Author: Furuta, F.
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MOPDTH012
High-Q R&D for SRF Challenge  
 
  • F. Furuta
    Cornell University, Ithaca, New York, USA
 
  The high Q challenges on SRF cavities have been progressed significantly at medium field during the past few years. These high-Q performances had been demonstrated successfully with single- and multi-cell cavities, and also in the vertical test dewar and the horizontal test cryomodule. In addition, the systematic studies of high Q behavior were carried out in a different cooling conditions and magnetic field conditions. The recent progress and understandings on high-Q cavities will be presented.  
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WEIBLH2053
Cornell's ERL Main Linac Cryomodule: Design, Construction and Results  
 
  • R.G. Eichhorn, B. Bullock, B. Clasby, J.V. Conway, B. Elmore, F. Furuta, Y. He, G.H. Hoffstaetter, M. Liepe, T.I. O'Connell, P. Quigley, D.M. Sabol, J. Sears, E.N. Smith, V. Veshcherevich
    Cornell University (CLASSE), Cornell Laboratory for Accelerator-Based Sciences and Education, Ithaca, New York, USA
 
  Cornell University has finished building a 10 m long superconducting accelerator module as a prototype of the main linac of a proposed ERL facility. This module houses 6 superconducting cavities- operated at 1.8 K in continuous wave (CW) mode - with individual HOM absorbers and one magnet/ BPM section. In pushing the limits, a high quality factor of the cavities (2•1010) and high beam currents (100 mA accelerated plus 100 mA decelerated) were targeted. We will review the design shortly and present the results of the components tested before the assembly. This includes data of the quality-factors of all 6 cavities that we produced and treated in-house, the HOM absorber performance measured with beam on a test set-up as well as testing of the couplers and the tuners.  
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