Magnetic moments of open bottom--charm molecular pentaquark octets
Abstract
We present a comprehensive theoretical investigation of the magnetic moments of open heavy-flavor molecular pentaquarks with quark compositions and (where ). Employing a molecular picture in which the pentaquarks are treated as S-wave bound states of a heavy baryon and a meson, we systematically construct the complete spin--flavor wavefunctions for the two distinct SU(3) octet representations, and , arising from symmetric and antisymmetric light-diquark configurations, respectively. Within the framework of the constituent quark model, we calculate the magnetic moments of spin-parity configurations, and , for each member of the and octets. Our results reveal a striking hierarchy: in the representation, the states exhibit near-universal magnetic moments ( for and for ), as a direct consequence of the spin-singlet light-diquark that suppresses light-quark contributions. In contrast, the representation shows a broad spectrum of values with frequent sign changes, reflecting the active role of the symmetric light-diquark. The clear differences between the and families demonstrate explicit heavy-quark flavor symmetry breaking in electromagnetic observables. These predictions provide a detailed set of electromagnetic benchmarks that can serve as discriminants for the internal flavor structure and spin configuration of future experimentally observed open heavy-flavor pentaquarks, offering valuable guidance for ongoing and future searches at facilities such as LHCb and Belle II.
Cite
@article{arxiv.2603.27657,
title = {Magnetic moments of open bottom--charm molecular pentaquark octets},
author = {Halil Mutuk and Xian-Wei Kang},
journal= {arXiv preprint arXiv:2603.27657},
year = {2026}
}
Comments
14 pages, 4 tables, 1 figure