Tetraquarks at large $M$ and large $N$
Abstract
We study tetraquarks in large QCD with heavy quarks, in the domain where non-relativistic quantum mechanics offers an adequate approximation. Within the regime of validity of the Born-Oppenheimer approximation, we systematically study and explicitly construct tetraquark states. At leading order in the expansion, the bound spectrum consists of free mesons, while the corrections give rise to a Born-Oppenheimer potential that can bind the mesons into tetraquarks. We find two different types of tetraquarks, each endowed with distinct color-spatial wavefunctions. These states arise in the presence of an mass hierarchy between the quarks and the antiquarks. We provide a quantitative argument indicating that only for such a hierarchy is the ground state of the system a tetraquark. We discuss what the extrapolation of our results to realistic values of the parameters may imply for the QCD tetraquark states.
Cite
@article{arxiv.2407.18298,
title = {Tetraquarks at large $M$ and large $N$},
author = {Héloïse Allaman and Majid Ekhterachian and Filippo Nardi and Riccardo Rattazzi and Stefan Stelzl},
journal= {arXiv preprint arXiv:2407.18298},
year = {2024}
}
Comments
42 pages, 9 figures