English

Hypernuclei and in-medium chiral dynamics

Nuclear Theory 2008-11-26 v1

Abstract

A recently introduced relativistic nuclear energy density functional, constrained by features of low-energy QCD, is extended to describe the structure of hypernuclei. The density-dependent mean field and the spin-orbit potential of a Λ\Lambda-hyperon in a nucleus, are consistently calculated using the SU(3) extension of in-medium chiral perturbation theory. The leading long-range ΛN\Lambda N interaction arises from kaon-exchange and 2π2\pi-exchange with a Σ\Sigma-hyperon in the intermediate state. Scalar and vector mean fields, originating from in-medium changes of the quark condensates, produce a sizeable {\em short-range} spin-orbit interaction. The model, when applied to oxygen as a test case, provides a natural explanation for the smallness of the effective Λ\Lambda spin-orbit potential: an almost complete cancellation between the background contributions (scalar and vector) and the long-range terms generated by two-pion exchange.

Keywords

Cite

@article{arxiv.0709.2298,
  title  = {Hypernuclei and in-medium chiral dynamics},
  author = {P. Finelli},
  journal= {arXiv preprint arXiv:0709.2298},
  year   = {2008}
}

Comments

8 pages and 6 figures. To appear in the proceedings of the Theoretical nuclear physics school "Exotic Nuclei: New Challenges", Les Houches (France) May 7-18, 2007

R2 v1 2026-06-21T09:17:37.715Z