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SLAC Publication: SLAC-PUB-15736
SLAC Release Date: October 10, 2013
A Novel Design of a High Brightness Superconducting RF Photoinjector Gun Cavity
Marhauser, F.
Next generation electron facilities for research, medical and industrial applications are in need of electron sources that operate at high repetition rates of 1 MHz and beyond, with normalized beam emittances in the order of 1 pi mmmrad for bunch charges as high as 1 nC. We have started to optimize a novel high beam brightness superconducting RF (SRF) photoinjector gun cavity that may fulfill these requirements. The work has been funded in 2012 by the U.S. Department of Energy as part of its Sma... Show Full Abstract
Next generation electron facilities for research, medical and industrial applications are in need of electron sources that operate at high repetition rates of 1 MHz and beyond, with normalized beam emittances in the order of 1 pi mmmrad for bunch charges as high as 1 nC. We have started to optimize a novel high beam brightness superconducting RF (SRF) photoinjector gun cavity that may fulfill these requirements. The work has been funded in 2012 by the U.S. Department of Energy as part of its Small Business Innovation Research program. Show Partial Abstract
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  • Interest Categories: Accelerator Physics