English

$^{6}_{\Lambda\Lambda}$He as a $\Lambda\Lambda$ interaction constraint

Nuclear Theory 2011-08-17 v1

Abstract

The Nijmegen OBE potential D is SU(3) rotated to model the strangeness -2 sector of the baryon-baryon force. Soft core repulsion is introduced to regularize the singular nature of the OBE functions. The strength of the 1^1S0_0 t=0t=0 interaction is adjusted to model three scenarios: (1) a bound state, (2) a narrow virtual, or antibound, state, and (3) an unbound state in which the force is weakly attractive. Using a separable approximation to these potentials, the binding energy of ΛΛ6^{6}_{\Lambda\Lambda}He is calculated in an ΛΛα\Lambda\Lambda\alpha model. The resultant binding energies suggest that the strength of the 1^1S0_0 t=0t=0 ΛΛ\Lambda\Lambda and the nnnn interactions should be similar, if the coupling between the ΛΛ\Lambda\Lambda and ΞN\Xi N channels is taken into consideration.

Keywords

Cite

@article{arxiv.nucl-th/9709003,
  title  = {$^{6}_{\Lambda\Lambda}$He as a $\Lambda\Lambda$ interaction constraint},
  author = {S. B. Carr and I. R. Afnan and B. F. Gibson},
  journal= {arXiv preprint arXiv:nucl-th/9709003},
  year   = {2011}
}

Comments

27 pages,2 eps figures