English

Phenomenological Lambda-Nuclear Interactions

Nuclear Theory 2009-11-07 v1

Abstract

Variational Monte Carlo calculations for Λ4H{_{\Lambda}^4}H (ground and excited states) and Λ5He{_{\Lambda}^5}He are performed to decipher information on Λ{\Lambda}-nuclear interactions. Appropriate operatorial nuclear and Λ{\Lambda}-nuclear correlations have been incorporated to minimize the expectation values of the energies. We use the Argonne υ18\upsilon_{18} two-body NN along with the Urbana IX three-body NNN interactions. The study demonstrates that a large part of the splitting energy in Λ4H{_{\Lambda}^4}H (0+1+0^+-1^+) is due to the three-body Λ{\Lambda} NN forces. Λ17O_{\Lambda}^{17}O hypernucleus is analyzed using the {\it s}-shell results. Λ\Lambda binding to nuclear matter is calculated within the variational framework using the Fermi-Hypernetted-Chain technique. There is a need to correctly incorporate the three-body Λ{\Lambda} NN correlations for Λ\Lambda binding to nuclear matter.

Keywords

Cite

@article{arxiv.nucl-th/0210012,
  title  = {Phenomenological Lambda-Nuclear Interactions},
  author = {Rita Sinha and Q. N. Usmani and B. M. Taib},
  journal= {arXiv preprint arXiv:nucl-th/0210012},
  year   = {2009}
}

Comments

18 pages (TeX), 2 figures