Systematic Analysis for Neck-length and Q-values on Cluster decay from Ba Isotopes

Majekodunmi, Joshua T. and Anwar, K. and Rana, Shilpa and Jain, N. and Bhuyan, M. and Abdullah, N. and Kumar, Raj (2022) Systematic Analysis for Neck-length and Q-values on Cluster decay from Ba Isotopes. In: 1st International Conference on Technologies for Smart Green Connected Society 2021, ICTSGS 2021, 29 - 30 November 2021.

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Abstract

The present study provides a detailed investigation of the neck-configuration and Q-values on the cluster decay of proton-rich even-even 124-128Ba isotopes using the relativistic mean-field (RMF) formalism with the NL3* parameter set. The densities of the interacting nuclei from the RMF approach are folded with the R3Y and M3Y interactions to obtain the nuclear potential via the double-folding technique. The preformed cluster model (PCM) based on the quantum mechanical fragmentation theory is employed for the calculation of the decay half-lives. The preformation probability P0 and the penetration probabilities are estimated by the phenomenological scaling factor of Blendowske & Walliser and the WKB approximation respectively. The present investigation reveals that the M3Y and R3Y are associated with different barrier characteristics which are significantly modified with a little variation in the neck-length parameter ΔR. From the Q-value analysis, we have demonstrated that α-decay may not be a favourable decay mode for proton-rich barium isotopes with A > 122. © The Electrochemical Society

Item Type: Conference or Workshop Item (Paper)
Funders: Ministry of Education Malaysia [Grant No: FRGS/1/2019/STG02/UNIMAP/02/2], Board of Research in Nuclear Sciences [Grant No: 58/14/12/2019-BRNS], Fundação de Amparo à Pesquisa do Estado de São Paulo [Grant No: 2017/05660-0]
Additional Information: Cited by: 2; Conference name: 1st International Conference on Technologies for Smart Green Connected Society 2021, ICTSGS 2021; Conference date: 29 November 2021 through 30 November 2021; Conference code: 179026
Uncontrolled Keywords: Quantum theory; Cluster decay; Clusters model; Folding technique; Mean field approach; Model-based OPC; Nuclear potentials; Parameter set; Q-values; Relativistic mean fields; Systematic analysis; Isotopes
Subjects: Q Science > Q Science (General)
Q Science > QC Physics
Divisions: Faculty of Science > Department of Physics
Depositing User: Ms. Juhaida Abd Rahim
Date Deposited: 18 Sep 2025 03:42
Last Modified: 18 Sep 2025 03:42
URI: http://eprints.um.edu.my/id/eprint/43505

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