From transition electromagnetic form factors to the production of at the LHC
arXiv:2003.14318 · doi:10.5506/APhysPolB.51.1559
Abstract
We review our recent results for production of and in the fusion and in proton-proton collisions via gluon-gluon fusion. The quarkonium wave functions are calculated by solving Schrödinger equation for different potentials. Using Terentev prescription the light-cone wave functions are obtained. The light-cone wave functions are used then to calculate transition form factors. The theoretical results are compared to the Belle experimental data for . In addition we discuss our results for two-photon decay width. We present also results of our calculations for proton-proton collisions obtained within -factorization approach for different unintegrated gluon distributions. The results for hadroproduction of are compared to the LHCb experimental data.
15 pages, 14 figures, presentation at the XXVI Cracow EPIPHANY Conference, LHC Physics: Standard Model and Beyond, 7-10 January 2020}
References in corpus (6)
- The CCFM Monte Carlo generator CASCADE 2.2.0
- TMDlib and TMDplotter: library and plotting tools for transverse-momentum-dependent parton distributions
- Theoretical uncertainties in exclusive electroproduction S-wave heavy quarkonia
- Hadroproduction of scalar -wave quarkonia in the light-front -factorization approach
- Production of meson at the LHC: Color evaporation versus color-singlet gluon-gluon fusion
- Study of charmonium production using decays to hadronic final states with the LHCb experiment