Bulletin of the American Physical Society
5th Joint Meeting of the APS Division of Nuclear Physics and the Physical Society of Japan
Volume 63, Number 12
Tuesday–Saturday, October 23–27, 2018; Waikoloa, Hawaii
Session MG: Nuclear Theory 4
2:00 PM–4:00 PM,
Saturday, October 27, 2018
Hilton
Room: King's 3
Chair: Yutaka Utsuno, Japan Atomic Energy Agency
Abstract ID: BAPS.2018.HAW.MG.4
Abstract: MG.00004 : Self-consistent multiparticle-multihole configuration mixing description of nuclear many-body systems*
2:45 PM–3:00 PM
Presenter:
Caroline Robin
(Institute for Nuclear Theory, University of Washington, Seattle, WA, USA)
Authors:
Caroline Robin
(Institute for Nuclear Theory, University of Washington, Seattle, WA, USA)
Nathalie Pillet
(CEA,DAM,DIF, France)
Many-body methods such as shell models or self-consistent mean fields remain among the most used and powerful approaches to the description of nuclei. Based on different philosophies, these methods however differ in the range of masses and physical phenomena they can describe. In this talk we present an approach to nuclear structure that is at the crossroads between these two concepts. This method is based on the determination of a general wave function taken as a superposition of Slater determinants built on a single-particle basis that is solution of a generalized mean-field equation. Full self-consistency is reached as the individual orbitals incorporate part of the nuclear correlations and, in turn, minimize residual many-body interactions. We will present applications of the method to ground and spectroscopic properties of p- and sd-shell nuclei [1]. The impact of the optimization of the orbitals will be emphasized.
[1] C. Robin et al., Phys. Rev. C 93, 024302 (2016); C. Robin et al, Phys. Rev. C 95, 044315 (2017).
*This work is supported by the Institute for Nuclear Theory under US-DOE Grant DE-FG02-00ER41132 and JINA-CEE under US-NSF Grant PHY-1430152.
To cite this abstract, use the following reference: http://meetings.aps.org/link/BAPS.2018.HAW.MG.4
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