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Comparative study of nuclear masses in the relativistic mean-field model

  • Xuemin Hua
  • , Taihua Heng
  • , Zhongming Niu*
  • , Baohua Sun
  • , Jianyou Guo
  • *Corresponding author for this work
  • Anhui University

Research output: Contribution to journalArticlepeer-review

Abstract

With experimental masses updated from AME11, the predictive power of relativistic mean-field (RMF) mass model is carefully examined and compared with HFB-17, FRDM, WS*, and DZ28 mass models. In the relativistic mean-field model, the calculation with the PC-PK1 has improved significantly in describing masses compared to the TMA, especially for the neutron-deficient nuclei. The corresponding rms deviation with respect to the known masses falls to 1.4 MeV. Furthermore, it is found that the RMF mass model better describes the nuclei with large deformations. The rms deviation for nuclei with the absolute value of quadrupole deformation parameter greater than 0.25 falls to 0.93, crossing the 1 MeV accuracy threshold for the PC-PK1, which may indicate the new model is more suitable for those largely-deformed nuclei. In addition, the necessity of new high-precision experimental data to evaluate and develop the nuclear mass models is emphasized as well.

Original languageEnglish
Pages (from-to)2414-2419
Number of pages6
JournalScience China: Physics, Mechanics and Astronomy
Volume55
Issue number12
DOIs
StatePublished - Dec 2012

Keywords

  • nuclear masses
  • relativistic mean-field model
  • rotational correction

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