Potential Energy Surfaces for Nucleon Exchanging in Dinuclear Systems

  • The experimental measurements have provided the evidence that the suppression of fusion cross-section caused by quasi-fission is very important for the synthesis of super-heavy nuclei by heavy ion collisions. The potential energy surface due to the nucleon transfer in the collision process is the driven potential, which governs the nucleon transfer, so that governs the competition between the fusion and quasi-fission. The dinuclear system potential energy surface also gives the information about the optimum projectile-target combination, as well as the optimum excitation energy for the synthesis of super-heavy nuclei by heavy ion collisions.
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LI Jian-Feng, XU Hu-Shan, LI Wen-Fei, ZUO Wei, LI Jun-Qing, WANG Nan and ZHAO En-Guang. Potential Energy Surfaces for Nucleon Exchanging in Dinuclear Systems[J]. Chinese Physics C, 2003, 27(1): 48-52.
LI Jian-Feng, XU Hu-Shan, LI Wen-Fei, ZUO Wei, LI Jun-Qing, WANG Nan and ZHAO En-Guang. Potential Energy Surfaces for Nucleon Exchanging in Dinuclear Systems[J]. Chinese Physics C, 2003, 27(1): 48-52. shu
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Received: 2002-01-22
Revised: 1900-01-01
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Potential Energy Surfaces for Nucleon Exchanging in Dinuclear Systems

    Corresponding author: LI Jian-Feng,
  • Center of Theoretical Nuclear Physics, National Laboratory of Heavy Ion Accelerator, Lanzhou 730000, China2 Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou 730000, China3 Institute of Theoretical Physics,Chinese Academy of Sciences,Beijing 100080,China

Abstract: The experimental measurements have provided the evidence that the suppression of fusion cross-section caused by quasi-fission is very important for the synthesis of super-heavy nuclei by heavy ion collisions. The potential energy surface due to the nucleon transfer in the collision process is the driven potential, which governs the nucleon transfer, so that governs the competition between the fusion and quasi-fission. The dinuclear system potential energy surface also gives the information about the optimum projectile-target combination, as well as the optimum excitation energy for the synthesis of super-heavy nuclei by heavy ion collisions.

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