Nuclear spins and moments of Ga isotopes reveal sudden structural changes between N=40 and N=50

Collinear laser spectroscopy was performed on Ga (Z=31) isotopes at ISOLDE, CERN. A gas-filled linear Paul trap (ISCOOL) was used to extend measurements towards very neutron-rich isotopes (N=36-50). A ground state (g.s.) spin I=1/2 is measured for 73Ga, being near degenerate with a 3/2{-} isomer (75...

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Veröffentlicht in:Physical review letters 2010-06, Vol.104 (25), p.252502-252502, Article 252502
Hauptverfasser: Cheal, B, Mané, E, Billowes, J, Bissell, M L, Blaum, K, Brown, B A, Charlwood, F C, Flanagan, K T, Forest, D H, Geppert, C, Honma, M, Jokinen, A, Kowalska, M, Krieger, A, Krämer, J, Moore, I D, Neugart, R, Neyens, G, Nörtershäuser, W, Schug, M, Stroke, H H, Vingerhoets, P, Yordanov, D T, Záková, M
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Sprache:eng
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Zusammenfassung:Collinear laser spectroscopy was performed on Ga (Z=31) isotopes at ISOLDE, CERN. A gas-filled linear Paul trap (ISCOOL) was used to extend measurements towards very neutron-rich isotopes (N=36-50). A ground state (g.s.) spin I=1/2 is measured for 73Ga, being near degenerate with a 3/2{-} isomer (75  eV≲E{ex}≲1  keV). The 79Ga g.s., with I=3/2, is dominated by protons in the πf{5/2} orbital and in 81Ga the 5/2{-} level becomes the g.s. The data are compared to shell-model calculations in the f{5/2}pg{9/2} model space, calling for further theoretical developments and new experiments.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.104.252502