NLO results with operator mixing for fully heavy tetraquarks in QCD sum rules
Abstract
We study the mass spectra of systems in QCD sum rules with the complete next-to-leading order (NLO) contribution to the perturbative QCD part of the correlation functions. Instead of meson-meson or diquark-antidiquark currents, we use diagonalized currents under operator renormalization. We find that differing from conventional mesons and baryons , a unique feature of the multiquark systems like is the operator mixing or color configuration mixing induced by NLO corrections, which is crucial to understand the color structure of the states. Our numerical results show that the NLO corrections are very important for the system, because they not only give significant contributions but also reduce the scheme and scale dependence and make Borel platform more distinct, especially for the in the scheme. We use currents that have good perturbation convergence in our phenomenological analysis. With the scheme, we get three states, with masses GeV, GeV and GeV, respectively. The first two seem to agree with the broad structure around GeV measured by the LHCb collaboration in the spectrum, and the third seems to agree with the narrow resonance . For the states we find one with mass GeV, which is also close to that of , and another one around GeV, which has good scale dependence but slightly large scheme dependence.
Keywords
Cite
@article{arxiv.2201.11714,
title = {NLO results with operator mixing for fully heavy tetraquarks in QCD sum rules},
author = {Ren-Hua Wu and Yu-Sheng Zuo and Chen-Yu Wang and Ce Meng and Yan-Qing Ma and Kuang-Ta Chao},
journal= {arXiv preprint arXiv:2201.11714},
year = {2022}
}
Comments
60 pages, 53 figures, nonrelativistic (NR) reductions of some operators are illustrated