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Mass predictions of the relativistic continuum Hartree-Bogoliubov model with radial basis function approach 被引量:1

Mass predictions of the relativistic continuum Hartree-Bogoliubov model with radial basis function approach
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摘要 The radial basis function(RBF) approach is a powerful tool to improve nuclear mass predictions. By combining the RBF approach with the latest relativistic continuum Hartree-Bogoliubov(RCHB) model, the local systematic deviations between the RCHB mass predictions and the experimental data are eliminated, and the root-meansquare(rms) mass deviation is significantly reduced from 7.923 MeV to 0.386 MeV. However, systematic deviations between the RBF improved mass predictions and the experimental data remain for nuclei with four different odd-even parities, i.e.(even Z, even N),(even Z, odd N),(odd Z, even N), and(odd Z, odd N). They can be reduced by separately training RBF for the four groups of nuclei, and the resulting rms deviation decreases to 0.229 MeV. It is found that the RBF approach can describe the deformation effects neglected in the present RCHB mass calculations, and also improves the description of the shell effect and the pairing effect. The radial basis function(RBF) approach is a powerful tool to improve nuclear mass predictions. By combining the RBF approach with the latest relativistic continuum Hartree-Bogoliubov(RCHB) model, the local systematic deviations between the RCHB mass predictions and the experimental data are eliminated, and the root-meansquare(rms) mass deviation is significantly reduced from 7.923 MeV to 0.386 MeV. However, systematic deviations between the RBF improved mass predictions and the experimental data remain for nuclei with four different odd-even parities, i.e.(even Z, even N),(even Z, odd N),(odd Z, even N), and(odd Z, odd N). They can be reduced by separately training RBF for the four groups of nuclei, and the resulting rms deviation decreases to 0.229 MeV. It is found that the RBF approach can describe the deformation effects neglected in the present RCHB mass calculations, and also improves the description of the shell effect and the pairing effect.
作者 Min Shi Zhong-Ming Niu Hao-Zhao Liang 仕敏;牛中明;梁豪兆(School of Mathematics and Physics,Anhui Jianzhu University,Hefei 230601,China;School of Physics and Materials Science,Anhui University,Hefei 230601,China;Institute of Physical Science and Information Technology,Anhui University,Hefei 230601,China;RIKEN Nishina Center,Wako 351-0198,Japan;Department of Physics,Graduate School of Science,The University of Tokyo,Tokyo 113-0033,Japan)
出处 《Chinese Physics C》 SCIE CAS CSCD 2019年第7期53-60,共8页 中国物理C(英文版)
基金 Supported by the National Natural Science Foundation of China(11805004,11875070 and 11711540016) the Natural Science Foundation of Anhui Province(1708085QA10) the Key Research Foundation of Education Ministry of Anhui Province(KJ2016A026 and SK2018A0577) the Doctor Foundation of Anhui Jianzhu University 2017(2017QD18) the Open fund for Discipline Construction,Institute of Physical Science and Information Technology,Anhui University
关键词 nuclear MASSES RADIAL basis function APPROACH RELATIVISTIC CONTINUUM Hartree-Bogoliubov MODEL nuclear masses radial basis function approach relativistic continuum Hartree-Bogoliubov model
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