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Design and Manufacturing Main Linac Superconducting Guadrupole for ILC at Fermilab.


DE2008926772

Publication Date 2007
Personal Author Kashikhin, V. V.; Zlobin, A. V.; Lopes, M. L.; Tompkinson, J. C.; Lamm, M. J.
Page Count 4
Abstract The design and manufacturing of the first model of an International Linear Collider (ILC) Main Linac superconducting quadrupole is in progress at Fermilab. The quadrupole has a 78 mm aperture, a 36 T integrated gradient, and a cold mass length of 700 mm. A superferric magnet configuration with iron poles and four racetrack coils was chosen based on magnet performance, cost, and reliability considerations. Each coil is wound using enamel insulated, 0.5 mm diameter, NbTi superconductor. The quadrupole package also includes shell type dipole steering coils. The results of the quadrupole design, including magnetic and mechanical analyses, are presented. Specific issues related to the quadrupole magnetic center stability, superconductor magnetization and mechanical stability are discussed and analyzed. The magnet quench protection system, current leads, and mounting the quadrupole inside ILC Main Linac cryomodule will also be briefly discussed.
Keywords
  • Particle accelerators
  • Quadrupoles
  • Linear colliders
  • Magnets
  • Coils
  • Design
  • Fermilab tevatron
  • Superconductors
  • Gradients
  • Stability
  • Dipoles
Source Agency
  • Technical Information Center Oak Ridge Tennessee
Corporate Authors Fermi National Accelerator Lab., Batavia, IL.; Department of Energy, Washington, DC.
Supplemental Notes Sponsored by Department of Energy, Washington, DC.
Document Type Technical Report
NTIS Issue Number 200821
Contract Number
  • AC02-76CH03000
Design and Manufacturing Main Linac Superconducting Guadrupole for ILC at Fermilab.
Design and Manufacturing Main Linac Superconducting Guadrupole for ILC at Fermilab.
DE2008926772

  • Particle accelerators
  • Quadrupoles
  • Linear colliders
  • Magnets
  • Coils
  • Design
  • Fermilab tevatron
  • Superconductors
  • Gradients
  • Stability
  • Dipoles
  • Technical Information Center Oak Ridge Tennessee
  • AC02-76CH03000
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