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Diffusion Monte Carlo calculations of fully-heavy (multiquark) bound states

High Energy Physics - Phenomenology 2020-12-30 v1 High Energy Physics - Experiment High Energy Physics - Lattice Nuclear Experiment Nuclear Theory

Abstract

We use a diffusion Monte Carlo method to solve the many-body Schr\"odinger equation describing fully-heavy tetraquark systems. This approach allows to reduce the uncertainty of the numerical calculation at the percent level, accounts for multi-particle correlations in the physical observables, and avoids the usual quark-clustering assumed in other theoretical techniques applied to the same problem. The interaction between particles was modeled by the most general and accepted potential, i.e. a pairwise interaction including Coulomb, linear-confining and hyperfine spin-spin terms. This means that, in principle, our analysis should provide some rigorous statements about the mass location of the all-heavy tetraquark ground states, which is particularly timely due to the very recent observation made by the LHCb collaboration of some enhancements in the invariant mass spectra of J/ψJ/\psi-pairs. Our main results are: (i) the cccˉcˉcc\bar c\bar c, ccbˉbˉcc\bar b\bar b (bbcˉcˉbb\bar c\bar c) and bbbˉbˉbb\bar b \bar b lowest-lying states are located well above their corresponding meson-meson thresholds; (ii) the JPC=0++J^{PC}=0^{++} cccˉcˉcc\bar c\bar c ground state with preferred quark-antiquark pair configurations is compatible with the enhancement(s) observed by the LHCb collaboration; (iii) our results for the cccˉbˉcc\bar c\bar b and bbcˉbˉbb\bar c\bar b sectors seem to indicate that the 0+0^+ and 1+1^+ ground states are almost degenerate with the 2+2^+ located around 100MeV100\,\text{MeV} above them; (iv) smaller mass splittings for the cbcˉbˉcb\bar c\bar b system are predicted, with absolute mass values in reasonable agreement with other theoretical works; (v) the 1++1^{++} cbcˉbˉcb\bar c\bar b tetraquark ground state lies at its lowest SS-wave meson-meson threshold and it is compatible with a molecular configuration.

Keywords

Cite

@article{arxiv.2009.11889,
  title  = {Diffusion Monte Carlo calculations of fully-heavy (multiquark) bound states},
  author = {M. C. Gordillo and F. De Soto and J. Segovia},
  journal= {arXiv preprint arXiv:2009.11889},
  year   = {2020}
}

Comments

19 pages, 7 figures, 15 tables