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Analysis of the $\bar{D}Σ_c$, $\bar{D}Σ_c^*$, $\bar{D}^{*}Σ_c$ and $\bar{D}^{*}Σ_c^*$ pentaquark molecular states with QCD sum rules

Published 27 Jun 2018 in hep-ph | (1806.10384v3)

Abstract: In this article, we study the $\bar{D}\Sigma_c$, $\bar{D}\Sigma_c*$, $\bar{D}{*}\Sigma_c$ and $\bar{D}{}\Sigma_c^$ pentaquark molecular states with the QCD sum rules by carrying out the operator product expansion up to the vacuum condensates of dimension $13$ in a consistent way. The present calculations support assigning the $P_c(4312)$ to be the $\bar{D}\Sigma_c$ pentaquark molecular state with $JP={\frac{1}{2}}-$, assigning the $P_c(4380)$ to be the $\bar{D}\Sigma_c*$ pentaquark molecular state with $JP={\frac{3}{2}}-$, assigning the $P_c(4440/4457)$ to be the $\bar{D}{*}\Sigma_c$ pentaquark molecular state with $JP={\frac{3}{2}}-$ or the $\bar{D}{}\Sigma_c^$ pentaquark molecular state with $JP={\frac{5}{2}}-$. Special attentions are payed to the operator product expansion.

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