In the framework of the Compact Light XLS project [1], a Ka-band linearizer with electric field ranging from 100 to 150 MV/m is requested [2, 3, 4]. In order to feed this structure, a proper Ka-band high power klystron amplifier with a high efficiency is needed. This paper reports a possible solution for a klystron amplifier operating on the TM010 mode at 36 GHz, the third harmonic of the 12 GHz linac frequency, with an efficiency of 44% and 10.6 MW radiofrequency output power. We discuss also here the high-power DC gun with the related magnetic focusing system, the RF beam dynamics and finally the multiphysics analysis of a high- power microwave window for a Ka-band klystron providing 16 MW of peak power. © 2023 Institute of Physics Publishing. All rights reserved.
Studies of a Ka-band high power klystron amplifier at INFN-LNF / Behtouei, M; Spataro, B.; Faillace, L.; Leggieri, A.; Di Paolo, F.; Marrese, F.; Valletti, L.; Fantauzzi, S.; Torrisi, G.; Carillo, M.; Bosco, F.; Mostacci, A.; Palumbo, L.; Migliorati, M.. - In: JOURNAL OF PHYSICS. CONFERENCE SERIES. - ISSN 1742-6588. - (2023). (Intervento presentato al convegno International Particle Accelerator Conference 2022 tenutosi a Bangkok, Thailand) [10.1088/1742-6596/2420/1/012031].
Studies of a Ka-band high power klystron amplifier at INFN-LNF
M Behtouei;B. Spataro;L. Faillace;G. Torrisi;M. carillo;F. Bosco;A. Mostacci;L. palumbo;M. migliorati
2023
Abstract
In the framework of the Compact Light XLS project [1], a Ka-band linearizer with electric field ranging from 100 to 150 MV/m is requested [2, 3, 4]. In order to feed this structure, a proper Ka-band high power klystron amplifier with a high efficiency is needed. This paper reports a possible solution for a klystron amplifier operating on the TM010 mode at 36 GHz, the third harmonic of the 12 GHz linac frequency, with an efficiency of 44% and 10.6 MW radiofrequency output power. We discuss also here the high-power DC gun with the related magnetic focusing system, the RF beam dynamics and finally the multiphysics analysis of a high- power microwave window for a Ka-band klystron providing 16 MW of peak power. © 2023 Institute of Physics Publishing. All rights reserved.File | Dimensione | Formato | |
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