English

$T_{cc}^{+}$ coupled channel analysis and predictions

High Energy Physics - Phenomenology 2022-04-20 v1

Abstract

A coupled channel analysis of the D+D0D^{\ast+}D^0 and D0D+D^{\ast0}D^+ system is performed to study the doubly charmed Tcc+T_{cc}^+ state recently discovered by the LHCb collaboration. We use a simple model for the scattering amplitude that allows us to describe well the experimental spectrum, and obtain the Tcc+T_{cc}^+ pole in the coupled channel TT-matrix. We find that this bound state has a large molecular component. The isospin (I=0I=0 or I=1I=1) of the state cannot be inferred from the D0D0π+D^0 D^0 \pi^+ spectrum alone. Therefore, we use the same formalism to predict other DDπDD\pi spectra. In the case the Tcc+T_{cc}^+ has I=1I=1, we also predict the location of the other two members (Tcc++T_{cc}^{++} and Tcc0T_{cc}^0) of the triplet. Finally, using Heavy-Quark Spin Symmetry, we predict the location of possible heavier DDD^\ast D^\ast (I=0I=0 or I=1I=1) partners.

Keywords

Cite

@article{arxiv.2110.02944,
  title  = {$T_{cc}^{+}$ coupled channel analysis and predictions},
  author = {M. Albaladejo},
  journal= {arXiv preprint arXiv:2110.02944},
  year   = {2022}
}

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R2 v1 2026-06-24T06:40:46.895Z