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Nuclear charge radii of neutron-deficient lead isotopes beyond N = 104 midshell investigated by in-source laser spectroscopy
Authors:De Witte H  Andreyev A N  Barré N  Bender M  Cocolios T E  Dean S  Fedorov D  Fedoseyev V N  Fraile L M  Franchoo S  Hellemans V  Heenen P H  Heyde K  Huber G  Huyse M  Jeppessen H  Köster U  Kunz P  Lesher S R  Marsh B A  Mukha I  Roussière B  Sauvage J  Seliverstov M  Stefanescu I  Tengborn E  Van de Vel K  Van de Walle J  Van Duppen P  Volkov Yu
Affiliation:Instituut voor Kern- en Stralingsfysica, K.U. Leuven, B-3001 Leuven, Belgium.
Abstract:The shape of exotic even-mass (182-190)Pb isotopes was probed by measurement of optical isotope shifts providing mean square charge radii (delta(r(2))). The experiment was carried out at the isolde (cern) on-line mass separator, using in-source laser spectroscopy. Small deviations from the spherical droplet model are observed, but when compared to model calculations, those are explained by high sensitivity of delta(r(2)) to beyond mean-field correlations and small admixtures of intruder configurations in the ground state. The data support the predominantly spherical shape of the ground state of the proton-magic Z=82 lead isotopes near neutron midshell (N=104).
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