Investigation of nuclear structure near doubly magic 132Sn

Large-basis shell-model calculations have been performed to investigate the excited states of 131,132Sn using a newly formulated cross-shell interaction. Recent expansions of the level schemes has provided valuable structural insights. A detailed comparison of excitation energies and electromagnetic...

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Main Authors: Das Sangeeta, Gupta Arkabrata
Format: Article
Language:English
Published: EDP Sciences 2025-01-01
Series:EPJ Web of Conferences
Online Access:https://www.epj-conferences.org/articles/epjconf/pdf/2025/10/epjconf_iemphys2025_01008.pdf
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author Das Sangeeta
Gupta Arkabrata
author_facet Das Sangeeta
Gupta Arkabrata
author_sort Das Sangeeta
collection DOAJ
description Large-basis shell-model calculations have been performed to investigate the excited states of 131,132Sn using a newly formulated cross-shell interaction. Recent expansions of the level schemes has provided valuable structural insights. A detailed comparison of excitation energies and electromagnetic transition rates between experimental data and theoretical predictions offers a deep understanding of these nuclei. While certain transitions align well with experimental data, others show discrepancies. This observed discrepancies in some cases points the scope of improvement of theoretical results, such as fine tuning certain ν − ν tbmes.
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publishDate 2025-01-01
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spelling doaj-art-ef78b84c52824ed28747bfd20c4f3e362025-08-20T03:08:47ZengEDP SciencesEPJ Web of Conferences2100-014X2025-01-013250100810.1051/epjconf/202532501008epjconf_iemphys2025_01008Investigation of nuclear structure near doubly magic 132SnDas Sangeeta0Gupta Arkabrata1Department of Physics, Indian Institute of Engineering Science and TechnologyDepartment of Basic Science and Humanities, Institute of Engineering and Management, University of Engineering and ManagementLarge-basis shell-model calculations have been performed to investigate the excited states of 131,132Sn using a newly formulated cross-shell interaction. Recent expansions of the level schemes has provided valuable structural insights. A detailed comparison of excitation energies and electromagnetic transition rates between experimental data and theoretical predictions offers a deep understanding of these nuclei. While certain transitions align well with experimental data, others show discrepancies. This observed discrepancies in some cases points the scope of improvement of theoretical results, such as fine tuning certain ν − ν tbmes.https://www.epj-conferences.org/articles/epjconf/pdf/2025/10/epjconf_iemphys2025_01008.pdf
spellingShingle Das Sangeeta
Gupta Arkabrata
Investigation of nuclear structure near doubly magic 132Sn
EPJ Web of Conferences
title Investigation of nuclear structure near doubly magic 132Sn
title_full Investigation of nuclear structure near doubly magic 132Sn
title_fullStr Investigation of nuclear structure near doubly magic 132Sn
title_full_unstemmed Investigation of nuclear structure near doubly magic 132Sn
title_short Investigation of nuclear structure near doubly magic 132Sn
title_sort investigation of nuclear structure near doubly magic 132sn
url https://www.epj-conferences.org/articles/epjconf/pdf/2025/10/epjconf_iemphys2025_01008.pdf
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