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Understanding the low-lying $Ω_c$ structures from a coupled-channel perspective

Published 9 Jul 2025 in hep-ph and hep-ex | (2507.06611v1)

Abstract: We perform a systematic analysis of the low-lying $\Omega_c$ structures in a coupled-channel approach. The couplings between meson-baryon channels, $\Xi_c \bar K$, $\Xi_c{\prime} \bar K$, $\Xi_c{*} \bar K$, $\Omega_c\eta$ and $\Omega_c{*}\eta$, and three-quark bare states $\Omega_c(1P_\lambda)$ are considered. We predict a bound state $\Omega_c(2954)$ below the $\Xi_c \bar K$ threshold with $(JP,j)=(1/2-,0)$, which can be studied in the final states of $\Omega_c{(*)} \pi$ and $\Omega_c{(*)} \gamma$. Also, the resonances $\Omega_c(3000)$ and $\Omega_c(3050)$ can be classified as the lower $(JP,j)=(1/2-,1)$ and $(JP,j)=(3/2-,1)$ states, respectively. Our present assignments based on this couple-channel perspective are significantly different from those of traditional three-quark picture and of molecular scenario. The future BelleII and LHCb experiments can search for the bound state $\Omega_c(2954)$ and measure the spin-parities of particles $\Omega_c(3000)$ and $\Omega_c(3050)$ to test our predictions.

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