Generation of high-energy electron beams from a plasma with a downward density transition

  • Suk, H.; 
  • Kim, G.H.; 
  • Kim, J.U.; 
  • Hahn, S.J.; 
  • Kim, C.; 
  • 외 2명
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초록

A short intense laser beam or an electron beam generates a wake wave when it propagates in a plasma, and the wake wave produces an ultrastrong electric field (> 1GV/m). When such a wake field passes a sharply-downward density transition, a significant amount of background plasma electrons can be trapped and accelerated to a high energy by the wake field. According to particle-in-cell simulations, the quality of the trapped particles is fairly good for most applications. This kind of self-trapping-based internal injection scheme may be able to provide a new way to develop next generation table-top high-energy accelerators. In this paper, some detailed 2-dimensional simulation results are presented, and the planned experiments at the Center for Advanced Accelerators are introduced.

키워드

electron beam; plasma; wake field; acceleration; ACCELERATOR; LASER
제목
Generation of high-energy electron beams from a plasma with a downward density transition
저자
Suk, H.; Kim, G.H.; Kim, J.U.; Hahn, S.J.; Kim, C.; Kim, J.; Ko, I.S.
발행일
2002-02
유형
Article
저널명
Journal of the Korean Physical Society
권
40
호
2
페이지
232 ~ 236