We present a new analysis method that allows one to understand and model excited state contributions in observables that are dominated by a pion pole. We apply this method to extract axial and (induced) pseudoscalar nucleon isovector form factors, which satisfy the constraints due to the partial conservation of the axial current up to expected discretization effects. Effective field theory predicts that the leading contribution to the (induced) pseudoscalar form factor originates from an exchange of a virtual pion, and thus exhibits pion pole dominance. Using our new method, we can recover this behavior directly from lattice data. The numerical analysis is based on a large set of ensembles generated by the CLS effort, including physical pio...
We calculate the nucleon form factors G_A and G_P of the isovector axial-vector current and the pion...
Lattice simulations of QCD have produced precise estimates for the masses of the lowest-lying hadron...
We present the first calculation on the Δ axial vector and pseudoscalar form factors using lattice Q...
We present a new analysis method that allows one to understand and model excited state contributions...
It has been observed in multiple lattice determinations of isovector axial and pseudoscalar nucleon ...
We report a calculation of the nucleon axial form factors G(A)(q)(Q(2)) and G(A)(q)(Q(2)) for all th...
The axial structure of the nucleon, in particular the iso-vector axial and (induced) pseudoscalar fo...
We present preliminary results on the axial form factor GA(Q2) and the induced pseudoscalar form fac...
We use a continuum quark+diquark approach to the nucleon bound-state problem in relativistic quantum...
We present results for the isovector axial, induced pseudoscalar, electric, and magnetic form factor...
We present results on the nucleon axial and induced pseudoscalar form factors using an ensemble of t...
We present results on the nucleon axial form factors within lattice QCD using two flavors of degener...
14 pages, 12 figuresWe present results on the nucleon axial form factors within lattice QCD using tw...
Results for the isovector axial form factors of the proton from a lattice QCD calculation are presen...
We calculate the nucleon form factors G_A and G_P of the isovector axial-vector current and the pion...
Lattice simulations of QCD have produced precise estimates for the masses of the lowest-lying hadron...
We present the first calculation on the Δ axial vector and pseudoscalar form factors using lattice Q...
We present a new analysis method that allows one to understand and model excited state contributions...
It has been observed in multiple lattice determinations of isovector axial and pseudoscalar nucleon ...
We report a calculation of the nucleon axial form factors G(A)(q)(Q(2)) and G(A)(q)(Q(2)) for all th...
The axial structure of the nucleon, in particular the iso-vector axial and (induced) pseudoscalar fo...
We present preliminary results on the axial form factor GA(Q2) and the induced pseudoscalar form fac...
We use a continuum quark+diquark approach to the nucleon bound-state problem in relativistic quantum...
We present results for the isovector axial, induced pseudoscalar, electric, and magnetic form factor...
We present results on the nucleon axial and induced pseudoscalar form factors using an ensemble of t...
We present results on the nucleon axial form factors within lattice QCD using two flavors of degener...
14 pages, 12 figuresWe present results on the nucleon axial form factors within lattice QCD using tw...
Results for the isovector axial form factors of the proton from a lattice QCD calculation are presen...
We calculate the nucleon form factors G_A and G_P of the isovector axial-vector current and the pion...
Lattice simulations of QCD have produced precise estimates for the masses of the lowest-lying hadron...
We present the first calculation on the Δ axial vector and pseudoscalar form factors using lattice Q...