Spherical magic number character of N = 184 from alpha decay half-lives and two-neutron separation energies of Og isotopes from Skyrme mean-field calculations
Preliminary results on predicted alpha decay half-lives of Og isotopes are presented. Calculations of the binding energy were performed using the Skyrme-mean-field-plus-Bardeen-Cooper-Schrieffer model. Four types of empirical alpha decay half-lives formula with a total of eight sets of parameters we...
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2023
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author | Koh, Meng-Hock Abdullah, Mastura Syamimi Asous, Wissal Jawdat Yousef |
author_facet | Koh, Meng-Hock Abdullah, Mastura Syamimi Asous, Wissal Jawdat Yousef |
author_sort | Koh, Meng-Hock |
collection | ePrints |
description | Preliminary results on predicted alpha decay half-lives of Og isotopes are presented. Calculations of the binding energy were performed using the Skyrme-mean-field-plus-Bardeen-Cooper-Schrieffer model. Four types of empirical alpha decay half-lives formula with a total of eight sets of parameters were considered. Results indicated that the N = 184 is the next spherical magic number with both of the Skyrme SkM* and SLy5 parametrizations considered in this study. |
first_indexed | 2024-12-08T06:55:38Z |
format | Conference or Workshop Item |
id | utm.eprints-108263 |
institution | Universiti Teknologi Malaysia - ePrints |
last_indexed | 2024-12-08T06:55:38Z |
publishDate | 2023 |
record_format | dspace |
spelling | utm.eprints-1082632024-11-13T06:17:44Z http://eprints.utm.my/108263/ Spherical magic number character of N = 184 from alpha decay half-lives and two-neutron separation energies of Og isotopes from Skyrme mean-field calculations Koh, Meng-Hock Abdullah, Mastura Syamimi Asous, Wissal Jawdat Yousef QC Physics Preliminary results on predicted alpha decay half-lives of Og isotopes are presented. Calculations of the binding energy were performed using the Skyrme-mean-field-plus-Bardeen-Cooper-Schrieffer model. Four types of empirical alpha decay half-lives formula with a total of eight sets of parameters were considered. Results indicated that the N = 184 is the next spherical magic number with both of the Skyrme SkM* and SLy5 parametrizations considered in this study. 2023 Conference or Workshop Item PeerReviewed Koh, Meng-Hock and Abdullah, Mastura Syamimi and Asous, Wissal Jawdat Yousef (2023) Spherical magic number character of N = 184 from alpha decay half-lives and two-neutron separation energies of Og isotopes from Skyrme mean-field calculations. In: 1st International Conference on Computational Science and Data Analytics, COMDATA 2021, Incorporating the 1st South-East Asia Workshop on Computational Physics and Data Analytics, CPDAS 2021, 21 November 2021-24 November 2021, Kuala Lumpur, Malaysia. http://dx.doi.org/10.1063/5.0140176 |
spellingShingle | QC Physics Koh, Meng-Hock Abdullah, Mastura Syamimi Asous, Wissal Jawdat Yousef Spherical magic number character of N = 184 from alpha decay half-lives and two-neutron separation energies of Og isotopes from Skyrme mean-field calculations |
title | Spherical magic number character of N = 184 from alpha decay half-lives and two-neutron separation energies of Og isotopes from Skyrme mean-field calculations |
title_full | Spherical magic number character of N = 184 from alpha decay half-lives and two-neutron separation energies of Og isotopes from Skyrme mean-field calculations |
title_fullStr | Spherical magic number character of N = 184 from alpha decay half-lives and two-neutron separation energies of Og isotopes from Skyrme mean-field calculations |
title_full_unstemmed | Spherical magic number character of N = 184 from alpha decay half-lives and two-neutron separation energies of Og isotopes from Skyrme mean-field calculations |
title_short | Spherical magic number character of N = 184 from alpha decay half-lives and two-neutron separation energies of Og isotopes from Skyrme mean-field calculations |
title_sort | spherical magic number character of n 184 from alpha decay half lives and two neutron separation energies of og isotopes from skyrme mean field calculations |
topic | QC Physics |
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