P-wave charmed baryons from QCD sum rules
Hua-Xing Chen, Wei Chen, Qiang Mao, Atsushi Hosaka, Xiang Liu and, Shi-Lin Zhu

TL;DR
This paper uses QCD sum rules within heavy quark effective theory to analyze P-wave charmed baryons, identifying their multiplet structures, mass splittings, and possible quantum number assignments, providing a comprehensive theoretical framework for these states.
Contribution
The study systematically applies QCD sum rules to all relevant baryon currents, offering new insights into the multiplet structure and mass splittings of P-wave charmed baryons.
Findings
Identified SU(3) multiplets for Lambda_c and Xi_c states.
Predicted mass splittings for Sigma_c and Xi_c states.
Suggested possible J(P) quantum numbers for Xi_c(3080) and partners.
Abstract
We study the P-wave charmed baryons using the method of QCD sum rule in the framework of heavy quark effective theory (HQET). We consider systematically all possible baryon currents with a derivative for internal rho- and lambda-mode excitations. We have found a good working window for the currents corresponding to the rho-mode excitations for Lambda_c(2595), Lambda_c(2625), Xi_c(2790) and Xi_c(2815) which complete two SU(3) 3F_bar multiplets of J(P)=1/2(-) and 3/2(-), while the currents corresponding to the lambda-mode excitations seem also consistent with the data. Our results also suggest that there are two Sigma_c(2800) states of J(P)=1/2(-) and 3/2(-) whose mass splitting is 14 \pm 7 MeV, and two Xi_c(2980) states whose mass splitting is 12 \pm 7 MeV. They have two Omega_c partners of J(P) = 1/2(-) and 3/2(-), whose masses are around 3.25 \pm 0.20 GeV with mass splitting 10 \pm 6…
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