The self-consistent Green's functions method is employed to study the spectroscopic factors of quasiparticle states around 16,28O and 40,60Ca. The Faddeev random phase approximation (FRPA) is used to account for the coupling of particles with collective excitation modes. Results for 16O are reviewed first. The same approach is applied to isotopes with large proton-neutron asymmetry to estimate its effect on spectroscopic factors. The results, based on the chiral N3LO force, exhibit an asymmetry dependence similar to that observed in heavy-ion knockout experiments but weaker in magnitude.

Spectroscopic factors in 16O and nucleon asymmetry / C. Barbieri, W.H. Dickhoff. - In: INTERNATIONAL JOURNAL OF MODERN PHYSICS A. - ISSN 0217-751X. - 24:11(2009), pp. 2060-2068. ((Intervento presentato al convegno KGU Yokohama Autumn School of Nuclear Physics tenutosi a Yokohama nel 2008.

Spectroscopic factors in 16O and nucleon asymmetry

C. Barbieri;
2009

Abstract

The self-consistent Green's functions method is employed to study the spectroscopic factors of quasiparticle states around 16,28O and 40,60Ca. The Faddeev random phase approximation (FRPA) is used to account for the coupling of particles with collective excitation modes. Results for 16O are reviewed first. The same approach is applied to isotopes with large proton-neutron asymmetry to estimate its effect on spectroscopic factors. The results, based on the chiral N3LO force, exhibit an asymmetry dependence similar to that observed in heavy-ion knockout experiments but weaker in magnitude.
Nuclear correlations; Proton-neutron asymmetry; Spectroscopic factors
Settore FIS/04 - Fisica Nucleare e Subnucleare
2009
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/750651
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