The RTA betatron-node experiment: Limiting cumulative BBU growth in a linear periodic system

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The successful operation of a Two-Beam accelerator based on extended relativistic klystrons hinges upon decreasing the cumulative dipole BBU growth from an exponential to a more manageable linear growth rate. The authors describe the theoretical scheme to achieve this, and a new experiment to test this concept. The experiment utilizes a 1-MeV, 600-Amp, 200-ns electron beam and a short beamline of periodically-spaced rf dipole-mode pillbox cavities and solenoid magnets for transport. Descriptions of the beamline are presented, followed by theoretical studies of the beam transport and dipole-mode growth.

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Lidia, Steven M.; Houck, Timothy L. & Westenskow, Glen August 1, 2000.

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Description

The successful operation of a Two-Beam accelerator based on extended relativistic klystrons hinges upon decreasing the cumulative dipole BBU growth from an exponential to a more manageable linear growth rate. The authors describe the theoretical scheme to achieve this, and a new experiment to test this concept. The experiment utilizes a 1-MeV, 600-Amp, 200-ns electron beam and a short beamline of periodically-spaced rf dipole-mode pillbox cavities and solenoid magnets for transport. Descriptions of the beamline are presented, followed by theoretical studies of the beam transport and dipole-mode growth.

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INIS; OSTI as DE00765497

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  • XX International Linear Accelerator Conference, Monterey, CA (US), 08/20/2000--08/25/2000

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  • Report No.: LBNL--46703
  • Grant Number: AC03-76SF00098
  • Office of Scientific & Technical Information Report Number: 765497
  • Archival Resource Key: ark:/67531/metadc724989

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  • August 1, 2000

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  • Sept. 29, 2015, 5:31 a.m.

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  • Sept. 1, 2016, 7:14 p.m.

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Lidia, Steven M.; Houck, Timothy L. & Westenskow, Glen. The RTA betatron-node experiment: Limiting cumulative BBU growth in a linear periodic system, article, August 1, 2000; California. (digital.library.unt.edu/ark:/67531/metadc724989/: accessed August 17, 2017), University of North Texas Libraries, Digital Library, digital.library.unt.edu; crediting UNT Libraries Government Documents Department.