Z_b(10610) and Z_b(10650) decays to bottomonium plus pion
arXiv:1207.2425 · doi:10.1103/PhysRevD.86.077502
Abstract
We consider the transitions from the and resonances to the states of bottomonium with emission of a pion. The resonances are viewed as `molecular' objects of a large spatial size made of heavy mesons, while the states of bottomonium are considered to be compact, so that an application of the leading (dipole) term in the QCD multipole expansion is assumed to be justified. In this way we calculate the ratios of the decay rates to the final states with , and the ratio of the decay rates to with and 2. We find our estimates in a reasonable agreement with recent experimental data.
6 pages
References in corpus (2)
Cited by in corpus (18)
- The hidden-charm pentaquark and tetraquark states
- Z_c(3900) - what is inside?
- Confirming the molecular nature of the and the
- Heavy hadronic molecules with pion exchange and quark core couplings: a guide for practitioners
- The line shapes of the and in the elastic and inelastic channels revisited
- General considerations on the nature of and from their pole positions
- and decays in intermediate meson loops model
- More hidden heavy quarkonium molecules and their discovery decay modes
- Line shapes in Υ(5S) \to B^{(*)} \bar{B}^{(*)}πwith Z(10610) and Z(10650) using effective field theory
- Interpretation of and in the ISPE mechanism and the Charmonium Counterpart
- Production of the states from the decays
- The nature of states from a combined analysis of and
- The structures in a constituent quark model coupled-channels calculation
- Possible hadronic molecular states composed of -wave heavy-light mesons
- Investigations on the light hadron decays of and
- Contribution of resonances to
- wave bottomonia production from decay
- An analysis on doubly bottom molecular tetraquarks composed of and doublets