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投影壳模型研究丰中子奇奇核102,104Nb的转动能谱
引用本文:董永胜,于少英,沈彩万,胡文搜,冯有良,王金宝.投影壳模型研究丰中子奇奇核102,104Nb的转动能谱[J].原子核物理评论,2012,29(3):235-237.
作者姓名:董永胜  于少英  沈彩万  胡文搜  冯有良  王金宝
作者单位:1.集宁师范学院物理系, 内蒙古 集宁 012000; 2.湖州师范学院理学院, 浙江 湖州 313000; 3.中国科学院理论物理研究所, 北京 100080; 4.兰州重离子加速器国家实验室原子核理论中心, 甘肃 兰州 730000
基金项目:内蒙古自治区高等学校科学研究重点项目,国家自然科学基金资助项目
摘    要:运用投影壳模型研究了正常形变丰中子核同位素102,104Nb的低能级能谱, 并指定了它的准粒子组态, 理论计算所得到的能谱曲线与实验给出的能谱曲线非常一致, 说明了投影壳模型对研究重核低能级谱非常有效。 The Projected Shell Model(PSM) is used to study the low energy scheme of the neutron rich normal deformed isotopes of odd odd nuclei 102, 104Nb. The quasiparticle configuration is assigned. The theoretical calculations of the energy band of 102,104Nb could well reproduce the experimental data. It is shown that PSM is a valid method for studying the low energy scheme of heavy nuclei.

关 键 词:投影壳模型    转动谱    准粒子组态
收稿时间:1900-01-01

Study on Rotational Bands in Odd-odd Nuclei 102, l04Nb by Using PSM
DONG Yong-sheng,YU Shao-ying,SHEN Cai-wan,HU Wen-tao,FENG You-liang,WANG Jin-bao.Study on Rotational Bands in Odd-odd Nuclei 102, l04Nb by Using PSM[J].Nuclear Physics Review,2012,29(3):235-237.
Authors:DONG Yong-sheng  YU Shao-ying  SHEN Cai-wan  HU Wen-tao  FENG You-liang  WANG Jin-bao
Institution:1.(1.Department of Physics, Jining Teachers College, Jining 012000, Inner Mongolia, China; 2.School of Science, Huzhou Teachers College, Huzhou 313000, Zhejiang, China; 3.Institute of Theoretical Physics, Chinese Academy of Sciences, Beijing 100080, China; 4.Center of Theoretical Nuclear Physics, National Laboratory of Heavy Ion Research Facility in Lanzhou, Lanzhou 730000, China)〖JZ)〗
Abstract:The Projected Shell Model(PSM) is used to study the low energy scheme of the neutron-rich normal-deformed isotopes of odd-odd nuclei 102,104Nb.The quasiparticle configuration is assigned.The theoretical calculations of the energy band of 102,104Nb could well reproduce the experimental data.It is shown that PSM is a valid method for studying the low energy scheme of heavy nuclei.
Keywords:projected shell model quasiparticle configuration rotational band
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