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Beam production of 18Ne with in-flight method for alpha scattering at CRIB

  • N. N. Duy
  • , K. Y. Chae*
  • , S. M. Cha
  • , H. Yamaguchi
  • , K. Abe
  • , S. H. Bae
  • , D. N. Binh
  • , S. H. Choi
  • , K. I. Hahn
  • , S. Hayakawa
  • , B. Hong
  • , N. Iwasa
  • , D. Kahl
  • , L. H. Khiem
  • , A. Kim
  • , D. H. Kim
  • , E. J. Kim
  • , G. W. Kim
  • , M. J. Kim
  • , K. Kwak
  • M. S. Kwag, E. J. Lee, S. I. Lim, B. Moon, J. Y. Moon, S. Y. Park, V. H. Phong, H. Shimizu, L. Yang, Z. Ge, T. V.Nhan Hao
*Corresponding author for this work
  • Sungkyunkwan University
  • The University of Tokyo
  • Seoul National University
  • Tran Hung Dao Hospital
  • Ewha Womans University
  • Korea University
  • Tohoku University
  • University of Edinburgh
  • Vietnamese Academy of Science and Technology
  • Ulsan National Institute of Science and Technology
  • Institute for Basic Science
  • RIKEN
  • Duy Tan University
  • Hue University

Research output: Contribution to journalJournal articlepeer-review

Abstract

We conducted a measurement of 18Ne + α scattering in inverse kinematics, in order to search for experimental evidence of α-cluster structure in 22Mg above the alpha threshold (Ethr=8.14MeV) and determine the astrophysical rates of the 18Ne(α p)21Na reaction under the conditions of break-out from the Hot-CNO cycle. A high intensity 18Ne beam at 2.54 AMeV was successfully produced at CRIB (CNS Radioactive Ion Beam separator) of the Center for Nuclear Study, the University of Tokyo. This paper presents the in-flight production of the radioactive 18Ne beam by using the production reaction 3He(16O, 18Ne)n with a windowed cryogenic gas target, which was employed in the mentioned resonant α-scattering experiment.

Keywords

  • Alpha cluster
  • Alpha scattering
  • Inverse kinematics
  • RI beam production

Quacquarelli Symonds(QS) Subject Topics

  • Physics & Astronomy

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