English

Lambda-Lambda bond energy from the Nijmegen potentials

Nuclear Theory 2009-11-10 v3

Abstract

The ΛΛ\Lambda\Lambda bond energy ΔBΛΛ\Delta B_{\Lambda \Lambda} in ΛΛ\Lambda\Lambda hypernuclei is obtained from a GG-matrix calculation which includes the coupling between the ΛΛ\Lambda\Lambda, ΞN\Xi N and ΣΣ\Sigma\Sigma channels, as well as the effect of Pauli blocking to all orders. The Nijmegen NSC97e model is used as bare baryon-baryon interaction in the strangeness S=2S=-2 sector. The ΛΛ\Lambda\Lambda-ΞN\Xi N coupling increases substantially the bond energy with respect to the uncoupled ΛΛ\Lambda\Lambda case. However, the additional incorporation of the ΣΣ\Sigma \Sigma channel, which couples simultaneously to ΛΛ\Lambda\Lambda and ΞN\Xi N states, has a surprisingly drastic effect and reduces the bond energy down to a value closer to that obtained in an uncoupled calculation. We find that a complete treatment of Pauli blocking reduces the repulsive effect on the bond energy to about half of what was claimed before.

Keywords

Cite

@article{arxiv.nucl-th/0307096,
  title  = {Lambda-Lambda bond energy from the Nijmegen potentials},
  author = {I. Vidana and A. Ramos and A. Polls},
  journal= {arXiv preprint arXiv:nucl-th/0307096},
  year   = {2009}
}

Comments

15 pages, 1 figure, 3 tables, Accepted in PRC