English

Non-Symmetrized Hyperspherical Harmonics Method for Non-Equal Mass Three-Body Systems

Nuclear Theory 2018-10-22 v2

Abstract

The non-symmetrized hyperspherical harmonics method for a three-body system, composed by two particles having equal masses, but different from the mass of the third particle, is reviewed and applied to the 3^3H, 3^3He nuclei and Λ3^3_{\Lambda}H hyper-nucleus, seen respectively as nnpnnp, ppnppn and NNΛNN\Lambda three-body systems. The convergence of the method is first tested in order to estimate its accuracy. Then, the difference of binding energy between 3^3H and 3^3He due to the difference of the proton and the neutron masses is studied using several central spin-independent and spin-dependent potentials. Finally, the Λ3^3_{\Lambda}H hypernucleus binding energy is calculated using different NNNN and ΛN\Lambda N potential models. The results have been compared with those present in the literature, finding a very nice agreement.

Keywords

Cite

@article{arxiv.1809.01856,
  title  = {Non-Symmetrized Hyperspherical Harmonics Method for Non-Equal Mass Three-Body Systems},
  author = {A. Nannini and L. E. Marcucci},
  journal= {arXiv preprint arXiv:1809.01856},
  year   = {2018}
}

Comments

15 pages, 1 figure and 14 tables, version revisited according to referees suggestions

R2 v1 2026-06-23T03:56:11.775Z