DocumentCode
1422478
Title
Experimental verification of laser photocathode RF gun as an injector for a laser plasma accelerator
Author
Uesaka, Mitsuru ; Kinoshita, Kenichi ; Watanabe, Takahiro ; Sugahara, Jun ; Ueda, Toru ; Yoshii, Koji ; Kobayashi, Tetsuya ; Hafz, Nasr ; Nakajima, Kazuhisa ; Sakai, Fumio ; Kando, Masaki ; Dewa, Hideki ; Kotaki, Hideyuki ; Kondo, Shuji
Author_Institution
Nucl. Eng. Res. Lab., Tokyo Univ., Japan
Volume
28
Issue
4
fYear
2000
fDate
8/1/2000 12:00:00 AM
Firstpage
1133
Lastpage
1142
Abstract
The feasibility of the laser photocathode RF gun, BNL/GUN-IV, as an injector for a laser plasma accelerator was investigated at the subpicosecond S-band twin linac system of the Nuclear Engineering Research Laboratory, University of Tokyo. Electron beam energy of 16 MeV, emittance of 6π mm mrad, bunch length of 240 fs (FWHM), and charge per bunch of 350 pC were confirmed at 10 Hz. As for diagnosis of the femtosecond electron bunch, the quantitative comparison of performance of the femtosecond streak camera, the coherent transition radiation (CTR) Michelson interferometer, and the far-infrared polychromator was carried out. We concluded that the streak camera is the most reliable up to 200 fs and that the polychromator is the best for the shorter electron bunch. The 3.5-ps (rms) resolved synchronization between the YLF laser driver for the gun and the electron bunch was achieved. Based on the above experiences, we have designed and installed a much better laser-electron synchronization system using the Kerr-lens mode-locked Ti:Sapphire laser with the min harmonics synchrolocker and the stable 15-MW klystron. The timing jitter is expected to be suppressed down to 320 fs (rms)
Keywords
collective accelerators; electron guns; klystrons; particle beam bunching; photocathodes; plasma light propagation; plasma-beam interactions; 15 MW; BNL/GUN-IV; Kerr-lens mode-locked Ti:Sapphire laser; YLF laser driver; coherent transition radiation Michelson interferometer; electron bunch; far-infrared polychromator; harmonics synchrolocker; injector; klystron; laser photocathode RF gun; laser plasma accelerator; laser-electron synchronization; streak camera; subpicosecond S-band twin linac system; timing jitter; Cameras; Cathodes; Electron beams; Laboratories; Laser mode locking; Laser stability; Linear particle accelerator; Plasma accelerators; Power engineering and energy; Radio frequency;
fLanguage
English
Journal_Title
Plasma Science, IEEE Transactions on
Publisher
ieee
ISSN
0093-3813
Type
jour
DOI
10.1109/27.893293
Filename
893293
Link To Document