Systematic study of giant quadrupole resonances with the subtracted second random-phase approximation: Beyond-mean-field centroids and fragmentation

O. Vasseur, D. Gambacurta, and M. Grasso
Phys. Rev. C 98, 044313 – Published 12 October 2018

Abstract

A systematic analysis of giant quadrupole resonances is performed for several nuclei, from Si30 to Pb208, within the subtracted second random-phase-approximation (SSRPA) model in the framework of the energy-density-functional theory. Centroid energies and widths of the isoscalar giant quadrupole resonances are compared with the corresponding random-phase-approximation (RPA) values. We find lower SSRPA centroid energies compared to the RPA values leading, in general, to a better agreement with the experimental data. As far as the widths are concerned, we observe for both SSRPA and RPA cases a global attenuation of the single-particle Landau damping going from lighter to heavier nuclei, and we obtain, systematically, larger widths in the SSRPA model compared to the RPA case. For some selected nuclei for which high-resolution (p,p) experimental data are available, namely Ca40, Zr90, Sn120, and Pb208, the theoretical strength distributions are directly compared with the experimental spectra. We observe a significant improvement, with respect to RPA results, in the description of the spreading widths and of the fragmentation of the obtained spectra, due to the coupling between one-particle–one-hole and two-particle–two-hole configurations.

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  • Received 29 June 2018

DOI:https://doi.org/10.1103/PhysRevC.98.044313

©2018 American Physical Society

Physics Subject Headings (PhySH)

Nuclear Physics

Authors & Affiliations

O. Vasseur1, D. Gambacurta2, and M. Grasso1

  • 1Institut de Physique Nucléaire, CNRS-IN2P3, Université Paris-Sud, Université Paris-Saclay, 91406 Orsay, France
  • 2Extreme Light Infrastructure—Nuclear Physics (ELI-NP), Horia Hulubei National Institute for Physics and Nuclear Engineering, 30 Reactorului Street, RO-077125 Magurele, Judeţul Ilfov, Romania

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Vol. 98, Iss. 4 — October 2018

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