Doubly heavy tetraquark multiplets as heavy antiquark-diquark symmetry partners of heavy baryons

Abstract

Symmetries play important roles in the understanding of hadron structures and spectroscopy. Motivated by the discovery of the doubly charmed tetraquark Tcc+(3875), we study the ground states of the doubly heavy tetraquarks with the QCD inspired heavy antiquark-diquark symmetry in the constituent quark model. Six ground states of TQQ (Q=c,b) are predicted and the lightest Tcc state has a mass of 3875.8 7.6 MeV and spin-parity 1+ which are consistent with those of the observed Tcc+(3875). In addition, the magnetic moments of the predicted tetraquarks Tcc+(3876) and Tbb-(10396) are also estimated in the same model, which provide further informations to distinguish the structures of the TQQ states. Our results show that the heavy antiquark-diquark symmetry conserves well in these doubly heavy tetraquarks in both the spectrum and magnetic moment perspectives.

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