Charmonium mass shifts in an unquenched quark model
Abstract
In this paper, we performed a coupled-channel calculation and evaluated the mass shifts for all , , , and charmonium valence states below 4 GeV, by incorporating the four-quark components (, , and meson pairs) into the quark model. The valence-continuum coupling is provided by the quark-pair creation model. The induced mass shifts appear to be large and negative with the original transition operator in model, which raised up challenges for the valence quark model. More QCD-motivated models should be employed for the quark-pair creation Hamiltonian. So herein, we recalculated the mass shifts with the improved transition operator introduced in our previous work and the mass shifts are reduced by averagely. Besides, as a exercise, we adjust the confinement parameter and recalculate the spectrum of the charmonium states. The masses of some charmonium states are reproduced well.
Keywords
Cite
@article{arxiv.2301.12388,
title = {Charmonium mass shifts in an unquenched quark model},
author = {Xiaoyun Chen and Yue Tan and Youchang Yang},
journal= {arXiv preprint arXiv:2301.12388},
year = {2023}
}
Comments
arXiv admin note: text overlap with arXiv:1712.04457