Exotic Tetraquark states with two -quarks and and states in a nonperturbatively-tuned Lattice NRQCD setup
arXiv:2303.17295 · doi:10.1103/PhysRevD.107.114510
Abstract
We use Wilson-clover gauge-field ensembles from the CLS consortium in a Lattice NRQCD setup to predict the binding energy of a tetraquark and a tetraquark. We determine the binding energies with respect to the relevant and thresholds respectively to be MeV for the , and MeV for the . We also determine the ground-state and mesons to lie and MeV below the and thresholds respectively. Our errors are entirely dominated by systematics due to discretisation effects. To achieve these measurements, we performed a neural network based nonperturbative tuning of the Lattice NRQCD Hamiltonian's parameters against the basic bottomonium spectrum. For all lattice spacings considered we can reproduce the continuum splittings of low-lying bottomonia. It is worth remarking that our nonperturbative tuning parameters deviate from 1 by significant amounts, particularly the term .
48 pages, 16 figures
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