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The Search for Beauty-fully Bound Tetraquarks Using Lattice Non-Relativistic QCD

High Energy Physics - Lattice 2018-08-02 v2 High Energy Physics - Experiment High Energy Physics - Phenomenology

Abstract

Motivated by multiple phenomenological considerations, we perform the first search for the existence of a bˉbˉbb\bar{b}\bar{b}bb tetraquark bound state with a mass below the lowest non-interacting bottomonium-pair threshold using the first-principles lattice non-relativistic QCD methodology. We use a full SS-wave colour/spin basis for the bˉbˉbb\bar{b}\bar{b}bb operators in the three 0++0^{++}, 1+1^{+-} and 2++2^{++} channels. We employ four gluon field ensembles at multiple lattice spacing values ranging from a=0.060.12a = 0.06 - 0.12 fm, all of which include uu, dd, ss and cc quarks in the sea, and one ensemble which has physical light-quark masses. Additionally, we perform novel exploratory work with the objective of highlighting any signal of a near threshold tetraquark, if it existed, by adding an auxiliary potential into the QCD interactions. With our results we find no evidence of a QCD bound tetraquark below the lowest non-interacting thresholds in the channels studied.

Keywords

Cite

@article{arxiv.1710.03236,
  title  = {The Search for Beauty-fully Bound Tetraquarks Using Lattice Non-Relativistic QCD},
  author = {Ciaran Hughes and Estia Eichten and Christine T. H. Davies},
  journal= {arXiv preprint arXiv:1710.03236},
  year   = {2018}
}

Comments

24 Pages; 19 Figures; Accepted By PRD; Unaveraged Correlator Data Publicly Available in SQLite Database