English

Ab initio calculations of low-energy nuclear scattering using confining potential traps

Nuclear Theory 2020-09-30 v2 High Energy Physics - Lattice

Abstract

A recently modified method to enable low-energy nuclear scattering results to be extracted from the discrete energy levels of the target-projectile clusters confined by harmonic potential traps is tested. We report encouraging results for neutron--α\alpha and neutron--24O^{24}\mathrm{O} elastic scattering from analyzing the trapped levels computed using two different ab initio nuclear structure methods. The nn--α\alpha results have also been checked against a direct ab initio reaction calculation. The nn--24O^{24}\mathrm{O} results demonstrate the approach's applicability for a large range of systems provided their spectra in traps can be computed by ab initio methods. A key ingredient is a rigorous understanding of the errors in the calculated energy levels caused by inevitable Hilbert-space truncations in the ab initio methods.

Keywords

Cite

@article{arxiv.2004.13575,
  title  = {Ab initio calculations of low-energy nuclear scattering using confining potential traps},
  author = {Xilin Zhang and S. R. Stroberg and P. Navrátil and Chan Gwak and J. A. Melendez and R. J. Furnstahl and J. D. Holt},
  journal= {arXiv preprint arXiv:2004.13575},
  year   = {2020}
}

Comments

Close to the published version; ancillary files attached; modifications: (1) the naming of the method is changed in the title and text, (2) a concentrated discussion of error sources is included in the main text, and (3) comparisons with existing methods are included in the supplemental material