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Most Strange Dibaryon from Lattice QCD

High Energy Physics - Lattice 2018-05-25 v2 High Energy Physics - Experiment High Energy Physics - Phenomenology Nuclear Experiment Nuclear Theory

Abstract

The ΩΩ\Omega\Omega system in the 1S0^1S_0 channel (the most strange dibaryon) is studied on the basis of the (2+1)-flavor lattice QCD simulations with a large volume (8.1 fm)3^3 and nearly physical pion mass mπ146m_{\pi}\simeq 146 MeV at a lattice spacing a0.0846a\simeq 0.0846 fm. We show that lattice QCD data analysis by the HAL QCD method leads to the scattering length a0=4.6(6)(0.5+1.2)fma_0 = 4.6 (6)(^{+1.2}_{-0.5}) {\rm fm}, the effective range reff=1.27(3)(0.03+0.06)fmr_{\rm eff} = 1.27 (3)(^{+0.06}_{-0.03}) {\rm fm} and the binding energy BΩΩ=1.6(6)(0.6+0.7)MeVB_{\Omega \Omega} = 1.6 (6) (^{+0.7}_{-0.6}) {\rm MeV}. These results indicate that the ΩΩ\Omega\Omega system has an overall attraction and is located near the unitary regime. Such a system can be best searched experimentally by the pair-momentum correlation in relativistic heavy-ion collisions.

Keywords

Cite

@article{arxiv.1709.00654,
  title  = {Most Strange Dibaryon from Lattice QCD},
  author = {Shinya Gongyo and Kenji Sasaki and Sinya Aoki and Takumi Doi and Tetsuo Hatsuda and Yoichi Ikeda and Takashi Inoue and Takumi Iritani and Noriyoshi Ishii and Takaya Miyamoto and Hidekatsu Nemura},
  journal= {arXiv preprint arXiv:1709.00654},
  year   = {2018}
}

Comments

6 pages and 4 figures

R2 v1 2026-06-22T21:31:35.967Z