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Effect of pairing correlations on nuclear low-energy structure: BCS and general Bogoliubov transformation

J. Xiang, Z. P. Li, J. M. Yao, W. H. Long, P. Ring, and J. Meng

Keywords

No keywords

Abstract

Low-lying nuclear states of Sm isotopes are studied in the framework of a collective Hamiltonian based on covariant energy density functional theory. Pairing correlations are treated by both BCS and Bogoliubov methods. It is found that the pairing correlations deduced from relativistic Hartree-Bogoliubov (RHB) calculations are generally stronger than those deduced by relativistic mean field plus BCS (RMF _s16 BCS) with the same pairing force. By simply renormalizing the pairing strength, the diagonal part of the pairing field is changed in such a way that the essential effects of the off-diagonal parts of the pairing field neglected in the RMF _s16 BCS calculations can be recovered, and consequently the low-energy structure is in a good agreement with the predictions of the RHB model.

Information

Published
2013 as article (english)
Phys. Rev. C, 88, 5 - page(s): 057301
Contact
Prof. Dr. Peter Ring
Type
theoretical work
Links
pdf
link.aps.org/doi/10.…
Related to the research area(s):
G
e-Print
1312.0431

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