English

Exploring the structure of $^{29}$Ne

Nuclear Theory 2021-04-30 v1

Abstract

We apply a fully quantum mechanical Coulomb breakup theory under the aegis of post form finite-range distorted wave Born approximation to analyze the elastic Coulomb breakup of 29^{29}Ne on 208^{208}Pb at 244244\,MeV/u. We calculate several reaction observables to quantify its structural parameters. One-neutron removal cross-section is calculated to check the consistency of the ground state configuration of 29^{29}Ne with the available experimental data. A scrutiny of the parallel momentum distribution of the charged fragment reveals a full width at half maximum of 8282\,MeV/c, which is in good agreement with the experimental value and indicates a moderate halo for a nearly spherical 29^{29}Ne in the 28^{28}Ne(0+)2p3/2ν(0^+) \otimes 2p_{3/2}\nu ground state. The energy-angular distributions and average momentum of the charged fragment point to the absence of post-acceleration effects in the breakup process, a desirable result for the elastic breakup.

Keywords

Cite

@article{arxiv.2104.01200,
  title  = {Exploring the structure of $^{29}$Ne},
  author = {Manju and M. Dan and G. Singh and Jagjit Singh and Shubhchintak and R. Chatterjee},
  journal= {arXiv preprint arXiv:2104.01200},
  year   = {2021}
}

Comments

19 pages, 7 figures

R2 v1 2026-06-24T00:48:49.934Z