Probing the electromagnetic properties of the -type doubly charmed molecular pentaquarks
arXiv:2207.08660 · doi:10.1103/PhysRevD.106.034034
Abstract
In this work, we discuss the electromagnetic properties of the -wave -type doubly charmed molecular pentaquarks, which have close relation to their inner structures. Both the - wave mixing effect and the coupled channel effect are taken into account. We analyze the magnetic moments for the -wave molecular states, and extend our theoretical framework to study the transition magnetic moments and the radiative decay widths between the -wave molecules. We discuss the relations between the magnetic moments and the transition magnetic moments for the -wave -type doubly charmed molecular pentaquarks, which can be regarded as an indirect way to measure their magnetic moments experimentally. The present study may inspire experimentalist's interest in measuring the electromagnetic properties of the hadronic molecular states.
15 pages, 4 figures and 9 tables
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- Radiative decays and magnetic moments of the predicted -like molecules
- New type of doubly charmed molecular pentaquarks containing most strange quarks: Mass spectra, radiative decays, and magnetic moments
- Investigating the M1 radiative decay behaviors and the magnetic moments of the predicted triple-charm molecular-type pentaquarks
- Exploring the mass spectrum and the electromagnetic properties of the possible and molecules
- Electromagnetic properties of the molecular states
- Spectroscopic Properties of Double-Strangeness Molecular Tetraquarks
- Prospects for detecting the hidden-strange pentaquarklike state in the reaction
- Electromagnetic properties of possible triple-charm molecular hexaquarks
- Unveiling the Composition of the Single-Charm Molecular Pentaquarks: Insights from Radiative Decay and Magnetic Moment
- Electromagnetic characteristics as probes into the inner structures of the predicted molecular states
- Doubly-charmed pentaquark states in a mass splitting model