Heavy and heavy-light mesons with arbitrary spin and parity in the Covariant Spectator Theory
Alfred Stadler, Elmar P. Biernat
Abstract
This work generalizes the one-channel Covariant Spectator Theory (CST) formalism to describe quark-antiquark mesons of arbitrary spin-parity JP. We also improve the quark-antiquark interaction kernel by incorporating the momentum dependence of the strong coupling. Within this framework, we perform global fits to the masses of experimentally established heavy and heavy-light mesons with JP=0, 1, 2, and 3. With only eight adjustable parameters, the model yields an excellent global description of the observed quark-antiquark spectrum and predicts both unmeasured states and likely JP assignments for states with unconfirmed quantum numbers. In particular, our results support the identifications of the recently observed Bc(1P)+ candidates as 0+, 1+, and 2+ states, and the Bc*+ as the lowest 1- state in the bottom-charm sector, as well as the Ds1(2933)+ as axial-vector state in the charm-strange sector.
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