Momentum compaction and phase slip factor

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Description

Section 2.3.11 of the Handbook of Accelerator Physics and Engineering on Landau damping is updated. The slip factor and its higher orders are given in terms of the various orders of the momentum compaction. With the aid of a simplified FODO lattice, formulas are given for the alteration of the lower orders of the momentum compaction by various higher multipole magnets. The transition to isochronicity is next demonstrated. Formulas are given for the extraction of the first three orders of the slip factor from the measurement of the synchrotron tune while changing the rf frequency. Finally bunch-length compression experiments in ... continued below

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3 pages

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Ng, K.Y. October 1, 2010.

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Description

Section 2.3.11 of the Handbook of Accelerator Physics and Engineering on Landau damping is updated. The slip factor and its higher orders are given in terms of the various orders of the momentum compaction. With the aid of a simplified FODO lattice, formulas are given for the alteration of the lower orders of the momentum compaction by various higher multipole magnets. The transition to isochronicity is next demonstrated. Formulas are given for the extraction of the first three orders of the slip factor from the measurement of the synchrotron tune while changing the rf frequency. Finally bunch-length compression experiments in semi-isochronous rings are reported.

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3 pages

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  • Report No.: FERMILAB-FN-0900-APC
  • Grant Number: AC02-07CH11359
  • DOI: 10.2172/1002002 | External Link
  • Office of Scientific & Technical Information Report Number: 1002002
  • Archival Resource Key: ark:/67531/metadc834358

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Creation Date

  • October 1, 2010

Added to The UNT Digital Library

  • May 19, 2016, 3:16 p.m.

Description Last Updated

  • Nov. 29, 2016, 8:27 p.m.

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Ng, K.Y. Momentum compaction and phase slip factor, report, October 1, 2010; Batavia, Illinois. (digital.library.unt.edu/ark:/67531/metadc834358/: accessed September 26, 2017), University of North Texas Libraries, Digital Library, digital.library.unt.edu; crediting UNT Libraries Government Documents Department.