Magnetic moments of mesons
arXiv:1211.4349 · doi:10.1103/PhysRevD.87.074012
Abstract
Magnetic moments of charged and neutral mesons are calculated with the use of the relativistic Hamiltonian derived from the path integral form of the Green's function. The magnetic moments are shown to be expressed via the average quark energies which are defined by the fundamental quantities: the string tension , the current quark masses, and the strong coupling constant . Resulting values for vector, axial, and tensor light and mesons agree well with all available lattice data.
17 pages,5 tables
References in corpus (8)
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- Pseudoscalar and vector meson form factors from lattice QCD
- Decay constants of the heavy-light mesons from the field correlator method
- The mixing and di-electron widths of higher charmonium states
- Magnetic moments of vector, axial, and tensor mesons in lattice QCD
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- On the possibility to observe higher bottomonium states in the processes
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Cited by in corpus (10)
- Meson Spectrum in Strong Magnetic Fields
- Nambu-Goldstone mesons in strong magnetic field
- Light Meson Form Factors at near Physical Masses
- Magnetic properties of ground-state mesons
- Relativistic path integral and relativistic Hamiltonians in QCD and QED
- Magnetic moment of the rho meson in instant-form relativistic quantum mechanics
- Meson Electro-Magnetic Form Factors in an Extended Nambu--Jona-Lasinio model including Heavy Quark Flavors
- Magnetic Moments of Negative Parity Baryons from Effective Hamiltonian Approach to QCD
- Magnetic focusing in atomic, nuclear and hadronic processes
- Multipole Moments of Heavy Vector and Axial-Vector Mesons in QCD