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QMD模型的改进及其在低能重离子反应中的应用
引用本文:王宁,李祝霞,吴锡真. QMD模型的改进及其在低能重离子反应中的应用[J]. 原子核物理评论, 2004, 21(4): 374-378. DOI: 10.11804/NuclPhysRev.21.04.374
作者姓名:王宁  李祝霞  吴锡真
作者单位:1 兰州重离子加速器国家实验室原子核理论中心甘肃兰州7300002 中国科学院理论物理研究所; 北京00080 3 中国原子能科学研究院 北京 102413;
基金项目:国家自然科学基金资助项目(10347142,19975073,10175093,10175089),博士后自然科学基金资助项目~~
摘    要:丰中子核以及重核熔合机制的研究以及中能重离子碰撞中多重碎裂的研究都迫切需要一个统一的、自洽的微观动力学模型.经过对量子分子动力学模型进行根本的改进,发展了一个新的、适用于低能以及中能重离子反应的统一描述的微观动力学模型.改进的量子分子动力学(ImQMD)模型能够将整个熔合反应过程中的动力学效应、同位旋效应以及弹靶质量不对称效应等比较全面地、自洽地考虑进来,从而给熔合反应的研究提供了一个新的途径.ImQMD模型能够很好地再现一系列核的基态性质以及10多个熔合反应的激发函数(包括丰中子核熔合体系以及实验最新测量的132Sn+64Ni熔合体系).此外还运用该模型初步探索了重核熔合过程中复合体系的寿命与体系的入射能量、体系大小以及体系的中子质子比的依赖关系. We have developed a new microscopic dynamical model called improved quantum molecular dynamical model (ImQMD). This model can describe the fusion process at energies near the Coulomb barrier as well as the multifragmentation process at intermediate energies in heavy-ion collision (HIC) uniformly. By using this model, fusion cross sections (including some of neutron-rich nuclei reactions and that of newly measured~(132)Sn+~(64)Ni fusion reaction) of tens reactions can be reproduced remarkably well. In fusi...

关 键 词:改进的量子分子动力学模型   丰中子核   重核   熔合截面   复合体系寿命
文章编号:1007-4627(2004)04-0374-05
收稿时间:1900-01-01
修稿时间:2004-08-16

Development of Quantum Molecular Dynamics Model and Its Application to Heavy-ion Reactions near Barrier
WANG Ning. Development of Quantum Molecular Dynamics Model and Its Application to Heavy-ion Reactions near Barrier[J]. Nuclear Physics Review, 2004, 21(4): 374-378. DOI: 10.11804/NuclPhysRev.21.04.374
Authors:WANG Ning
Affiliation:(1 Center of Theoretical Nuclear Physics; National Laboratory of Heavy Ion Accelerator of Lanzhou; Lanzhou 730000; China; 2 Institute of Theoretical Physics; Chinese Academy of Sciences; Beijing100080; 3 China Institute of Atomic Energy; Beijing 102413; China);
Abstract:We have developed a new microscopic dynamical model called improved quantum molecular dynamical model (ImQMD). This model can describe the fusion process at energies near the Coulomb barrier as well as the multifragmentation process at intermediate energies in heavy-ion collision (HIC) uniformly. By using this model, fusion cross sections (including some of neutron-rich nuclei reactions and that of newly measured~(132)Sn+~(64)Ni fusion reaction) of tens reactions can be reproduced remarkably well. In fusion reaction, the dynamical effects, isospin effects and mass asymmetry effects etc. can be treated comprehensively and self-consistently in this model, which offers a new way to study fusion reaction and to explore the mechanism of synthesis of superheavy elements hopefully. In addition, the quasi-fission process in heavy nuclei fusion are studied preliminarily by this model. The dependence of lifetime of composite system on the incident energy, system size, and N/Z ratio of composite system are found.
Keywords:improved quantum molecular dynamical model  neutron-rich nuclei  massive nuclei  fusion cross section  lifetime of composite system
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