We investigate the imaginary parts of the nucleon electromagnetic and axial form factors close to threshold in the framework of heavy baryon chiral perturbation theory. For the isovector electromagnetic form factors, we recover the well known strong enhancement near threshold. For the isoscalar ones, we show that there is no visible enhancement due to the three--pion continuum. This justifies the use of vector meson poles only in dispersion--theoretical calculations. We also calculate the imaginary part of the nucleon isovector axial form factor and show that it is small in the threshold region
AbstractI briefly summarize recent results for nucleon and Δ(1232) electromagnetic, axial and transi...
We present an improved determination of the ππ continuum contribution to the isovector spectral func...
We review the dispersion-theoretical analysis of the electromagnetic form factors of the nucleon. We...
Baryon form factors can be analyzed in a largely model-independent fashion in terms of two complemen...
We study the imaginary parts of the isoscalar electromagnetic and isovector axial form factors of th...
We study the imaginary parts of the isoscalar electromagnetic and isovector axial form factors of th...
The theoretical and experimental status of the isovector axial-vector current form factors G_A(q^2) ...
The vector form factor of the pion is calculated in the framework of chiral effective field theory w...
Using our present knowledge on effective hadronic theories, short-distance QCD information, the 1/N-...
AbstractThe vector form factor of the pion is calculated in the framework of chiral effective field ...
We present a theoretical parametrization of the nucleon electromagnetic form factors (FFs) based on ...
A quantitative understanding of isospin violation is an increasingly important ingredient for the ex...
The meson-cloud model of the nucleon consisting of a system of three valence quarks surrounded by a ...
We calculate the nucleon form factors G_A and G_P of the isovector axial-vector current and the pion...
We review the dispersion-theoretical analysis of the electromagnetic form factors of the nucleon. We...
AbstractI briefly summarize recent results for nucleon and Δ(1232) electromagnetic, axial and transi...
We present an improved determination of the ππ continuum contribution to the isovector spectral func...
We review the dispersion-theoretical analysis of the electromagnetic form factors of the nucleon. We...
Baryon form factors can be analyzed in a largely model-independent fashion in terms of two complemen...
We study the imaginary parts of the isoscalar electromagnetic and isovector axial form factors of th...
We study the imaginary parts of the isoscalar electromagnetic and isovector axial form factors of th...
The theoretical and experimental status of the isovector axial-vector current form factors G_A(q^2) ...
The vector form factor of the pion is calculated in the framework of chiral effective field theory w...
Using our present knowledge on effective hadronic theories, short-distance QCD information, the 1/N-...
AbstractThe vector form factor of the pion is calculated in the framework of chiral effective field ...
We present a theoretical parametrization of the nucleon electromagnetic form factors (FFs) based on ...
A quantitative understanding of isospin violation is an increasingly important ingredient for the ex...
The meson-cloud model of the nucleon consisting of a system of three valence quarks surrounded by a ...
We calculate the nucleon form factors G_A and G_P of the isovector axial-vector current and the pion...
We review the dispersion-theoretical analysis of the electromagnetic form factors of the nucleon. We...
AbstractI briefly summarize recent results for nucleon and Δ(1232) electromagnetic, axial and transi...
We present an improved determination of the ππ continuum contribution to the isovector spectral func...
We review the dispersion-theoretical analysis of the electromagnetic form factors of the nucleon. We...