Center-of-mass correction and rotational correction in covariant density functional theory

  • Center-of-mass (c.m.) correction and rotational correction in even-even Ge isotopes are systematically investigated within the triaxially deformed relativistic Hartree-Bogoliubov model using the PC-PK1 force. The shell effect and deformation effect on the microscopic c.m. correction and rotational correction are discussed, and the importance of both corrections on reproducing the binding energy is demonstrated.
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LI Zhao-Xi and LI Zhi-Pan. Center-of-mass correction and rotational correction in covariant density functional theory[J]. Chinese Physics C, 2015, 39(11): 114101. doi: 10.1088/1674-1137/39/11/114101
LI Zhao-Xi and LI Zhi-Pan. Center-of-mass correction and rotational correction in covariant density functional theory[J]. Chinese Physics C, 2015, 39(11): 114101.  doi: 10.1088/1674-1137/39/11/114101 shu
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Received: 2015-03-18
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    Supported by Major State Basic Research Development (973) (201310635059), NSFC (11175002, 11105110, 11475140) and Research Fund for the Doctoral Program of Higher Education (20110001110087)

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Center-of-mass correction and rotational correction in covariant density functional theory

    Corresponding author: LI Zhi-Pan,
Fund Project:  Supported by Major State Basic Research Development (973) (201310635059), NSFC (11175002, 11105110, 11475140) and Research Fund for the Doctoral Program of Higher Education (20110001110087)

Abstract: Center-of-mass (c.m.) correction and rotational correction in even-even Ge isotopes are systematically investigated within the triaxially deformed relativistic Hartree-Bogoliubov model using the PC-PK1 force. The shell effect and deformation effect on the microscopic c.m. correction and rotational correction are discussed, and the importance of both corrections on reproducing the binding energy is demonstrated.

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