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April 10, 2026The European Physical Journal C3 citationsOpen Access

Hidden-charm pentaquarks: electromagnetic structure in a diquark–diquark–antiquark model

UÖUlaş Özdem

Key Points

  • The aim is to investigate the electromagnetic properties, particularly magnetic moments, of hidden-charm pentaquarks.
  • Utilized QCD light-cone sum rules with four distinct interpolating currents.
  • Considered contributions from light and charm quark sectors.
  • Ensured convergence of the operator product expansion.
  • Analyzed the impact of internal quark configurations and spin alignments.
  • Demonstrated a strong dependence of magnetic moments on internal quark configurations.
  • Observed substantial variations among different currents despite identical quark content.
  • Found significant differences in magnetic moment values between compact configurations and molecular-type predictions.

Abstract

Abstract We systematically investigate the electromagnetic properties of exotic states whose internal structures remain uncertain and for which different models have been proposed. In this work, we focus on the magnetic dipole moments of hidden-charm pentaquark states using QCD light-cone sum rules with four distinct interpolating currents. The analysis accounts for contributions from both light and charm quark sectors, as well as higher-dimensional operators, ensuring convergence of the operator product expansion and dominance of the ground-state pole. Our results demonstrate a strong dependence of the magnetic moments on the internal quark configurations and spin alignments, revealing substantial variations among the different currents despite identical quark content and quantum numbers. Comparisons with existing studies indicate that while molecular-type predictions show general agreement, compact configurations yield markedly different values, including significant differences in sign and magnitude. These findings therefore underscore the sensitivity of electromagnetic observables to the internal structure of exotic hadrons and highlight their potential as probes to discriminate between competing structural models for spin–parity assignments and underlying quark dynamics.

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Ulaş Özdem (2026) studied this question.

synapsesocial.com/papers/69d8962d6c1944d70ce077dbhttps://doi.org/10.1140/epjc/s10052-026-15591-6
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