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Effects of the entrance channel mass asymmetry in fusion reactions

Effects of the entrance channel mass asymmetry in fusion reactions
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摘要 The symmetric and asymmetric fusion reaction systems forming the same compound nuclei ^26Al, ^30Si, ^38Ar and ^170Hf are investigated with the frame of improved isospin dependent quantum molecular dynamics model. The entrance channel mass asymmetry dependence of compound nucleus formation is found by analyzing the shell correction energies, the Coulomb barriers and the fusion cross sections. The calculated fusion cross sections agree quantitatively with the experimental data. The results indicate that compound nucleus formation is favorable for the systems with larger mass asymmetry because of the smaller Coulomb contribution to the fusion barrier. The symmetric and asymmetric fusion reaction systems forming the same compound nuclei ^26Al, ^30Si, ^38Ar and ^170Hf are investigated with the frame of improved isospin dependent quantum molecular dynamics model. The entrance channel mass asymmetry dependence of compound nucleus formation is found by analyzing the shell correction energies, the Coulomb barriers and the fusion cross sections. The calculated fusion cross sections agree quantitatively with the experimental data. The results indicate that compound nucleus formation is favorable for the systems with larger mass asymmetry because of the smaller Coulomb contribution to the fusion barrier.
出处 《Chinese Physics C》 SCIE CAS CSCD 2010年第10期1602-1608,共7页 中国物理C(英文版)
基金 Supported by National Natural Science Foundation of China (10847136) Fundamental Research Funds for the Central Universities (JUSRP10911) National Program on Key Basic Research Project (G2010CB832903) Specialized Research Fund for the Doctoral Programme of Higher Education of China (200800270017)
关键词 fusion reactions mass asymmetry Coulomb barrier fusion reactions, mass asymmetry, Coulomb barrier
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