We present a high-statistics calculation of nucleon electromagnetic form factors in Nf=2+1 lattice QCD using domain wall quarks on fine lattices, to attain a new level of precision in systematic and statistical errors. Our calculations use 323×64 lattices with lattice spacing a=0.084 fm for pion masses of 297, 355, and 403 MeV, and we perform an overdetermined analysis using on the order of 3600 to 7000 measurements to calculate nucleon electric and magnetic form factors up to Q2≈1.05 GeV2. Results are shown to be consistent with those obtained using valence domain wall quarks with improved staggered sea quarks, and using coarse domain wall lattices. We determine the isovector Dirac radius r1v, Pauli radius r2v and anomalous magnetic mome...
We present results for the nucleon electromagnetic form factors using an ensemble of maximally twist...
We present results for the nucleon electromagnetic form factors using an ensemble of maximally twist...
We present an update on our results of nucleon form factors measured on a large-volume lattice (8:1f...
We report recent progress in the calculations of the isovector nucleon electromagnetic form factors ...
It is imperative that lattice QCD serve to develop our understanding of hadron structure and, where ...
It is imperative that lattice QCD serve to develop our understanding of hadron structure and, where ...
It is imperative that lattice QCD serve to develop our understanding of hadron structure and, where ...
We compute the electromagnetic form factors of the nucleon in quenched lattice QCD, using non-pertur...
We present a comprehensive study of the electromagnetic form factor, the decay constant and the mass...
We present results for the nucleon electromagnetic form factors using an ensemble of maximally twist...
We present lattice QCD calculations of nucleon electromagnetic form factors using pion masses mπ=149...
We apply a formalism inspired by heavy-baryon chiral perturbation theory with finite-range regulariz...
We compute the electromagnetic form factors of the nucleon in quenched lattice QCD, using non-pertur...
We present results for the nucleon electromagnetic form factors, including the momentum transfer dep...
We present the current status of our lattice calculation of the electromagnetic form factor of the p...
We present results for the nucleon electromagnetic form factors using an ensemble of maximally twist...
We present results for the nucleon electromagnetic form factors using an ensemble of maximally twist...
We present an update on our results of nucleon form factors measured on a large-volume lattice (8:1f...
We report recent progress in the calculations of the isovector nucleon electromagnetic form factors ...
It is imperative that lattice QCD serve to develop our understanding of hadron structure and, where ...
It is imperative that lattice QCD serve to develop our understanding of hadron structure and, where ...
It is imperative that lattice QCD serve to develop our understanding of hadron structure and, where ...
We compute the electromagnetic form factors of the nucleon in quenched lattice QCD, using non-pertur...
We present a comprehensive study of the electromagnetic form factor, the decay constant and the mass...
We present results for the nucleon electromagnetic form factors using an ensemble of maximally twist...
We present lattice QCD calculations of nucleon electromagnetic form factors using pion masses mπ=149...
We apply a formalism inspired by heavy-baryon chiral perturbation theory with finite-range regulariz...
We compute the electromagnetic form factors of the nucleon in quenched lattice QCD, using non-pertur...
We present results for the nucleon electromagnetic form factors, including the momentum transfer dep...
We present the current status of our lattice calculation of the electromagnetic form factor of the p...
We present results for the nucleon electromagnetic form factors using an ensemble of maximally twist...
We present results for the nucleon electromagnetic form factors using an ensemble of maximally twist...
We present an update on our results of nucleon form factors measured on a large-volume lattice (8:1f...