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Enhanced quadrupole collectivity at N = 40: the case of neutron-rich Fe isotopes
Authors:Rother W  Dewald A  Iwasaki H  Lenzi S M  Starosta K  Bazin D  Baugher T  Brown B A  Crawford H L  Fransen C  Gade A  Ginter T N  Glasmacher T  Grinyer G F  Hackstein M  Ilie G  Jolie J  McDaniel S  Miller D  Petkov P  Pissulla Th  Ratkiewicz A  Ur C A  Voss P  Walsh K A  Weisshaar D  Zell K-O
Institution:Institut für Kernphysik der Universit?t zu K?ln, D-50937 K?ln, Germany.
Abstract:The transition rates for the 2(1)+ states in (62,64,66)Fe were studied using the recoil distance Doppler-shift technique applied to projectile Coulomb excitation reactions. The deduced E2 strengths illustrate the enhanced collectivity of the neutron-rich Fe isotopes up to N = 40. The results are interpreted using the generalized concept of valence proton symmetry which describes the evolution of nuclear structure around N = 40 as governed by the number of valence protons with respect to Z ≈ 30. The trend of collectivity suggested by the experimental data is described by state-of-the-art shell-model calculations with a new effective interaction developed for the fpgd valence space.
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