing) of the bunches. In addition to an overview of the computational framework, we present performance results and initial test cases.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2003
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spelling cern-6183822022-08-17T13:36:18Zhttp://cds.cern.ch/record/618382engHerr, WernerJones, F WParallel Computation of Beam-Beam Interactions including Longitudinal MotionAccelerators and Storage RingsIn beam-beam macroparticle simulations for collider rings, the accurate determination of the incoherent spectrum and potentially unstable coherent modes requires (1) large numbers of collisions, and (2) accurate electric field solutions at each collision. On single processor, a self consistent simulation typically uses a 2D model of the beam-beam interaction in order to achieve a reasonable computation time, however for the long (~0.3m) bunches in the LHC we wish to include the 3rd dimension in order to account for effects such as longitudinal motion, crossing angle, and the beam size and density variations. We describe here a parallel algorithm, developed with MPI on a small commodity Linux cluster, to extend our simulation code BeamX from 2D to 3D using longitudinal subdivision (slicing) of the bunches. In addition to an overview of the computational framework, we present performance results and initial test cases.CERN-AB-2003-019-ABPoai:cds.cern.ch:6183822003-05-22
spellingShingle Accelerators and Storage Rings
Herr, Werner
Jones, F W
Parallel Computation of Beam-Beam Interactions including Longitudinal Motion
title Parallel Computation of Beam-Beam Interactions including Longitudinal Motion
title_full Parallel Computation of Beam-Beam Interactions including Longitudinal Motion
title_fullStr Parallel Computation of Beam-Beam Interactions including Longitudinal Motion
title_full_unstemmed Parallel Computation of Beam-Beam Interactions including Longitudinal Motion
title_short Parallel Computation of Beam-Beam Interactions including Longitudinal Motion
title_sort parallel computation of beam-beam interactions including longitudinal motion
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/618382
work_keys_str_mv AT herrwerner parallelcomputationofbeambeaminteractionsincludinglongitudinalmotion
AT jonesfw parallelcomputationofbeambeaminteractionsincludinglongitudinalmotion