Design of the RAON accelerator systems
作者:Dong-O Jeon, In-Seok Hong, H. J. Kim, Jong-Won Kim, Ryan Bodenstein, H. J., Sukjin Choi, Sukjin Choi, Oh Ryong Choi, H. Do, B. Choi, Chul-Jin Choi, Jeongsu Han, Wenjie Han, Myung Ook Hyun, Hyun-Kurl Jang, Jongdae Joo, Minjae Joung, Hyojun Jung, Yeonsung Jung, D. G. Kim, Eunhee Kim, H. Kim, H. J. Kim, Jeong Han Kim, J. Y. Kim, Wonvin Kim, Yu-Seok Kim, Yu-Seok Kim, Mi Jung Kim, M. J. Kim, Jeong Han Lee, Kyung Won Lee, M. K. Lee, Geon Park, Sae Hee Ryu, I. Shin, Jeong Hoon Shin, Jeongseog Song, Subin Yoon, K. -H. Yi, C. C. Yun, Aziz Zaghloul, S. K. Kim, S. Matlabjon, G. S. Park, Jungbae Bahng, Ji-Gwang Hwang, S.-W. Jang, E. S. Kim · 发表于:Journal of the Korean Physical Society · 年份:2014 · DOI:10.3938/jkps.65.1010 · 被引用次数:119 · 研究领域:Particle accelerators and beam dynamics、Muon and positron interactions and applications、Superconducting Materials and Applications
The RAON is the name of the heavy ion accelerator facility under construction in Korea that includes the In-flight Fragment (IF) and Isotope Separation On-Line (ISOL) facilities to support cutting-edge research in various science fields. The superconducting linac is the driver for the IF facility that can accelerate beams from proton to uranium with 200 MeV/u, 400 kW (for uranium beam). A 70-MeV, 1-mA H − cyclotron is the driver for the ISOL facility and is followed by a post-accelerator consisting of s superconducting linac that can accelerate rare-isotope (RI) beams and deliver them to experimental halls. These facilities provide high-intensity stable ion and rare isotope (RI) beams for domestic and international users. In this paper, design and prototyping efforts for the RAON accelerator systems are presented.