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Final Report 200 MW L-Band Annular Beam Klystron for Accelerators
Author(s) -
Michael Read,
P. Ferguson,
L. Ives,
Liqun Song,
B.E. Carlsten,
M.V. Fazio
Publication year - 2009
Publication title -
osti oai (u.s. department of energy office of scientific and technical information)
Language(s) - English
Resource type - Reports
DOI - 10.2172/1011380
Subject(s) - klystron , microsecond , voltage , power (physics) , electrical engineering , physics , beam (structure) , electrical impedance , linear particle accelerator , materials science , optics , nuclear engineering , engineering , quantum mechanics
This program developed a 200 MW, 1.3 GHz, Annular Beam Klystron (ABK) for accelerator systems. An ABK provides lower impedance than a conventional klystron, making it possible to produce higher RF powers with lower voltages. With a higher power per unit, fewer klystrons would be required for a large accelerator. Lower voltage also simplifies and reduces the cost of the power supply system. Both features will significantly lower the cost of an RF system. This device operates at 475 kV. The klystron uses a magnetron injection gun producing 1100 A in one microsecond pulses. Power is extracted into fundamental rectangular waveguide through two output windows. The predicted gain is approximately 45 dB with estimated efficiency of 45%. The klystron was assembled, but no facility was available for testing. Consequently, no high power performance measurements are available. Because the assembled klystron is approximately 15 feet long, it was disassembled for storage. It can be reassembled should a use materialize

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