Design study of an S-band RF cavity of a dual-energy electron LINAC for the CIS

The design of a resonance frequency (RF) cavity for the dual-energy S-band electron linear accelerator (LINAC) has been carried out for the cargo inspection system (CIS). This Standing-wave-type RF cavity is operated at a frequency under the 2856-MHz resonance frequency and generates electron beams...

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Veröffentlicht in:Journal of the Korean Physical Society 2014, 64(2), , pp.205-211
Hauptverfasser: Lee, Byeong-No, Park, Hyungdal, Song, Ki-baek, Li, Yonggui, Lee, Byung Cheol, Cha, Sung-su, Lee, Jong-Chul, Shin, Seung-Wook, Chai, Jong-seo
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Sprache:eng
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Zusammenfassung:The design of a resonance frequency (RF) cavity for the dual-energy S-band electron linear accelerator (LINAC) has been carried out for the cargo inspection system (CIS). This Standing-wave-type RF cavity is operated at a frequency under the 2856-MHz resonance frequency and generates electron beams of 9 MeV (high mode) and 6 MeV (low mode). The electrons are accelerated from the initial energy of the electron gun to the target energy (9 or 6 MeV) inside the RF cavity by using the RF power transmitted from a 5.5-MW-class klystron. Then, electron beams with a 1-kW average power (both high mode and low mode) bombard an X-ray target a 2-mm spot size. The proposed accelerating gradient was 13 MV/m, and the designed Q value was about 7100. On going research on 15-MeV non-destructive inspections for military or other applications is presented.
ISSN:0374-4884
1976-8524
DOI:10.3938/jkps.64.205