We present a comprehensive analysis of the electromagnetic form factors of the nucleon from a lattice simulation with two flavors of dynamical O(a)-improved Wilson fermions. A key feature of our calculation is that we make use of an extensive ensemble of lattice gauge field configurations with four different lattice spacings, multiple volumes, and pion masses down to m(sub)π∼180 MeV. We find that by employing Kelly-inspired parametrizations for the Q² dependence of the form factors, we are able to obtain stable fits over our complete ensemble. Dirac and Pauli radii and the anomalous magnetic moments of the nucleon are extracted and results at light quark masses provide evidence for chiral nonanalytic behavior in these fundamental observabl...
We present results for the nucleon electromagnetic form factors using an ensemble of maximally twist...
We discuss techniques for evaluating sea quark contributions to hadronic form factors on the lattice...
The fomalism is developed to express nucleon matrix elements of the electromagnetic current in terms...
We present a comprehensive analysis of the electromagnetic form factors of the nucleon from a lattic...
The nucleon electromagnetic form factors continue to be of major interest for experimentalists and p...
The QCDSF/UKQCD collaboration has an ongoing program to calculate nucleon matrix elements with two f...
We compute the electromagnetic form factors of the nucleon in quenched lattice QCD, using non-pertur...
We present lattice QCD calculations of nucleon electromagnetic form factors using pion masses m[subs...
The electromagnetic and axial form factors of the nucleon are evaluated in twisted mass QCD with two...
We present a 2 + 1-flavor lattice QCD calculation of the electromagnetic Dirac and Pauli form factor...
Lattice simulations of hadronic structure are now reaching a level where they are able to not only c...
We present a comprehensive study of the electromagnetic form factor, the decay constant and the mass...
We explore the possibility of extrapolating state of the art lattice QCD calculations of nucleon for...
We report a direct lattice QCD calculation of the strange nucleon electromagnetic form factors G[s o...
The nucleon electromagnetic form factors continue to be of major interest for experimentalists and p...
We present results for the nucleon electromagnetic form factors using an ensemble of maximally twist...
We discuss techniques for evaluating sea quark contributions to hadronic form factors on the lattice...
The fomalism is developed to express nucleon matrix elements of the electromagnetic current in terms...
We present a comprehensive analysis of the electromagnetic form factors of the nucleon from a lattic...
The nucleon electromagnetic form factors continue to be of major interest for experimentalists and p...
The QCDSF/UKQCD collaboration has an ongoing program to calculate nucleon matrix elements with two f...
We compute the electromagnetic form factors of the nucleon in quenched lattice QCD, using non-pertur...
We present lattice QCD calculations of nucleon electromagnetic form factors using pion masses m[subs...
The electromagnetic and axial form factors of the nucleon are evaluated in twisted mass QCD with two...
We present a 2 + 1-flavor lattice QCD calculation of the electromagnetic Dirac and Pauli form factor...
Lattice simulations of hadronic structure are now reaching a level where they are able to not only c...
We present a comprehensive study of the electromagnetic form factor, the decay constant and the mass...
We explore the possibility of extrapolating state of the art lattice QCD calculations of nucleon for...
We report a direct lattice QCD calculation of the strange nucleon electromagnetic form factors G[s o...
The nucleon electromagnetic form factors continue to be of major interest for experimentalists and p...
We present results for the nucleon electromagnetic form factors using an ensemble of maximally twist...
We discuss techniques for evaluating sea quark contributions to hadronic form factors on the lattice...
The fomalism is developed to express nucleon matrix elements of the electromagnetic current in terms...