arXiv · 1611.09838
Revisiting radiative decays of $1^{+-}$ heavy quarkonia in the covariant light-front approach
Abstract
We revisit the calculation of the width for the radiative decay of a $1^{+-}$ heavy $Q \bar Q$ meson via the channel $1^{+-} \to 0^{-+} +γ$ in the covariant light-front quark model. We carry out the reduction of the light-front amplitude in the non-relativistic limit, explicitly computing the leading and next-to-leading order relativistic corrections. This shows the consistency of the light-front approach with the non-relativistic formula for this electric dipole transition. Furthermore, the theoretical uncertainty in the predicted width is studied as a function of the inputs for the heavy quark mass and wavefunction structure parameter. We analyze the specific decays $h_{c}(1P) \to η_{c}(1S) + γ$ and $h_{b}(1P) \to η_{b}(1S) + γ$. We compare our results with experimental data and with other theoretical predictions from calculations based on non-relativistic models and their extensions to include relativistic effects, finding reasonable agreement.
Explore related subjects
Keep this discovery
Yan-Liang Shi. 2016-11-29. Revisiting radiative decays of $1^{+-}$ heavy quarkonia in the covariant light-front approach. https://doi.org/10.1140/epjc%2Fs10052-017-4818-5
Cite the original work for its findings. Save a collection to share your selection of sources.