Magnetic moment of the proton
Gustavo R. González-Martín, I. Taboada, Javier G. Gonzalez
Abstract
Open-access reader
Gustavo R. González-Martín, I. Taboada, Javier G. Gonzalez
Abstract
Open-access reader
The magnetic moment of the proton is calculated using a geometric unified theory. The geometry determines a generalized Pauli equation showing anomalous terms due to the triplet proton structure. The theoretical result gives a bare anomalous Lande gyromagnetic g-factor close to the experimental value. The necessary radiative corrections should be included in the actual theoretical dressed value. The first order correction raises the value to 2(2.7796). Similarly we obtain for the neutron gyromagnetic g-factor the value 2(1.9267).
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The magnetic moment of the proton is calculated using a geometric unified theory. The geometry determines a generalized Pauli equation showing anomalous terms due to the triplet proton structure. The theoretical result gives a bare anomalous Lande gyromagnetic g-factor close to the experimental value. The necessary radiative corrections should be included in the actual theoretical dressed value. The first order correction raises the value to 2(2.7796). Similarly we obtain for the neutron gyromagnetic g-factor the value 2(1.9267).
Key concepts: Proton magnetic moment, Proton, Moment (physics), Nuclear magnetic moment, Magnetic moment, Physics, Electron magnetic dipole moment, Nuclear physics