Nucleon electromagnetic form factors from lattice QCD
Abstract
We evaluate the isovector nucleon electromagnetic form factors in quenched and unquenched QCD on the lattice using Wilson fermions. In the quenched theory we use a lattice of spatial size 3 fm at β=6.0 enabling us to reach low momentum transfers and a lowest pion mass of about 400 MeV. In the unquenched theory we use two degenerate flavors of dynamical Wilson fermions on a lattice of spatial size 1.9 fm at β=5.6 and lowest pion mass of about 380 MeV enabling comparison with the results obtained in the quenched theory. that unquenching effects are small for the pion masses considered in this work. We compare our lattice results to the isovector part of the experimentally measured form factors.
- Publication:
-
Physical Review D
- Pub Date:
- August 2006
- DOI:
- arXiv:
- arXiv:hep-lat/0605017
- Bibcode:
- 2006PhRvD..74c4508A
- Keywords:
-
- 11.15.Ha;
- 12.38.-t;
- 12.38.Aw;
- 12.38.Gc;
- Lattice gauge theory;
- Quantum chromodynamics;
- General properties of QCD;
- Lattice QCD calculations;
- High Energy Physics - Lattice;
- High Energy Physics - Phenomenology;
- Nuclear Experiment;
- Nuclear Theory
- E-Print:
- Typos corrected, one reference added, version accepted for publication in Phys. Rev. D, 14 pages, 20 figures