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Search for an s-wave resonance in Li7 just above the proton-decay threshold

N. Dronchi1,*, J. Berkman2, R. J. Charity2, J. M. Elson2, L. G. Sobotka1,2, A. G. Thomas2, A. Saastamoinen3, M. Barbui3, J. Bishop3 et al.

C. E. Parker3, B. T. Roeder3, G. V. Rogachev3,4,5, D. P. Scriven3,4, S. T. Marley6, and R. M. Shaffer6

  • 1Department of Physics, Washington University, St. Louis, Missouri 63130, USA
  • 2Department of Chemistry, Washington University, St. Louis, Missouri 63130, USA
  • 3Cyclotron Institute, Texas A&M University, College Station, Texas 77843, USA
  • 4Department of Physics and Astronomy, Texas A&M University, College Station, Texas 77843, USA
  • 5Nuclear Solutions Institute, TAMU 3366 College Station, Texas 77843-3366, USA
  • 6Department of Physics and Astronomy, Louisiana State University, Baton Rouge, Louisiana 70803, USA

  • *n.dronchi@wustl.edu

Phys. Rev. C 107, L061303 – Published 20 June, 2023

DOI: https://doi.org/10.1103/PhysRevC.107.L061303

Abstract

Near-threshold resonances play an important role in nucleosynthesis and applied nuclear science. The study of nuclei removed from stability has greatly extended the list of resonances close to decay thresholds. The no core shell model with continuum (NCSMC) recently predicted an s-wave resonance just above the proton-decay threshold of Li7 at an excitation energy of 10.2 MeV. This potential case of a near-threshold resonance is dependent on the quantum mechanics of the p+He6 fragments extended into the continuum. The He6(d,n)Li*7 reaction was employed in an attempt to populate this resonance and search for its proton decay via the invariant-mass method. No evidence of this resonance was found. However, the data collected in this search led to better constraints on the energy and width of the isobaric analog state (IAS) with (Jπ,T)=(3/2−,3/2) and revealed a new weak resonance just above the IAS in energy, predicted by the NCSMC as a (Jπ,T)=(3/2−,1/2) state and potentially a part of the antianalog structure.

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