A radius-dependent chromoelectric interaction in the MIT bag model predicts that the state T_ncs̄n̄(0+, 2.925) is a compact tetraquark candidate corresponding to the experimentally observed T_c̄s0^a(2900).
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A branching fraction of order 10^{-5} is predicted for the decay chain Lambda_b to phi P_cs(4200) to phi eta_c Lambda, potentially observable at LHCb.
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Compactness, mass spectra, and strong stability of singly heavy tetraquarks
A radius-dependent chromoelectric interaction in the MIT bag model predicts that the state T_ncs̄n̄(0+, 2.925) is a compact tetraquark candidate corresponding to the experimentally observed T_c̄s0^a(2900).
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Searching for a $P_{cs}(4200)$ state in the $\Lambda_b\to\phi\eta_c\Lambda$ reaction
A branching fraction of order 10^{-5} is predicted for the decay chain Lambda_b to phi P_cs(4200) to phi eta_c Lambda, potentially observable at LHCb.