Effect of N,Z Dependent Macroscopic Potential to cluster Formation in Quantum Molecular Dynamics

  • Based on the QMD model, in addition to the Skyrme-type, Yukawa and Coulomb interactions, a macroscopic potential, which is dependent on the neutron andproton number N,Z of the cluster and consists of the symmetrical energy of liquiddrop model and shell and pairing correction energies, has been taken into account.It improved the reasonable structure of the cluster formation in heavy ion reactionswith intermediate energy.
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  • [1] J.Aichelin,Phys.Rep,202(1991)235.[2]J.Aichelin,G.peilert,et al,Phys.Rev.C37(1988)2451.[3]G.Peilert,H.Stocker,et al,Phys,Rev.,C39(1989)1402.[4]H.Stocker,J.A.Maruhn and W.Greiner.,Phys.Rev.Lett.,44(1980)725.[5]W.D.Myers et al.,LBL-Report,UCKL-11980(1965).[6]朱全伶、葛凌霄、李祝霞,高能物理与核物理,16(1992)658.
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Li Junqing, Liu Jianye, Zhao Enguang and Zhu Quanling. Effect of N,Z Dependent Macroscopic Potential to cluster Formation in Quantum Molecular Dynamics[J]. Chinese Physics C, 1994, 18(4): 379-384.
Li Junqing, Liu Jianye, Zhao Enguang and Zhu Quanling. Effect of N,Z Dependent Macroscopic Potential to cluster Formation in Quantum Molecular Dynamics[J]. Chinese Physics C, 1994, 18(4): 379-384. shu
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Received: 1900-01-01
Revised: 1900-01-01
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Effect of N,Z Dependent Macroscopic Potential to cluster Formation in Quantum Molecular Dynamics

    Corresponding author: Li Junqing,
  • Institute of Modern Physics, Acqdemia Silica, Lanzhou 7300002 Institute of Theoretical Physics, Academia Silica, Benijing 100080

Abstract: Based on the QMD model, in addition to the Skyrme-type, Yukawa and Coulomb interactions, a macroscopic potential, which is dependent on the neutron andproton number N,Z of the cluster and consists of the symmetrical energy of liquiddrop model and shell and pairing correction energies, has been taken into account.It improved the reasonable structure of the cluster formation in heavy ion reactionswith intermediate energy.

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