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Mass and decay width of T_(ccs) from symmetries
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Mass and decay width of T_(ccs) from symmetries
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We analyze the mass and width of the doubly heavy tetraquark $T_{ccs}$ composed of a heavy diquark and a light-quark cloud with strangeness with assuming that a color antitriplet heavy diquark is a dominant component of the doubly charmed tetraquarks $T_{cc}$ and $T_{ccs}$. We construct an effective Lagrangian for masses of heavy hadrons based on the superflavor symmetry between the doubly heavy tetraquarks and the singly heavy baryons by including the terms that simultaneously break the heavy-quark and light-flavor symmetries, and predict the mass of $T_{ccs}$ as $M(T_{ccs}) = 4047\pm11$\,MeV. The comparison of this prediction with future experimental observation will give a clue to understand the color structure of the heavy diquark. We also predict the mass of $\Omega_{cc}$ as $M(\Omega_{cc}) = 3706^{+14}_{-15}\,$MeV. We next calculate the decay width of $T_{ccs}$, based on solely the light-flavor symmetry, as $\Gamma(T_{ccs}) = 42\pm 24$\,MeV.
Forward citations
Cited by 1 Pith paper
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Inverse Excitation Hierarchy in Doubly-Heavy Tetraquarks within the Diquark Model
In a diquark-model calculation, the ρ-mode excitation of Tcc (inside the light diquark) lies below the λ-mode excitation (between diquarks), an 'inverse hierarchy' driven by the light diquark's large size.
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