Nuclear size, electric monopole transitions, and the location of $0^+_2$ states

Fuente: arXiv
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Autori principali: Maheshwari, B., Nomura, K., Van Isacker, P.
Natura: Preprint
Pubblicazione: 2025
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author Maheshwari, B.
Nomura, K.
Van Isacker, P.
author_facet Maheshwari, B.
Nomura, K.
Van Isacker, P.
contents The work addresses the isotopic shift of nuclear radii for the even-even $^{36-52}$Ca isotopes using the interacting boson model (IBM) that includes the mixing from normal and intruder configurations. We obtain a good agreement between the calculated and experimental data, particularly for the dip at $^{48}$Ca. A direct correlation between nuclear size and electric monopole transitions is established to compute the electric monopole transition strengths, $ρ^2(E0)$. We further study the isotopic shift for the even-even $^{32-46}$Ar and $^{44-50}$Ti isotopes.
format Preprint
id arxiv_https___arxiv_org_abs_2502_04999
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Nuclear size, electric monopole transitions, and the location of $0^+_2$ states
Maheshwari, B.
Nomura, K.
Van Isacker, P.
Nuclear Theory
The work addresses the isotopic shift of nuclear radii for the even-even $^{36-52}$Ca isotopes using the interacting boson model (IBM) that includes the mixing from normal and intruder configurations. We obtain a good agreement between the calculated and experimental data, particularly for the dip at $^{48}$Ca. A direct correlation between nuclear size and electric monopole transitions is established to compute the electric monopole transition strengths, $ρ^2(E0)$. We further study the isotopic shift for the even-even $^{32-46}$Ar and $^{44-50}$Ti isotopes.
title Nuclear size, electric monopole transitions, and the location of $0^+_2$ states
topic Nuclear Theory
url https://arxiv.org/abs/2502.04999