First Cryogenic Tests with Jlab's New Upgrade cavities [electronic resource]

Two types of 7-cell cavities have been developed for the upgrade of CEBAF to 12 GeV. The High Gradient type (HG) has been optimized with respect to the ratio of E{sub peak}/E{sub acc}. The Low Loss (LL) type has optimized shunt impedance and improved geometric factor. Each cavity type features four...

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Online Access: Online Access
Corporate Author: Thomas Jefferson National Accelerator Facility (U.S.) (Researcher)
Format: Government Document Electronic eBook
Language:English
Published: Washington, D.C. : Oak Ridge, Tenn. : United States. Department of Energy. Office of Energy Research ; distributed by the Office of Scientific and Technical Information, U.S. Department of Energy, 2004.
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Summary:Two types of 7-cell cavities have been developed for the upgrade of CEBAF to 12 GeV. The High Gradient type (HG) has been optimized with respect to the ratio of E{sub peak}/E{sub acc}. The Low Loss (LL) type has optimized shunt impedance and improved geometric factor. Each cavity type features four DESY-type coaxial Higher Order Mode (HOM) couplers and a waveguide input coupler. Design goals for these cavities have been set to E{sub acc} = 20 MV/m with an intrinsic Q{sub o} of 8 · 10⁹ at 2.05 K. A niobium prototype of each cavity has been fabricated at JLab and both cavities have been evaluated at cryogenic temperatures after appropriate surface treatment. In addition, pressure sensitivity as well as Lorentz force detuning were evaluated. The damping of approximately 20 HOMs has been measured to verify the room temperature data. Several single cell cavities were tested in addition to multi cell cavities. We present in this contribution a summary of tests performed on the prototypes of the proposed cavities.
Item Description:Published through SciTech Connect.
08/01/2004.
"jlab-acc-04-258"
" doe/er/40150-2833"
22nd International Linear Accelerator Conference (LINAC 2004), Lubeck (DE), 08/16/2004--08/20/2004.
Ganapati Rao Myneni; Genfa Wu; Jacek Sekutowicz; Gianluigi Ciovati; Peter Kneisel; Juergen Halbritter.
Physical Description:206.5 Kilobytes pages : digital, PDF file.