English

Implications of an increased $\Lambda$-separation energy of the hypertriton

Nuclear Theory 2021-01-20 v2

Abstract

Stimulated by recent indications that the binding energy of the hypertriton could be significantly larger than so far assumed, requirements of a more strongly bound Λ3H^3_\Lambda {\rm H} state for the hyperon-nucleon interaction and consequences for the binding energies of A=4,5A=4,5 and 77 hypernuclei are investigated. As basis a YNYN potential derived at next-to-leading order in chiral effective field theory is employed, Faddeev and Yakubovsky equations are solved to obtain the corresponding 33- and 44-body binding energies, respectively, and the Jacobi no-core shell model is used for Λ5^5_\LambdaHe and Λ7^7_\LambdaLi. It is found that the spin-singlet Λp\Lambda p interaction would have to be much more attractive which can be, however, accommodated within the bounds set by the available Λp\Lambda p scattering data. The binding energies of the Λ4He^4_\Lambda {\rm He} hypernucleus are predicted to be closer to the empirical values than for YNYN interactions that produce a more weakly bound Λ3H^3_\Lambda {\rm H}. The quality of the description of the separation energy and excitation spectrum for Λ7^7_\LambdaLi remains essentially unchanged.

Keywords

Cite

@article{arxiv.1909.02882,
  title  = {Implications of an increased $\Lambda$-separation energy of the hypertriton},
  author = {Hoai Le and Johann Haidenbauer and Ulf-G. Meißner and Andreas Nogga},
  journal= {arXiv preprint arXiv:1909.02882},
  year   = {2021}
}

Comments

8 pages, 3 figures; version that was published in Phys. Lett. B