QCD sum rules identify three possible molecular dibaryons: Λ_c Σ_c with J^P=1^+ and anti-Λ_c Σ_c with J^P=0^- and 1^-; the other five channels are assigned as resonances.
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QCD sum rules predict Λ_c Σ_c hexaquark ground-state masses around 5.8 GeV, above threshold and consistent with no bound state observed by BESIII.
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Search for the $\Lambda_c\Sigma_c$ and $\bar{\Lambda}_c\Sigma_c$ dibaryon structures via the QCD sum rules
QCD sum rules identify three possible molecular dibaryons: Λ_c Σ_c with J^P=1^+ and anti-Λ_c Σ_c with J^P=0^- and 1^-; the other five channels are assigned as resonances.
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Mass Spectra of $\Lambda_Q\bar{\Sigma}_Q$ Hexaquark States in QCD Sum Rules
QCD sum rules predict Λ_c Σ_c hexaquark ground-state masses around 5.8 GeV, above threshold and consistent with no bound state observed by BESIII.