Nuclear Structure Studies in the 132Sn Region: "safe Coulex" with Carbon Targets

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Abstract

The collective and single-particle structure of nuclei in the 132Sn region was recently studied by Coulomb excitation and heavy-ion induced transfer reactions using carbon, beryllium, and titanium targets. In particular, Coulomb excitation was used determine a complete set of electromagnetic moments for the first 2+ states and one-neutron transfer was used to probe the purity and evolution of single-neutron states. These recent experiments were conducted at the Holifield Radioactive Ion Beam Facility at ORNL using a Csl-HPGe detector array (BareBall- CLARION) to detect scattered particles and emitted gamma rays from the in-beam reactions. A Bragg-curve detector was used to measure the energy loss of the various beams through the targets and to measure the radioactive beam compositions. A sample of the Coulomb excitation results is presented here with an emphasis placed on 116Sn. In particular, the "safe Coulex" criterion for carbon targets will be analyzed and discussed.

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Allmond, J. M., Stuchbery, A. E., Galindo-Uribarri, A., Padilla-Rodal, E., Radford, D. C., Batchelder, J. C., … Yu, C. H. (2015). Nuclear Structure Studies in the 132Sn Region: “safe Coulex” with Carbon Targets. In Journal of Physics: Conference Series (Vol. 639). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/639/1/012007

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