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推广的液滴模型及其应用
引用本文:张海飞,包小军,王佳眉,黄银,李君清,张鸿飞.推广的液滴模型及其应用[J].原子核物理评论,2013,30(3):241-259.
作者姓名:张海飞  包小军  王佳眉  黄银  李君清  张鸿飞
作者单位:兰州大学核科学与技术学院,甘肃 兰州730000;
摘    要:简单介绍了近年来在研究重核和超重核衰变性质及熔合反应方面取得的理论成果和面临的挑战,着重阐述推广的液滴模型(GLDM) 理论框架及其应用。基于原子核的质量数、质子数以及反应Q 值,GLDM考虑了质量和电荷的不对称性、形状演化、亲近势和温度等,很好地描述了重核和超重核的质子放射性、 衰变、重离子放射性、自发裂变的半衰期和重离子熔合反应截面,同时也研究了原子核的粒子(质子、 、重离子) 放射性与自发裂变的竞争。Recent theoretical achievements and challenges about the fusion and decay properties of heavy and superheavy nuclei are generally introduced. Especially, the Generalized Liquid Drop Model(GLDM) as well as its application are emphatically described. Based on the mass number, proton number and the reaction Q value, the GLDM has taken the mass and charge asymmetry, the shape evolution, the proximity potential, as well as the temperature of nucleus into account, well described the proton radioactivity, the decay, the heavy particle radioactivity, the half life of spontaneous fission of heavy nuclei and superheavy nuclei, and the cross-sections of heavy ion fusion. The competitions between the spontaneous fission and other decay modes such as proton and heavy particle radioactivity, the alpha decay, and so on are also studied.

关 键 词:重核和超重核    推广的液滴模型    粒子放射性    自发裂变    熔合反应
收稿时间:1900-01-01

Generalized Liquid Drop Model and Its Application
ZHANG Haifei,BAO Xiaojun,WANG Jiamei,HUANG Yin,LI Junqing,ZHANG Hongfei.Generalized Liquid Drop Model and Its Application[J].Nuclear Physics Review,2013,30(3):241-259.
Authors:ZHANG Haifei  BAO Xiaojun  WANG Jiamei  HUANG Yin  LI Junqing  ZHANG Hongfei
Institution:School of Nuclear Science and Technology, Lanzhou University, Lanzhou 730000, China ;
Abstract:Recent theoretical achievements and challenges about the fusion and decay properties of heavy and superheavy nuclei are generally introduced. Especially, the Generalized Liquid Drop Model(GLDM) as well as its application are emphatically described. Based on the mass number, proton number and the reaction Q value, the GLDM has taken the mass and charge asymmetry, the shape evolution, the proximity potential, as well as the temperature of nucleus into account, well described the proton radioactivity, the decay, the heavy particle radioactivity, the half life of spontaneous fission of heavy nuclei and superheavy nuclei, and the cross-sections of heavy ion fusion. The competitions between the spontaneous fission and other decay modes such as proton and heavy particle radioactivity, the alpha decay, and so on are also studied.
Keywords:
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