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Status of the RAON heavy-ion accelerator

  • Y. S. Chung,
  • J. Kang,
  • M. Kwon,
  • E. Kwon,
  • J. W. Kwon,
  • G. D. Kim,
  • D. G. Kim,
  • M. S. Kim,
  • S. Kim,
  • Y. Kim,
  • Y. H. Kim,
  • Y. Kim,
  • J. W. Kim,
  • J. Kim,
  • H. Kim,
  • H. J. Kim,
  • H. Kim,
  • H. Do,
  • M. J. Park,
  • B. S. Park,
  • I. Park,
  • H. Park,
  • S. Y. Bae,
  • B. Y. Baek,
  • C. S. Seo,
  • K. T. Seol,
  • K. T. Son,
  • C. Son,
  • H. J. Son,
  • J. H. Shin,
  • Y. Ahn,
  • K. S. Yang,
  • H. J. Woo,
  • J. H. Yoo,
  • J. Yoon,
  • D. Y. Lee,
  • M. K. Lee,
  • S. -. G. Lee,
  • Y. H. Lee,
  • J. W. Lee,
  • J. Lee,
  • E. H. Lim,
  • J. H. Jang,
  • H. M. Jang,
  • H. Jang,
  • D. Jeon,
  • S. Jeon,
  • Y. Jung,
  • H. C. Jung,
  • K. H. Jo,
  • H. C. Jo,
  • Y. W. Jo,
  • J. H. Cho,
  • J. D. Joo,
  • H. Jin,
  • S. Choi,
  • O. Choi,
  • Y. J. Choi,
  • J. W. Choi,
  • C. J. Choi,
  • J. Han,
  • J. I. Heo,
  • M. O. Hyun,
  • I. S. Hong,
  • T. Ki,
  • D. M. Kim,
  • S. Moon,
  • S. Yoon,
  • S. Lee,
  • H. S. Choi

摘要

The Rare Isotope Accelerator Complex for ON-line experiments (RAON) is an accelerator facility capable of generating and accelerating both stable and unstable heavy ions for various scientific research on rare isotopes. The facility can produce a variety of rare isotope beams using both the in-flight fragmentation and the isotope separation on-line methods. A unique feature of the RAON is its ability to produce very exotic rare isotope beams by combining the isotope separation on-line and the in-flight fragmentation methods. The in-flight fragmentation system is driven by a superconducting linear accelerator to accelerate heavy ions, while the isotope separation on-line system is driven by a 70-MeV proton cyclotron. The ultimate goal of the RAON is to accelerate various ion beams, ranging from protons to uranium, up to a beam power of 400 kW. After an 11-year construction project, which started in December 2011, the first beam extraction from the low-energy superconducting linear accelerator was achieved in May 2023. In this review, we describe the current status of the RAON heavy-ion accelerator, including the results of the initial beam commissioning of the low-energy linear accelerator.