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arXiv:2605.19062·v1·Nuclear Theory

Coulomb Corrections to Three-Nucleon Moments

Ha S. Nguyen🇺🇸 · Jared Vanasse🇺🇸

Abstract

The Helium-3 () magnetic moment and Gamow-Teller (GT) matrix element in triton () -decay are calculated in pionless effective field theory () to next-to-leading order (NLO). Coulomb corrections are included perturbatively to in this framework and should naively be corrections, where MeV is related to the three-nucleon binding momentum. Fitting the two-nucleon iso-vector magnetic current low-energy constant (LEC), , to the magnetic moment and the two-nucleon iso-scalar magnetic current LEC, , to the deuteron magnetic moment we find the NLO magnetic moment in units of nuclear magnetons is -2.130 and the surprisingly small correction is 0.00335, of the LO prediction. The leading-order (LO) GT matrix element for -decay is 0.9806 while again it has a surprisingly small Coulomb correction of , of the LO prediction. At NLO we calculate the GT matrix element of -decay, including the Coulomb correction, in terms of the two-nucleon axial current LEC . Fitting to the half-life we make a prediction for the proton-proton fusion reduced matrix element of . Finally, we attempt to explain the unusually small size of the corrections by investigating the Wigner-SU(4) expansion of these observables.

Comments: 45 pages, 6 figures