Studying the Proton-Unbound Superradiant State in 13C
ORAL
Abstract
This work continues the efforts at FSU’s John D. Fox Accelerator Laboratory to study nuclear structure of states embedded in the continuum. Two energy and spin-degenerate states in 13C exhibit the phenomena of “superradiance” where one state couples to the continuum while the other is sapped of its width (trapped state). A campaign to investigate these states was conducted in June 2025. The first reaction, 12C(d,p)13C, was used to study the superradiant state that manifests as a broad (1.5 MeV wide) continuous peak at 8.20 MeV. The second reaction, 9Be(6Li, d)13C, was utilized to study the alpha-transfer strength of both the 7.68 MeV trapped state and the 8.20 MeV superradiant state. Reaction products were measured using Fox Lab’s Super-Enge Split-Pole Spectrograph (SE-SPS), with beam energies of E(d) = 16 MeV, and E(6Li) = 32 MeV respectively. Results from these experiments will be presented.
*This research was based on work supported by the National Science Foundation under the grant number PHY-2412808 and the DOE Office of Nuclear Physics under the grant number DE-FG02-96ER40978.
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Presenters
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Juan Christopher Esparza
- Florida State University