Electromagnetic and hadronic decay of fully heavy tetraquark
Abstract
In this study, we compute the electromagnetic and hadronic decay widths of the S-wave fully heavy tetraquark ( or ) at lowest order in and , in the framework of nonrelativistic QCD. The short-distance coefficients are determined through the standard procedure of matching. The nonperturbative long-distance matrix elements are related to the phenomenological four-body Schr\"odinger wave functions at the origin, whose values are taken from literature. The branching fractions are predicted to be around and for the hadronic decay and electromagnetic decay, respectively. Combing our results with the production cross sections at the LHC, we also predict the event numbers for various decay channels. With integrated luminosity , it is expected that the event numbers can reach for , and for , at the LHC. The detecting prospect is promising. In addition, the decay widths of are estimated based on simple dimensional analysis as well as velocity scaling rule.
Keywords
Cite
@article{arxiv.2307.16150,
title = {Electromagnetic and hadronic decay of fully heavy tetraquark},
author = {Wen-Long Sang and Tao Wang and Yu-Dong Zhang and Feng Feng},
journal= {arXiv preprint arXiv:2307.16150},
year = {2024}
}
Comments
12 pages, 1 figures, 3 tables; a missing factor of 1/4 has been incorporated into the SDC; all pertinent numerical values have been revised accordingly; the principal conclusions remain unchanged