Operation and expected performance of the NLC main linacs

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The main linacs for the proposed Next Linear Collider (NLC) provide acceleration of up to 500 GeV per beam. The linacs operate in a regime where unavoidable imperfections and even natural ground motion cause significant emittance dilutions. In order to achieve the NLC luminosity goals, small emittance beams must be transported with an emittance growth of less than about 175% for the 1 TeV center-of-mass version of the NLC. In this paper the authors discuss the operation and the expected performance of the NLC main linacs. Under the assumption that the specified device tolerances are met, it is shown from ... continued below

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7 p.

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Assmann, R.W. & Raubenheimer, T.O. November 1, 1996.

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The main linacs for the proposed Next Linear Collider (NLC) provide acceleration of up to 500 GeV per beam. The linacs operate in a regime where unavoidable imperfections and even natural ground motion cause significant emittance dilutions. In order to achieve the NLC luminosity goals, small emittance beams must be transported with an emittance growth of less than about 175% for the 1 TeV center-of-mass version of the NLC. In this paper the authors discuss the operation and the expected performance of the NLC main linacs. Under the assumption that the specified device tolerances are met, it is shown from detailed simulations that the linac emittance transport fulfills the NLC requirements.

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7 p.

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INIS; OSTI as DE97007958

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  • 1996 DPF/DPB workshop on new directions for high energy physics, Snowmass, CO (United States), 25 Jun - 12 Jul 1996

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  • Other: DE97007958
  • Report No.: SLAC-PUB--7354
  • Report No.: CONF-9606243--69
  • Grant Number: AC03-76SF00515
  • Office of Scientific & Technical Information Report Number: 521634
  • Archival Resource Key: ark:/67531/metadc689817

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  • November 1, 1996

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  • Aug. 14, 2015, 8:43 a.m.

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  • Feb. 5, 2016, 7:37 p.m.

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Assmann, R.W. & Raubenheimer, T.O. Operation and expected performance of the NLC main linacs, article, November 1, 1996; Menlo Park, California. (digital.library.unt.edu/ark:/67531/metadc689817/: accessed August 17, 2017), University of North Texas Libraries, Digital Library, digital.library.unt.edu; crediting UNT Libraries Government Documents Department.