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arxiv: 1402.0438 · v1 · submitted 2014-02-03 · ✦ hep-ph

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Born-Oppenheimer Approximation for the XYZ Mesons

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classification ✦ hep-ph
keywords potentialsmesonsstatesboundenergyhybridsborn-oppenheimercalculations
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Many of the XYZ mesons discovered in the last decade can be identified as bound states in Born-Oppenheimer (B-O) potentials for a heavy quark and antiquark. They include quarkonium hybrids, which are bound states in excited flavor-singlet B-O potentials, and quarkonium tetraquarks, which are bound states in flavor-nonsinglet B-O potentials. We present simple parameterizations of the deepest flavor-singlet B-O potentials. We infer the deepest flavor-nonsinglet B-O potentials from lattice QCD calculations of static adjoint mesons. Selection rules for hadronic transitions are used to identify XYZ mesons that are candidates for ground-state energy levels in the B-O potentials for charmonium hybrids and tetraquarks. The energies of the lowest-energy charmonium hybrids are predicted by using the results of lattice QCD calculations to calculate the energy splittings between the ground states of different B-O potentials and using the Schroedinger equation to determine the splittings between energy levels within a B-O potential.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Hybrid hadrons at rest and on the light front

    hep-ph 2026-04 unverdicted novelty 6.0

    A constituent-gluon Born-Oppenheimer model is used to derive light-front wave functions and gluon PDFs for hybrid hadrons ccg and qqqg.

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    Born-Oppenheimer approximation calculations for doubly heavy hadrons match Gaussian expansion benchmarks at small heavy quark masses but diverge at larger masses, with Slater-type functions overestimating and Gaussian...