English

Structural dissection of hadronic molecules: The $D^{(*)}\bar{K}^{(*)}$ family under QCD light-cone sum rules

High Energy Physics - Phenomenology 2026-02-12 v1 High Energy Physics - Experiment High Energy Physics - Lattice

Abstract

We investigate the static electromagnetic properties of three charm--strange molecular tetraquark candidates with quantum numbers JP=1+J^{P}=1^{+}, namely the DKˉD\bar{K}^{\ast}, DKˉD^{\ast}\bar{K}, and DKˉD^{\ast}\bar{K}^{\ast} systems. The analysis is carried out within the framework of QCD light-cone sum rules, using interpolating currents constructed from colour-singlet meson bilinears to reflect their molecular configurations. Both perturbative and non-perturbative photon contributions are included,and numerical predictions for the magnetic and electric quadrupole moments are obtained. The magnetic moments are found to lie in the range 11--33 nuclear magnetons, with the largest value associated with the DKˉD^{*}\bar{K} configuration. The quadrupole moments are an order of magnitude smaller, of order 103fm210^{-3}\,\mathrm{fm}^{2}, indicating only weak deviations from spherical charge distributions. A flavour decomposition shows that the magnetic response is dominated by the light quarks, while the charm-quark contribution is strongly suppressed, a feature naturally expected for loosely bound hadronic molecules. The present analysis extends QCD light-cone sum-rule studies of exotic hadrons by providing a systematic determination of the electromagnetic moments of the D()Kˉ()D^{(\ast)}\bar K^{(\ast)} molecular systems. These results provide quantitative benchmarks that may help discriminate between molecular configurations and more compact multiquark interpretations and may offer useful guidance for future experimental studies of electromagnetic signatures of charm--strange exotic states.

Keywords

Cite

@article{arxiv.2602.10638,
  title  = {Structural dissection of hadronic molecules: The $D^{(*)}\bar{K}^{(*)}$ family under QCD light-cone sum rules},
  author = {Ulaş Özdem},
  journal= {arXiv preprint arXiv:2602.10638},
  year   = {2026}
}

Comments

16 pages, 4 tables, 1 figure