Electromagnetic Currents and Magnetic Moments in EFT
arXiv:0906.1800 · doi:10.1103/PhysRevC.80.034004
Abstract
A two-nucleon potential and consistent electromagnetic currents are derived in chiral effective field theory (EFT) at, respectively, (or NLO) and (or NLO), where generically denotes the low-momentum scale and is the electric charge. Dimensional regularization is used to renormalize the pion-loop corrections. A simple expression is derived for the magnetic dipole () operator associated with pion loops, consisting of two terms, one of which is determined, uniquely, by the isospin-dependent part of the two-pion-exchange potential. This decomposition is also carried out for the operator arising from contact currents, in which the unique term is determined by the contact potential. Finally, the low-energy constants (LEC's) entering the NLO potential are fixed by fits to the S- and P-wave phase shifts up to 100 MeV lab energies.
v2: references added; corrections to text and abstract suggested by referee added