Overview of the RF Systems for LCLS

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The Linac Coherent Light Source (LCLS) at SLAC, when it becomes operational in 2009, will provide its user community with an X-ray source many orders of magnitude brighter than anything available in the world at that time [1]. The electron beam acceleration will be provided by existing and new RF systems capable of maintaining the amplitude and phase stability of each bunch to extremely tight tolerances. RF feedback control of the various RF systems will be fundamental in ensuring the beam arrives at the LCLS undulator at precisely the required energy and peak current phase. This paper details the requirements ... continued below

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3 pages

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McIntosh, P.; Akre, R.; Boyce, R.; Emma, P.; Hill, A.; Rago, C. et al. June 15, 2005.

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Description

The Linac Coherent Light Source (LCLS) at SLAC, when it becomes operational in 2009, will provide its user community with an X-ray source many orders of magnitude brighter than anything available in the world at that time [1]. The electron beam acceleration will be provided by existing and new RF systems capable of maintaining the amplitude and phase stability of each bunch to extremely tight tolerances. RF feedback control of the various RF systems will be fundamental in ensuring the beam arrives at the LCLS undulator at precisely the required energy and peak current phase. This paper details the requirements for RF stability for the various LCLS RF systems and also highlights proposals for how these injector and Linac RF systems can meet these tight constraints.

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3 pages

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  • Presented atParticle Accelerator Conference (PAC 05), , 5/16/2005-5/20/2005

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  • Report No.: SLAC-PUB-11269
  • Grant Number: AC02-76SF00515
  • Office of Scientific & Technical Information Report Number: 890406
  • Archival Resource Key: ark:/67531/metadc883094

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  • June 15, 2005

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  • Sept. 21, 2016, 2:29 a.m.

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  • Nov. 30, 2016, 3:05 p.m.

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McIntosh, P.; Akre, R.; Boyce, R.; Emma, P.; Hill, A.; Rago, C. et al. Overview of the RF Systems for LCLS, article, June 15, 2005; [Menlo Park, California]. (digital.library.unt.edu/ark:/67531/metadc883094/: accessed October 17, 2017), University of North Texas Libraries, Digital Library, digital.library.unt.edu; crediting UNT Libraries Government Documents Department.