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Interpreting the Newly Observed $Ξ(1720)$ State in the Spin-$\frac{3}{2}$ $Ξ$ Spectrum

High Energy Physics - Phenomenology 2026-07-14 v1 High Energy Physics - Experiment High Energy Physics - Lattice

Abstract

We analyze the low lying spin-32\frac{3}{2} Ξ\Xi spectrum by means of the two point QCD sum rule approach. The analysis is motivated by the BESIII observation of the Ξ(1720)\Xi(1720) resonance, reported with mass 1721.0±5.2stat.±3.4syst. MeV1721.0\pm5.2_{\mathrm{stat.}}\pm3.4_{\mathrm{syst.}}~\mathrm{MeV} and favored quantum numbers JP=32+J^P=\frac{3}{2}^{+}. In this framework, we include the 1S1S, 1P1P, 2S2S and 2P2P configurations as possible low lying spin-32\frac{3}{2} cascade states. The extracted masses are 1527.53±111.38 MeV1527.53\pm111.38~\mathrm{MeV}, 1615.30±50.98 MeV1615.30\pm50.98~\mathrm{MeV}, 1727.52±42.39 MeV1727.52\pm42.39~\mathrm{MeV} and 1803.71±64.50 MeV1803.71\pm64.50~\mathrm{MeV} for the 1S1S, 1P1P, 2S2S and 2P2P states, respectively. The mass obtained for the 2S2S configuration agrees with the BESIII value within uncertainties and favors the assignment of Ξ(1720)\Xi(1720) as the first radial spin-32\frac{3}{2} excitation of the Ξ\Xi baryon.

Keywords

Cite

@article{arxiv.2607.12712,
  title  = {Interpreting the Newly Observed $Ξ(1720)$ State in the Spin-$\frac{3}{2}$ $Ξ$ Spectrum},
  author = {K. Azizi and Y. Sarac and H. Sundu},
  journal= {arXiv preprint arXiv:2607.12712},
  year   = {2026}
}

Comments

10 Pages, 8 Figures and 3 Tables