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Main Authors: Barman, R., Horiuchi, W., Kimura, M., Chatterjee, R.
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2412.19270
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_version_ 1866911523659579392
author Barman, R.
Horiuchi, W.
Kimura, M.
Chatterjee, R.
author_facet Barman, R.
Horiuchi, W.
Kimura, M.
Chatterjee, R.
contents Background: In the mass regions with an abnormal shell structure, the so-called ``island of inversion," the spin-parity of odd-mass nuclei provides quantitative insights into the shell evolution. However, the experimental determination of the spin-parity is often challenging, leaving it undetermined in many nuclei. Purpose: We discuss how the shell structure affects the density profiles of nuclei in the island of inversion and investigate whether these can be probed from the total reaction and elastic scattering cross sections. Method: The antisymmetrized molecular dynamics (AMD) is employed to generate various particle-hole configurations and predict the energy levels of these nuclei. The obtained density distributions are used as inputs to the Glauber model, which is employed to calculate the total reaction and elastic scattering cross sections for revealing their relationship to the particle-hole configurations. Results: In addition to the well-known correlation between nuclear deformation and radius, we show the correlations between the particle-hole configurations and both central density and diffuseness. We show that different particle-hole configurations are well reflected in the total reaction and elastic scattering cross sections. Conclusion: The total reaction and elastic scattering cross sections are useful probes to identify the spin-parity of nuclei when different particle-hole configurations coexist.
format Preprint
id arxiv_https___arxiv_org_abs_2412_19270
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Investigating nuclear density profiles to reveal particle-hole configurations in the island of inversion
Barman, R.
Horiuchi, W.
Kimura, M.
Chatterjee, R.
Nuclear Theory
Background: In the mass regions with an abnormal shell structure, the so-called ``island of inversion," the spin-parity of odd-mass nuclei provides quantitative insights into the shell evolution. However, the experimental determination of the spin-parity is often challenging, leaving it undetermined in many nuclei. Purpose: We discuss how the shell structure affects the density profiles of nuclei in the island of inversion and investigate whether these can be probed from the total reaction and elastic scattering cross sections. Method: The antisymmetrized molecular dynamics (AMD) is employed to generate various particle-hole configurations and predict the energy levels of these nuclei. The obtained density distributions are used as inputs to the Glauber model, which is employed to calculate the total reaction and elastic scattering cross sections for revealing their relationship to the particle-hole configurations. Results: In addition to the well-known correlation between nuclear deformation and radius, we show the correlations between the particle-hole configurations and both central density and diffuseness. We show that different particle-hole configurations are well reflected in the total reaction and elastic scattering cross sections. Conclusion: The total reaction and elastic scattering cross sections are useful probes to identify the spin-parity of nuclei when different particle-hole configurations coexist.
title Investigating nuclear density profiles to reveal particle-hole configurations in the island of inversion
topic Nuclear Theory
url https://arxiv.org/abs/2412.19270