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Chen, Peng-Hui; Niu, Fei; Guo, Ya-Fei; Feng, Zhao-Qing, E-mail: fengzhq@scut.edu.cn2018
AbstractAbstract
[en] The mechanism of multinucleon transfer reactions has been investigated within the dinuclear system model, in which the sequential nucleon transfer is described by solving a set of microscopically derived master equations. The transfer dynamics in the reaction of near Coulomb barrier energies is thoroughly analyzed. It is found that the total kinetic energies of primary fragments are dissipated from the relative motion energy of two touching nuclei and exhibit a symmetric distribution along the fragment mass. The angular distribution of the projectile-like fragments moves forward with increasing beam energy. However, the target-like fragments exhibit an opposite trend. The shell effect is pronounced due to the fragment yields in multinucleon transfer reactions.
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IWND2018: International Workshop on Nuclear Dynamics in Heavy-Ion Reactions; Zhejiang (China); 10-14 Jun 2018; Copyright (c) 2018 China Science Publishing & Media Ltd. (Science Press), Shanghai Institute of Applied Physics, the Chinese Academy of Sciences, Chinese Nuclear Society and Springer Nature Singapore Pte Ltd.; Article Copyright (c) 2018 Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Chinese Nuclear Society, Science Press China and Springer Nature Singapore Pte Ltd.; Country of input: International Atomic Energy Agency (IAEA)
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Journal Article
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