English

Twelve-quark hypernuclei with A=4 in relativistic quark-gluon model

Nuclear Theory 2015-09-30 v1 High Energy Physics - Phenomenology

Abstract

Hypernuclei Y4He ^4_Y He, Y4H ^4_Y H, YY4He ^4_{YY} He, YY4H ^4_{YY} H, where Y=ΛY=\Lambda, Σ0\Sigma_0, Σ+\Sigma_+, Σ\Sigma_-, A=4 are considered using the relativistic twelve-quark equations in the framework of the dispersion relation technique. Hypernuclei as the systems of interacting quarks and gluons are considered. The relativistic twelve-quark amplitudes of hypernuclei, including uu, dd, ss quarks are constructed. The approximate solutions of these equations are obtained using a method based on the extraction of leading singularities of the amplitudes. The poles of the multiquark amplitudes allow us to determine the masses of hypernuclei with the atomic (baryon) number A=B=4A=B=4. The mass of state Λ4He ^4_{\Lambda}He with the isospin projection I3=1/2I_3=1/2 and the spin-parity JP=0+J^P=0^+ is equal to M=3922MeVM=3922\, MeV. The mass of ΛΛ4H ^4_{\Lambda\Lambda}H M=4118MeVM=4118\, MeV with the isospin projection I3=0I_3=0 and the spin-parity JP=0+J^P=0^+ is calculated. We predict the mass spectrum of hypernuclei with A=4, which is valuable to further experimental study of the hypernuclei.

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Cite

@article{arxiv.1410.2551,
  title  = {Twelve-quark hypernuclei with A=4 in relativistic quark-gluon model},
  author = {S. M. Gerasyuta and E. E. Matskevich},
  journal= {arXiv preprint arXiv:1410.2551},
  year   = {2015}
}

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16 pages