• DocumentCode
    3219826
  • Title

    Test Bed for Superconducting Materials

  • Author

    Nantista, C. ; Tantawi, S. ; Weisend, J. ; Siemann, R. ; Dolgashev, V. ; Campisi, I.

  • Author_Institution
    SLAC, Menlo Park, CA 94025, U.S.A., nantista@slac.stanford.edu
  • fYear
    2005
  • fDate
    16-20 May 2005
  • Firstpage
    4227
  • Lastpage
    4229
  • Abstract
    Superconducting rf cavities are increasingly used in accelerators. Gradient is a parameter of particular importance for the ILC. Much progress in gradient has been made over the past decade, overcoming problems of multipacting, field emission, and breakdown triggered by surface impurities. However, the quenching limit of the surface magnetic field for niobium remains a hard limitation on cavity fields sustainable with this technology. Further exploration of materials and preparation may offer a path to surpassing the current limit. For this purpose, we have designed a resonant test cavity. One wall of the cavity is formed by a flat sample of superconducting material; the rest of the cavity is copper or niobium. The H field on the sample wall is 75% higher than on any other surface. Multipacting is avoided by use of a mode with no surface electric field. The cavity will be resonated through a coupling iris with high-power rf at superconducting temperature until the sample wall quenches, as detected by a change in the quality factor. This experiment will allow us to measure critical magnetic fields up to well above that of niobium with minimal cost and effort.
  • Keywords
    Copper; Electric breakdown; Impurities; Magnetic field measurement; Magnetic fields; Magnetic materials; Magnetic resonance; Materials testing; Niobium; Superconducting materials;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Particle Accelerator Conference, 2005. PAC 2005. Proceedings of the
  • Print_ISBN
    0-7803-8859-3
  • Type

    conf

  • DOI
    10.1109/PAC.2005.1591773
  • Filename
    1591773