Simulations and Experiments of Beam-Beam Effects in e+e- Storage Rings

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Over the past decade, extensive simulations of beam-beam effects in e{sup +}e{sup -} colliders, based on the particle-in-cell method, were developed to explain many complex experimental observations. Recently, such simulations were used to predict the future luminosity performance of e{sup +}e{sup -} colliders. Some predictions have been proven to be correct in the existing accelerators. In this paper, many effects such as the beam-beam limit, crossing angle, parasitic collisions, betatron spectrum, and the beam-beam lifetime, will be directly compared between simulations and experiments.

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5 pages

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Cai, Y.; Seeman, J.; /SLAC; Kozanecki, W.; /DAPNIA, Saclay; Ohmi, K. et al. May 16, 2005.

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Description

Over the past decade, extensive simulations of beam-beam effects in e{sup +}e{sup -} colliders, based on the particle-in-cell method, were developed to explain many complex experimental observations. Recently, such simulations were used to predict the future luminosity performance of e{sup +}e{sup -} colliders. Some predictions have been proven to be correct in the existing accelerators. In this paper, many effects such as the beam-beam limit, crossing angle, parasitic collisions, betatron spectrum, and the beam-beam lifetime, will be directly compared between simulations and experiments.

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5 pages

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  • Invited talk presented at 2005 Particle Accelerator Conference, , 5/16/2005-5/20/2005

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  • Report No.: SLAC-PUB-11179
  • Grant Number: AC02-76SF00515
  • Office of Scientific & Technical Information Report Number: 890827
  • Archival Resource Key: ark:/67531/metadc882708

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  • May 16, 2005

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  • Sept. 21, 2016, 2:29 a.m.

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  • Dec. 7, 2016, 9:20 p.m.

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Cai, Y.; Seeman, J.; /SLAC; Kozanecki, W.; /DAPNIA, Saclay; Ohmi, K. et al. Simulations and Experiments of Beam-Beam Effects in e+e- Storage Rings, article, May 16, 2005; [Menlo Park, California]. (digital.library.unt.edu/ark:/67531/metadc882708/: accessed September 26, 2017), University of North Texas Libraries, Digital Library, digital.library.unt.edu; crediting UNT Libraries Government Documents Department.