Charmonium meson and hybrid radiative transitions
arXiv:1402.5863 · doi:10.1103/PhysRevD.89.116005
Abstract
We consider the non-relativistic limit of the QCD Hamiltonian in the Coulomb gauge, to describe radiative transitions between conventional charmonium states and from the lowest multiplet of hybrids to charmonium mesons. The results are compared to potential quark models and lattices calculations.
References in corpus (13)
- Heavy quarkonium: progress, puzzles, and opportunities
- The Physics of Glueballs
- The Experimental Status of Glueballs
- Charmonium excited state spectrum in lattice QCD
- Exotic and excited-state radiative transitions in charmonium from lattice QCD
- Confining Solution of the Dyson-Schwinger Equations in Coulomb Gauge
- Heavy quarkonium hybrids from Coulomb gauge QCD
- Subcritical solution of the Yang-Mills Schroedinger equation in the Coulomb gauge
- Infrared analysis of propagators and vertices of Yang--Mills theory in Landau and Coulomb gauge
- QCD Coulomb gauge approach to hybrid mesons
- On two- and three-body descriptions of hybrid mesons
- Energy spectrum of the low-lying gluon excitations in the Coulomb gauge
- Gluelump spectrum from Coulomb gauge QCD
Cited by in corpus (14)
- Multiquark Resonances
- Non-Standard Heavy Mesons and Baryons, an Experimental Review
- Hybrid Mesons
- Charmonium spectrum and their electromagnetic transitions with higher multipole contributions
- Spectroscopy and Decay properties of the charmonium
- XYZ spectroscopy at electron-hadron facilities: Exclusive processes
- Higher Hybrid Charmonia in an Extended Potential Model
- Two Photon Decays of from Lattice QCD
- The bottom-charmed meson spectrum from a QCD approach based on Tamm--Dancoff approximation
- Strangeonium-like hybrids on the lattice
- Low energy meson spectrum from a QCD approach based on many-body methods
- Study of the radiative decay in light cone sum rules
- Shedding light on charmonium
- Radiative transitions of charmonium states in the covariant confined quark model