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Título : Isospin symmetry breaking at high spin in the mirror nuclei 35Ar and 35Cl
Autor : Della Vedova, F.
Lenzi, S.M.
Ionescu-Bujor, M.
Marginean, N.
Axiotis, M.
Bazzacco, D.
Bizzeti-Sona, A.
Bizzeti, P.G.
Bracco, A.
Brandolini, F.
Bucurescu, D.
Farnea, E.
Iordachescu, A.
Lunardi, S.
Martinez, T.
Mason, P.
Menegazzo, R.
Million, B.
Napoli, D.R.
Nespolo, M.
Pavan, P.
Rossi-Alvarez, C.
Ur, C.A.
Venturelli, R.
Zuker, A.P.
Palabras clave : Nuclear structure
Coulomb energy differences
Mirror nuclei
Gamma spectroscopy
Nuclear Isospin Breaking
Fecha de publicación : 27-mar-2007
Editorial : The American Physical Society
Citación : 10.1103/PhysRevC.75.034317
Citación : Physical Review C;75
Resumen : High-spin states in 35Ar and 35Cl have been populated in the 24Mg(16O, αn) and 24Mg(16O, αp) reactions, respectively, at a beam energy of 70 MeV. The comparison between the level schemes of these mirror nuclei shows a striking asymmetry in the population yield of high-spin analog states of positive parity, which indicates different intensities of E1 transitions connecting positive- and negative-parity structures in both nuclei. Large energy differences are observed between analog states of negative parity with configurations of dominant pure single-particle character. This results from the comparison with large-scale shell-model calculations in the s1/2d3/2f7/2p3/2 valence space. It is shown that important contributions to the energy differences arise from the multipole Coulomb and the relativistic electromagnetic spin-orbit interactions.
URI : http://documenta.ciemat.es/handle/123456789/2438
ISSN : 0556-2813
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