A QCD Sum-Rules Analysis of Vector () Heavy Quarkonium Meson-Hybrid Mixing
arXiv:1707.00063 · doi:10.1103/PhysRevD.97.034001
Abstract
We use QCD Laplace sum-rules to study meson-hybrid mixing in vector () heavy quarkonium. We compute the QCD cross-correlator between a heavy meson current and a heavy hybrid current within the operator product expansion. In addition to leading-order perturbation theory, we include four- and six-dimensional gluon condensate contributions as well as a six-dimensional quark condensate contribution. We construct several single and multi-resonance models that take known hadron masses as inputs. We investigate which resonances couple to both currents and so exhibit meson-hybrid mixing. Compared to single resonance models that include only the ground state, we find that models that also include excited states lead to significantly improved agreement between QCD and experiment. In the charmonium sector, we find that meson-hybrid mixing is consistent with a two-resonance model consisting of the and a 4.3~GeV resonance. In the bottomonium sector, we find evidence for meson-hybrid mixing in the , , , and .
Updated version includes extended analysis
References in corpus (5)
Cited by in corpus (10)
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- Meson-Hybrid Mixing in Heavy Quarkonium from QCD Sum-Rules
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- Heavy-light hybrid mesons with different spin-parities
- Discontinuities of banana integrals in dispersion relation representation
- Mixing of X and Y states from QCD Sum Rules analysis
- Vector and Scalar Mesons' Mixing from QCD Sum Rules
- Revisit the heavy quarkonium double-gluon hybrid mesons with exotic quantum numbers
- Study of the and dibaryons in QCD Sum Rules