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Double-charm heptaquark states composed of two charmed mesons and one nucleon

Published 9 Jun 2022 in hep-ph and hep-ex | (2206.04586v3)

Abstract: Inspired by the experimental discoveries of $T_{cc}$, $\Sigma_c(2800)$, and $\Lambda_c(2940)$ and the theoretical picture where they are $DD*$, $DN$, and $D*N$ molecular candidates, we investigate the double charm heptaquark system of $DD*N$. We employ the one-boson-exchange model to deduce the pairwise $D$-$D*$, $D$-$N$, and $D*$-$N$ potentials and then study the $DD*N$ system with the Gaussian expansion method. We find two good hadronic molecular candidates with $I(JP)=\frac{1}{2}(\frac{1}{2}-)$ and $\frac{1}{2}(\frac{3}{2}-)$ $DD*N$ with only $s$-wave pairwise interactions. The conclusion remains unchanged even taking into account the $S$-$D$ mixing and coupled channel effects. In addition to providing the binding energies, we also calculate the root-mean-square radii of the $DD*N$ system, which further support the molecular nature of the predicted states. They can be searched for at the upcoming LHC run 3 and run 4.

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