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Elastic scattering and breakup of Be 11 on deuterons at 26.9A MeV

  • J. Chen
  • , J. L. Lou
  • , Y. L. Ye
  • , J. Rangel
  • , A. M. Moro
  • , D. Y. Pang
  • , Z. H. Li
  • , Y. C. Ge
  • , Q. T. Li
  • , J. Li
  • , W. Jiang
  • , Y. L. Sun
  • , H. L. Zang
  • , Y. Zhang
  • , N. Aoi
  • , E. Ideguchi
  • , H. J. Ong
  • , J. Lee
  • , J. Wu
  • , H. N. Liu
  • C. Wen, Y. Ayyad, K. Hatanaka, T. D. Tran, T. Yamamoto, M. Tanaka, T. Suzuki, T. T. Nguyen
  • Peking University
  • Universidade Federal Fluminense
  • University of Seville
  • The University of Osaka
  • RIKEN

Research output: Contribution to journalArticlepeer-review

Abstract

The elastic scattering and breakup reactions of the halo nucleus Be11 on deuterons at an incident energy of 26.9A MeV are reported for the first time. Special attention has been paid to the determination and subtraction of the proton contaminations in the deuterated polyethylene (CD2)n target (where D2 denotes H22). The cross sections for elastic scattering are analyzed with the systematic optical potentials of Daehnick et al. and DA1p, as well as with single-folding potentials, derived from the Jeukenne-Lejeune-Mahaux effective nucleon-nucleon interaction. An extended version of the continuum-discretized coupled-channels (XCDCC) formalism, including dynamic core excitation (DCX) effects, is applied to analyze the elastic scattering and breakup data. Comparisons of the full XCDCC calculation with that omitting DCX effects indicate that the core excitation plays a remarkable role in reproducing breakup reactions of Be11+d.

Original languageEnglish
Article number064620
JournalPhysical Review C
Volume94
Issue number6
DOIs
StatePublished - 30 Dec 2016

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