Title of article
Neutron-rich 208Pb nucleus with delta excitation under compression
Author/Authors
ABU-SEI LEEK, Mohammed Hassen Eid Majmaah University - Faculty of Sciences - Department of Physics, Saudi Arabia
From page
253
To page
260
Abstract
Abstract:The spherical Hartree-Fock approximation is applied to a no-core shell model with a realistic effective baryon- baryon interaction. The ground state properties of a heavy spherical neutron-rich doubly magic 208 Pb nucleus under compression are investigated. It is found that the nucleus becomes more bound with the occurrence of Δ resonances. The creation of Δ increases as the compression is continuous. There is a considerable reduction in the compressibility when the Δ degree of freedom is activated. It is found that the Δ particle is the basic component of the 208 Pb nucleus besides nucleons at the ground state without any compression. When the nucleus is compressed to about 4.31 times the ordinary density, the Δ component is sharply increased to about 14.4% of all baryons in the system. It is found that there is a radial density distribution for Δ at the ground state of 208 Pb nucleus without any compression. The single particle energy levels are calculated and their behaviors are examined under compression too. A good agreement was obtained between the results of the effective Hamiltonian and the phenomenological shell model for the low lying single-particle spectra.
Keywords
Nuclear structure , compressed finite nuclei , Δ , resonance , Hartree , Fock method , shell model , heavyspherical doubly magic 208 Pb nucleus
Journal title
Turkish Journal of Physics
Journal title
Turkish Journal of Physics
Record number
2528871
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