Masses of Open-Flavour Heavy-Light Hybrids from QCD Sum-Rules
arXiv:1609.06750 · doi:10.1007/JHEP05(2017)149
Abstract
We use QCD Laplace sum-rules to predict masses of open-flavour heavy-light hybrids where one of the hybrid's constituent quarks is a charm or bottom and the other is an up, down, or strange. We compute leading-order, diagonal correlation functions of several hybrid interpolating currents, taking into account QCD condensates up to dimension-six, and extract hybrid mass predictions for all , as well as explore possible mixing effects with conventional quark-antiquark mesons. Within theoretical uncertainties, our results are consistent with a degeneracy between the heavy-nonstrange and heavy-strange hybrids in all channels. We find a similar mass hierarchy of , , and states (a state lighter than essentially degenerate and states) in both the charm and bottom sectors, and discuss an interpretation for the states. If conventional meson mixing is present the effect is an increase in the hybrid mass prediction, and we estimate an upper bound on this effect.
24 pages, 8 figures. Mass predictions updated from previous version to reflect corrected sign error in sum rule analysis. Mixing analysis and examination of higher weight sum-rules added. To be published in JHEP
References in corpus (4)
Cited by in corpus (7)
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- Heavy-light hybrid mesons with different spin-parities
- Vector and Scalar Mesons' Mixing from QCD Sum Rules
- Ground State Mass Predictions of Heavy-Light Hybrids from QCD Sum-Rule Analysis ()
- Heavy Quarkonium () Meson-Hybrid Mixing from QCD Sum Rules