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Phys. Rev. C 66, 024321 (2002) [6 pages]

Effective Dirac Brueckner-Hartree-Fock method for asymmetric nuclear matter and finite nuclei

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Zhong-yu Ma* and Ling Liu
China Institute of Atomic Energy, Beijing 102413, China

Received 9 May 2002; published 23 August 2002

A new decomposition of the Dirac structure of nucleon self-energies in the Dirac Brueckner-Hartree-Fock (DBHF) approach is adopted to investigate the equation of state for asymmetric nuclear matter. The effective coupling constants of σ, ω,δ, and ρ mesons with a density dependence in the relativistic mean field approach are deduced by reproducing the nucleon self-energy resulting from the DBHF at each density for symmetric and asymmetric nuclear matter. With these couplings the properties of finite nuclei are investigated. The agreement of charge radii and binding energies of finite nuclei with the experimental data are improved simultaneously in comparison with the projection method. It seems that the properties of finite nuclei are sensitive to the scheme used for the DBHF self-energy extraction. We may conclude that the properties of the asymmetric nuclear matter and finite nuclei could be well described by the new decomposition approach of the G matrix.

© 2002 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevC.66.024321
DOI:
10.1103/PhysRevC.66.024321
PACS:
21.65.+f, 21.30.Fe, 21.10.-k, 21.60.-n

*Also at Center of Nuclear Theoretical Physics, National Laboratory of Heavy Ion Accelerator, Lanzhou 730000, China and China Institute of Theoretical Physics.