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Hypernuclei in Halo/Cluster Effective Field Theory

Nuclear Theory 2016-05-02 v2 High Energy Physics - Phenomenology Nuclear Experiment

Abstract

The light double Λ\Lambda hypernuclei, ΛΛ  4{}_{\Lambda\Lambda}^{\ \ 4}H and ΛΛ  6{}_{\Lambda\Lambda}^{\ \ 6}He, are studied as three-body ΛΛd\Lambda\Lambda d and ΛΛα\Lambda\Lambda\alpha cluster systems in halo/cluster effective field theory at leading order. We find that the ΛΛd\Lambda\Lambda d system in spin-0 channel does not exhibit a limit cycle whereas the ΛΛd\Lambda\Lambda d system in spin-1 channel and the ΛΛα\Lambda\Lambda\alpha system in spin-0 channel do. The limit cycle is associated with the formation of bound states, known as Efimov states, in the unitary limit. For the ΛΛd\Lambda\Lambda d system in the spin-0 channel we estimate the scattering length a0a_0 for SS-wave Λ\Lambda hyperon-hypertriton scattering as a0=16.0±3.0a_0=16.0\pm 3.0 fm. We also discuss that studying the cutoff dependences in the ΛΛd\Lambda\Lambda d and ΛΛα\Lambda\Lambda\alpha systems, the bound state of ΛΛ  4{}_{\Lambda\Lambda}^{\ \ 4}H is not an Efimov state but formed due to a high energy mechanism whereas that of ΛΛ  6{}_{\Lambda\Lambda}^{\ \ 6}He may be regarded as an Efimov state.

Keywords

Cite

@article{arxiv.1512.07674,
  title  = {Hypernuclei in Halo/Cluster Effective Field Theory},
  author = {Shung-Ichi Ando},
  journal= {arXiv preprint arXiv:1512.07674},
  year   = {2016}
}

Comments

review article for special issue on "Effective Field Theory in Nuclear Physics" in Int. J. Mod. Phys. E; 16 pages and 8 eps figures, version accepted for publication

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