Diffractive charmonium spectrum in high energy collisions in the basis light-front quantization approach
Abstract
Using the charmonium light-front wavefunctions obtained by diagonalizing an effective Hamiltonian with the one-gluon exchange interaction and a confining potential inspired by light-front holography in the basis light-front quantization formalism, we compute production of charmonium states in diffractive deep inelastic scattering and ultra-peripheral heavy ion collisions within the dipole picture. Our method allows us to predict yields of all vector charmonium states below the open flavor thresholds in high-energy deep inelastic scattering, proton-nucleus and ultra-peripheral heavy ion collisions, without introducing any new parameters in the light-front wavefunctions. The obtained charmonium cross section is in reasonable agreement with experimental data at HERA, RHIC and LHC. We observe that the cross-section ratio reveals significant independence of model parameters.
Cite
@article{arxiv.1610.04945,
title = {Diffractive charmonium spectrum in high energy collisions in the basis light-front quantization approach},
author = {Guangyao Chen and Yang Li and Pieter Maris and Kirill Tuchin and James P. Vary},
journal= {arXiv preprint arXiv:1610.04945},
year = {2017}
}
Comments
12 pages, 5 figures