Electromagnetic observables of open-shell nuclei from coupled-cluster theory

Fuente: arXiv
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Main Authors: Bonaiti, Francesca, Bacca, Sonia, Hagen, Gaute, Jansen, Gustav R.
Format: Preprint
Published: 2024
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author Bonaiti, Francesca
Bacca, Sonia
Hagen, Gaute
Jansen, Gustav R.
author_facet Bonaiti, Francesca
Bacca, Sonia
Hagen, Gaute
Jansen, Gustav R.
contents We develop a new method to describe electromagnetic observables of open-shell nuclei with two nucleons outside a closed shell. This approach combines the equation-of-motion coupled-cluster method for such systems and the Lorentz integral transform technique, expanding the applicability of coupled-cluster theory for these properties beyond closed-shell nuclei. To validate this new approach, we compute the non-energy-weighted dipole sum rule and the dipole polarizability of $^{16,24}$O in both the closed-shell and the new equation-of-motion coupled-cluster frameworks, finding agreement within error bars. We then analyze the evolution of the dipole polarizability along the oxygen and calcium isotopic chains. Our predictions agree well with available experimental data and other available theoretical calculations for the closed-shell $^{16,22}$O and the open-shell $^{18}$O. In the calcium isotopes, we observe that our dipole polarizability predictions for open-shell nuclei are lower than those of closed-shell nuclei. Our predictions for $^{24}$O and $^{54,56}$Ca will motivate future experimental studies at the dripline.
format Preprint
id arxiv_https___arxiv_org_abs_2405_05608
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Electromagnetic observables of open-shell nuclei from coupled-cluster theory
Bonaiti, Francesca
Bacca, Sonia
Hagen, Gaute
Jansen, Gustav R.
Nuclear Theory
Nuclear Experiment
We develop a new method to describe electromagnetic observables of open-shell nuclei with two nucleons outside a closed shell. This approach combines the equation-of-motion coupled-cluster method for such systems and the Lorentz integral transform technique, expanding the applicability of coupled-cluster theory for these properties beyond closed-shell nuclei. To validate this new approach, we compute the non-energy-weighted dipole sum rule and the dipole polarizability of $^{16,24}$O in both the closed-shell and the new equation-of-motion coupled-cluster frameworks, finding agreement within error bars. We then analyze the evolution of the dipole polarizability along the oxygen and calcium isotopic chains. Our predictions agree well with available experimental data and other available theoretical calculations for the closed-shell $^{16,22}$O and the open-shell $^{18}$O. In the calcium isotopes, we observe that our dipole polarizability predictions for open-shell nuclei are lower than those of closed-shell nuclei. Our predictions for $^{24}$O and $^{54,56}$Ca will motivate future experimental studies at the dripline.
title Electromagnetic observables of open-shell nuclei from coupled-cluster theory
topic Nuclear Theory
Nuclear Experiment
url https://arxiv.org/abs/2405.05608