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Heavy meson thresholds in Born-Oppenheimer Effective field theory

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arxiv 2207.09365 v3 pith:RCE7HSIV submitted 2022-07-19 hep-ph hep-exhep-lat

classification hep-phhep-exhep-lat
keywords heavyquarkoniummeson-antimesonthresholdcontributionscouplingseftsinteractions
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

We consider heavy meson-antimeson pairs and their coupling to quarkonium in the context of nonrelativistic EFTs incorporating the adiabatic expansion. We work out all the leading order couplings of quarkonium to heavy meson-antimeson pairs and obtain their contributions to the masses and widths of quarkonia. We match the new potentials terms to NRQCD. Using the available lattice data for the coupled system of quarkonium and the lowest laying heavy meson-antimeson pair, we extract the mixing potential and use it to compute numerically the contributions of $D\bar{D}(B\bar{B})$ and $D_s\bar{D}_s(B_s\bar{B}_s)$ to the masses and widths of the charmonium (bottomonium) states for $l=0,1,2$ and up to $n=6$ covering the states in threshold region. When a quarkonium state and a heavy meson-antimeson pair are separated by small energy gaps, their interactions can be described by a threshold EFT with contact interactions. We work out the matching between the two EFTs obtaining the couplings of the threshold EFT in terms of the mixing potential and quarkonium wave functions.

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  1. Quarkoniumlike states above open-flavor thresholds in Born-Oppenheimer EFT

    hep-ph 2026-08 conditional novelty 6.0 of 10

    A QCD-constrained Born-Oppenheimer calculation organizes most observed quarkoniumlike states above open-flavor thresholds into heavy-quark-spin-symmetry multiplets and predicts a shallow X_b.

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