CERN Accelerating science

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1.
Exploratory Study on High-Efficiency High-Power W-Band Klystron Based on Kladistron Technology / Cai, J C (UESTC, Chengdu) ; Su, Z X (UESTC, Chengdu) ; Peauger, F (CERN) ; Xu, J (UESTC, Chengdu) ; Burt, G (Lancaster U. (main)) ; Yue, L N (UESTC, Chengdu) ; Yin, H R (UESTC, Chengdu) ; Zhao, G Q (UESTC, Chengdu) ; Xiang, W W (UESTC, Chengdu) ; Wei, Y Y (UESTC, Chengdu)
To achieve tens of kilowatt (kW) output power, ${W}$ -band klystron usually employs a large beam tunnel to accommodate high current. The deteriorated effective impedance of the cavity could be reenhanced by adopting extended interaction (EI) cavities. [...]
2023 - 6 p. - Published in : IEEE Trans. Plasma Sci. 51 (2023) 386-391
2.
Modeling of Coupled Cell Output Structures for the Klystrons / Cai, J C (CERN) ; Syratchev, I (CERN)
High-frequency, high-power klystrons proved to be significant for application in compact particle accelerators, high-resolution radars, and fast data communication systems. As most of the linear beam devices, the performance of the klystron deteriorates progressively with an increasing operating frequency due to the reduction of individual RF cavity impedances. [...]
2019 - 6 p. - Published in : IEEE Trans. Electron Devices 66 (2019) 4964-4969
3.
Design Study of a High-Power Ka-Band High-Order-Mode Multibeam Klystron / Cai, J C (Lancaster U. (main)) ; Syratchev, I (CERN) ; Burt, G (Lancaster U. (main))
Compactness and cost-effectiveness are two major concerns in the development of a Ka-band linearizer, which is a crucial accelerator component of the European CompactLight project. A higher order mode (HOM) multibeam Klystron (MBK) could accommodate a higher distributed electron current with a low operating voltage of 60 kV, thus making it competitive to deliver high RF power at high frequency compared with a single beam Klystron or a fundamental mode MBK. [...]
2020 - 7 p. - Published in : IEEE Trans. Electron Devices 67 (2020) 5736-5742
4.
Development of the 3MeV RFQ for the Compact Pulsed Hadron Source at Tsinghua University / Xing, Q Z (Beijing U. of Tech.) ; Bai, Y J (Beijing U. of Tech.) ; Cai, J C (Beijing U. of Tech.) ; Guan, X (Beijing U. of Tech.) ; Wang, X W (Beijing U. of Tech.) ; Wei, J (Beijing U. of Tech.) ; Xiong, Z F (Beijing U. of Tech.) ; Zhang, H Y (Beijing U. of Tech.) ; Billen, J H (Los Alamos) ; Young, L M (Los Alamos) et al.
We pre­sent, in this paper, the physics and me­chan­i­cal de­sign of a Radio Fre­quen­cy Quadrupole (RFQ) ac­cel­er­a­tor for the Com­pact Pulsed Hadron Source (CPHS) at Ts­inghua Uni­ver­si­ty. The 3-me­ter-long RFQ will ac­cel­er­ate pro­tons from 50 keV to 3 MeV at an RF fre­quen­cy of 325 MHz. [...]
2010 Published version from LINAC10: PDF;
In : 25th Linear Accelerator Conference, Tsukuba, Japan, 12 - 17 Sep 2010, pp.TUP046

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