Print ISSN:1674-1056  |  Online ISSN:2058-3834  |  CN:11-5639/O4
  • Cite this article:

    Chen Jin-Gen, Cai Xiang-Zhou, Wang Ting-Tai, Ma Yu-Gang, Ren Zhong-Zhou, Fang De-Qing, Zhong Chen, Wei Yi-Bin, Guo Wei, Zhou Xing-Fei, Wang Kun, Ma Guo-Liang, Tian Wen-Dong, Chen Jin-Hui, Yan Ting-Zhi, Zuo Jia-Xu, Ma Chun-Wang, Shen Wen-Qing. Investigation on the deformation of Ne and Mg isotope chains within relativistic mean-field modelJ. Chin. Phys. B, 2005, 14(12): 2444-2450.
    Chen Jin-Gen, Cai Xiang-Zhou, Wang Ting-Tai, Ma Yu-Gang, Ren Zhong-Zhou, Fang De-Qing, Zhong Chen, Wei Yi-Bin, Guo Wei, Zhou Xing-Fei, Wang Kun, Ma Guo-Liang, Tian Wen-Dong, Chen Jin-Hui, Yan Ting-Zhi, Zuo Jia-Xu, Ma Chun-Wang, Shen Wen-Qing. Investigation on the deformation of Ne and Mg isotope chains within relativistic mean-field modelJ. Chin. Phys. B, 2005, 14(12): 2444-2450.
  • Investigation on the deformation of Ne and Mg isotope chains within relativistic mean-field model

    • Ne and Mg isotope chains are investigated based on constrained calculations in the framework of a deformed relativistic mean-field (RMF) model with the NL075 parameter set. The calculated quadrupole deformation and binding energy are compared with other theoretical results as well as the available experimental data. It shows that the calculated deformations of Ne and Mg with the NL075 are more accurate than those obtained with the NL-SH. It is predicted that ^19,29,32Ne and ^20,31Mg maybe have a triaxial deformation and ^25-28Ne and ^27-30Mg exhibit a shape coexistence probably. The closure effect of neutron number N = 8 for ^20Mg is predicted to be very weak.
    • Article Text

    • loading

    Catalog

      /

      DownLoad:  Full-Size Img  PowerPoint
      Return
      Return