Liang Junjun, Feng Guangyao, Pei Yuanji, et al. Conceptual design of independently tunable cells RF gun with external injecting structure[J]. High Power Laser and Particle Beams, 2012, 24: 197-201.
Citation:
Liang Junjun, Feng Guangyao, Pei Yuanji, et al. Conceptual design of independently tunable cells RF gun with external injecting structure[J]. High Power Laser and Particle Beams, 2012, 24: 197-201.
Liang Junjun, Feng Guangyao, Pei Yuanji, et al. Conceptual design of independently tunable cells RF gun with external injecting structure[J]. High Power Laser and Particle Beams, 2012, 24: 197-201.
Citation:
Liang Junjun, Feng Guangyao, Pei Yuanji, et al. Conceptual design of independently tunable cells RF gun with external injecting structure[J]. High Power Laser and Particle Beams, 2012, 24: 197-201.
To obtain the micro-pulse bunch with the order of hundred femtoseconds length and high repetition rate, the paper proposes the independently tunable cells (ITC) RF gun, which has a double-cell structure with the cells being power fed independently. By choosing appropriate feeding power and phase of the two cells, this ITC-RF gun can achieve bunches of excellent characteristics. Additionally, the application of -magnet and laser system can be avoided, which leads to more compact layout. An external injecting ITC-RF gun (DC-ITC-RF gun) structure is designed accordingly. The external injecting structure can increase beam current, decrease energy spread, and cancel the back-bombardment effect almost completely. By means of 1-D and 3-D beam dynamics calculation with different structure parameters, a group of RF parameters are obtained for better beam characteristics. Then the paper designs a pre-injector so that particles can be accelerated to 10 MeV. By choosing appropriate feeding power and incident particle phase for the pre-injector, the bunch length can be further compressed.