4.4 Article

Multinucleon transfer reaction from view point of dynamical dinuclear system method

出版社

IOP PUBLISHING LTD
DOI: 10.1088/1361-6471/ab8dcc

关键词

mass distribution; multinucleon transfer reaction; master equation; heavy ion collisions

资金

  1. National Key R&D Program of China [2018YFA0404404]
  2. National Natural Science Foundation of China [11635015, 11805120, 11635003, 11805280, 11811530071, U1867212, U1732145]
  3. Continuous Basic Scientific Research Project [WDJC-2019-13]
  4. Russian Foundation for Basic Research [17-52-12015]

向作者/读者索取更多资源

The dinuclear system (DNS) model has been widely used to explain different heavy-ion reactions such as fusion, quasifission and fission. In previous studies, the DNS is treated as a localN/Zequilibrium system formed after the capture process in the final stage of the reaction. In this work, we generalize the DNS concept to describe the multi-nucleon transfer (MNT) reaction in the dynamical radial process. By treating the ensemble of projectile and target at any distance as the dinuclear system, we solve the semi-classical dynamical radial equation and the master equation for the proton and neutron distributions in the dinuclear system (DyDNS) simultaneously for the first time. In this method, the classical radial movement is coupled to the internal quantum single particle transition between the colliding nuclei. The dynamical Monte Carlo method is engaged to simulate the solutions, and then the GEMINI++ model is adopted to deal with the de-excitations. To illustrate the validity of our approach, the MNT reaction(136)Xe +Pb-208 has been re-examined. The obtained results demonstrate a better agreement with the available experimental data than the calculations of the GRAZING model, especially for the transfer of many nucleons.

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