Structure of 10 N in 9 C+p resonance scattering

J. Hooker (Department of Physics & Astronomy and Cyclotron Institute, Texas A&M; University, College Station, TX 77843, USA) ; G.V. Rogachev (Department of Physics & Astronomy and Cyclotron Institute, Texas A&M; University, College Station, TX 77843, USA) ; V.Z. Goldberg (Department of Physics & Astronomy and Cyclotron Institute, Texas A&M; University, College Station, TX 77843, USA) ; E. Koshchiy (Department of Physics & Astronomy and Cyclotron Institute, Texas A&M; University, College Station, TX 77843, USA) ; B.T. Roeder (Department of Physics & Astronomy and Cyclotron Institute, Texas A&M; University, College Station, TX 77843, USA) ; et al. - Show all 11 authors

The structure of exotic nucleus 10 N was studied using 9 C+p resonance scattering. Two ℓ=0 resonances were found to be the lowest states in 10 N. The ground state of 10 N is unbound with respect to proton decay by 2.2(2) or 1.9(2) MeV depending on the 2− or 1− spin-parity assignment, and the first excited state is unbound by 2.8(2) MeV.

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      "value": "The structure of exotic nucleus 10 N was studied using 9 C+p resonance scattering. Two \u2113=0 resonances were found to be the lowest states in 10 N. The ground state of 10 N is unbound with respect to proton decay by 2.2(2) or 1.9(2) MeV depending on the 2\u2212 or 1\u2212 spin-parity assignment, and the first excited state is unbound by 2.8(2) MeV."
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Published on:
17 March 2017
Publisher:
Elsevier
Published in:
Physics Letters B (2017)

DOI:
https://doi.org/10.1016/j.physletb.2017.03.025
Copyrights:
The Authors
Licence:
CC-BY-3.0

Fulltext files: