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Magnetic dipole moments as probes of doubly-bottom molecular pentaquarks

Ulaş Özdem

hep-pharXiv:2607.27653

Abstract

We investigate the magnetic dipole moments of doubly-bottom pentaquark states with spin-parities JP=12- and 32-, interpreted as hadronic molecules in the BΣb, BΣb*, and B*Σb configurations. The analysis is performed within the framework of QCD light-cone sum rules employing photon distribution amplitudes. Our results demonstrate a strong sensitivity of the magnetic dipole moments to the internal spin structure and quark composition of the states. In particular, the light-quark sector provides the dominant contribution in the BΣb configuration, while the magnetic moment of BΣb* is largely governed by the heavy bottom quark. For the B*Σb molecular state, both light and heavy sectors contribute constructively, leading to a significantly enhanced magnetic dipole moment. These findings indicate that magnetic dipole moments constitute a sensitive probe of the internal structure of molecular-type doubly-bottom pentaquarks and provide testable predictions for future experimental studies.

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