Large Scale Shell Model Calculations of the Negative-Parity States Structure in 24Mg Nucleus

The negative-parity states of 24Mg nucleus are investigated within the shell model. We are based on the calculations of energy levels, total squared form factors, and transition probability using the p-sd-pf (PSDPF) Hamiltonian in a large model space (0 + 1) hW. The comparison between the experiment...

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Veröffentlicht in:Ukrainian journal of physics (Kiev) 2021-05, Vol.66 (4), p.293
Hauptverfasser: Al-Sammarraie, A.A., Ahmed, F.A., Okhunov, A.A.
Format: Artikel
Sprache:eng
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Zusammenfassung:The negative-parity states of 24Mg nucleus are investigated within the shell model. We are based on the calculations of energy levels, total squared form factors, and transition probability using the p-sd-pf (PSDPF) Hamiltonian in a large model space (0 + 1) hW. The comparison between the experimental and theoretical states showed a good agreement within a truncated model space. The PSDPF-based calculations successfully reproduced the data on the total squared form factors and transition probabilities of the negative-parity states in 24Mg nucleus. These quantities depend on the one-body density matrix elements that are obtained from the PSDPF Hamiltonian. The wave functions of radial one-particle matrix elements calculated with the harmonic-oscillator potential are suitable to predict experimental data by changing the center-of-mass corrections.
ISSN:2071-0186
2071-0194
DOI:10.15407/ujpe66.4.293