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Octupole deformation for Ba isotopes in a reflection-asymmetric relativistic mean-field approach

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【作者】 张炜李志攀张双全

【Author】 ZHANG Wei1,2 LI Zhi-Pan2 ZHANG Shuang-Quan2;1) 1 School of Electrical Engineering and Automation, He’nan Polytechnic University, Jiaozuo 454003, China 2 State Key Laboratory of Nuclear Physics and Technology, School of Physics, Peking University, Beijing 100871, China

【机构】 School of Electrical Engineering and Automation,He’nan Polytechnic UniversityState Key Laboratory of Nuclear Physics and Technology,School of Physics,Peking University

【摘要】 The potential energy surfaces of even-even 142-156Ba are investigated in the constrained reflectionasymmetric relativistic mean-field approach with parameter set PK1. It is shown that for the ground states, 142Ba is near spherical,156Ba well quadrupole-deformed, and in between 144-154Ba octupole deformed. In particular, the nuclei 148,150Ba with N=92, 94 have the largest octupole deformations. By including the octupole degree of freedom, energy gaps N = 88, N = 94 and Z = 56 near Fermi surfaces for the singleparticle levels in 148Ba with β2 ~ 0.26 and β3 ~ 0.17 are found. Furthermore, the performance of the octupole deformation driving pairs (ν2f7/2, ν1i13/2) and (π2d5/2, π1h11/2) is demonstrated by analyzing the singleparticle levels near Fermi surfaces in 148Ba.

【Abstract】 The potential energy surfaces of even-even 142–156Ba are investigated in the constrained reflectionasymmetric relativistic mean-field approach with parameter set PK1. It is shown that for the ground states, 142Ba is near spherical,156Ba well quadrupole-deformed, and in between 144–154Ba octupole deformed. In particular, the nuclei 148,150Ba with N=92, 94 have the largest octupole deformations. By including the octupole degree of freedom, energy gaps N = 88, N = 94 and Z = 56 near Fermi surfaces for the singleparticle levels in 148Ba with β2 ~ 0.26 and β3 ~ 0.17 are found. Furthermore, the performance of the octupole deformation driving pairs (ν2f7/2, ν1i13/2) and (π2d5/2, π1h11/2) is demonstrated by analyzing the singleparticle levels near Fermi surfaces in 148Ba.

【基金】 Supported by Foundation of He’nan Educational Committee (200614003);Young Backbone Teacher Support Program of He’nan Polytechnic University,China Postdoctoral Science Foundation,Major State Basic Research Developing Program(2007CB815000);National Natural Science Foundation of China (10775004,10975007,10975008)
  • 【文献出处】 中国物理C ,Chinese Physics C , 编辑部邮箱 ,2010年08期
  • 【分类号】O571
  • 【下载频次】21
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