Transient field g factor and mean-life measurements with a rare isotope beam of 126Sn
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Kumbartzki, G
Benczer-Koller, N
Torres, D.A.
Manning, B.
O'Malley, P.
Sharon, Y.Y.
Zamick, L.
Gross, C J
Radford, D C
Robinson, S.J.Q.
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American Physical Society
Abstract
Background: The g factors and lifetimes of the 21+ states in the stable, proton-rich Sn isotopes have been measured, but there is scant information on neutron-rich Sn isotopes. Purpose: Measurement of the g factor and the lifetime of the 21+ state at 1.141 MeV in neutron-rich 126Sn (T1/2=2. 3×105y). Method: Coulomb excitation in inverse kinematics together with the transient field and the Doppler shift attenuation techniques were applied to a radioactive beam of 126Sn at the Holifield Radioactive Ion Beam Facility. Results: g(21+)=-0.25(21) and τ(21+)=1.5(2) ps were obtained. Conclusions: The data are compared to large-scale shell-model and quasiparticle random-phase calculations. Neutrons in the h11/2 and d3/2 orbitals play an important role in the structure of the 21+ state of 126Sn. Challenges, limitations, and implications for such experiments at future rare isotope beam facilities are discussed.
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Physical Review C: Nuclear Physics
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Open Access