Low-energy bound states, resonances, and scattering of light ions
Abstract
We describe bound states, resonances, and elastic scattering of light ions using a δ -shell potential. Focusing on low-energy data such as energies of bound states and resonances, charge radii, asymptotic normalization coefficients, effective-range parameters, and phase shifts, we adjust the two parameters of the potential to some of these observables and make predictions for the nuclear systems d +α , 3H+α , 3He+α , α +α , and p +16O . We identify relevant momentum scales for Coulomb halo nuclei and propose how to apply systematic corrections to the potentials. This allows us to quantify statistical and systematic uncertainties. We present a constructive criticism of Coulomb halo effective field theory and compute the unknown charge radius of 17F.
- Publication:
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Physical Review C
- Pub Date:
- November 2019
- DOI:
- arXiv:
- arXiv:1907.11345
- Bibcode:
- 2019PhRvC.100e4307L
- Keywords:
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- Nuclear Theory
- E-Print:
- 18 pages, 8 figures