Axial-vector molecules $\Upsilon B_{c}^{-}$ and $\eta_{b}B_{c}^{\ast-} $
Abstract
Axial-vector hadronic molecules and with the quark content are studied using QCD sum rule method. The spectroscopic parameters of these molecules are computed in the context of the two-point sum rule method. Predictions for their masses are identical to each other and confirm that they are structures unstable against dissociations to ordinary heavy mesons. We evaluate the width of the state and assume that it is equal to that of . To this end, we explore its dominant decay channels and . There also are subleading modes of generated due to annihilation of quarks. We consider decays of the molecule to pairs of the mesons , , , , , and . To find strong couplings at the -meson-meson vertices which determine the partial widths of these processes, we apply QCD three-point sum rule approach. The mass and width of the molecule are useful for experimental studies of fully heavy molecular structures at ongoing and planning experiments.
Keywords
Cite
@article{arxiv.2512.06513,
title = {Axial-vector molecules $\Upsilon B_{c}^{-}$ and $\eta_{b}B_{c}^{\ast-} $},
author = {S. S. Agaev and K. Azizi and H. Sundu},
journal= {arXiv preprint arXiv:2512.06513},
year = {2026}
}
Comments
11 Pages, 6 Figures and 1 Table