Nucleon Axial and Electromagnetic Form Factors
arXiv:1801.01635 · doi:10.1051/epjconf/201817506033
Abstract
We present results for the isovector axial, induced pseudoscalar, electric, and magnetic form factors of the nucleon. The calculations were done using -flavor HISQ ensembles generated by the MILC collaboration with lattice spacings 0.12, 0.09, 0.06 and pion masses 310, 220, 130. Excited-states contamination is controlled by using four-state fits to two-point correlators and by comparing two- versus three-states in three-point correlators. The behavior is analyzed using the model independent z-expansion and the dipole ansatz. Final results for the charge radii and magnetic moment are obtained using a simultaneous fit in , lattice spacing and finite volume.
8 pages, 5 figures, Lattice 2017 - 35th International Symposium on Lattice Field Theory, 18-24 June 2017, Granada, Spain
Cited by in corpus (10)
- Nucleon axial structure from lattice QCD
- Lattice QCD and Neutrino-Nucleus Scattering
- -state contamination in lattice calculations of the nucleon axial form factors
- Solving the PCAC puzzle for nucleon axial and pseudoscalar form factors
- -state contamination in lattice calculations of the nucleon pseudoscalar form factor
- -states and the projection method for the nucleon axial and pseudoscalar form factors
- Excited states in nucleon structure calculations
- Pion constituent quarks couplings strong form factors: a dynamical approach
- Unified model of nucleon elastic form factors and implications for neutrino-oscillation experiments
- Elements of QED-NRQED Effective Field Theory: II. Matching of Contact Interactions