AbstractThe pion structure function is investigated in a simple model, where pion and constituent quark fields are coupled through the simplest pseudoscalar coupling. The imaginary part of the forward γ★π→γ★π scattering amplitude is evaluated and related to the structure functions. It is shown that the introduction of non-perturbative effects, linked to the size of the pion and preserving gauge invariance, allows a connection with the quark distribution. It is predicted that higher-twist terms become negligible for Q2 larger than ∼2 GeV2 and that quarks in the pion have a momentum fraction smaller than in the proton case
We develop a relativistic quark model for pion structure, which incorporates the non-trivial structu...
Off-forward structure functions of the pion are investigated in twist-two and twist-three approximat...
The impulse-approximation expression used hitherto to define the pion's valence-quark distribution f...
The pion structure function is investigated in a simple model, where pion and constituent quark fiel...
peer reviewedThe pion structure function is investigated in a simple pseudo-scalar coupling model of...
The pion structure function is investigated in a simple model, where the pion and its constituent qu...
AbstractWe extend our model for the pion, which we used previously to calculate its diagonal structu...
We present a method to evaluate the pion structure functions from a box diagram calculation. Pion an...
We extend our model for the pion, which we used previously to calculate its diagonal structure funct...
AbstractWe extend our model for the pion, which we used previously to calculate its diagonal structu...
We develop a relativistic quark model for pion structure, which incorporates the nontrivial structur...
The leading-twist valence-quark distribution function in the pion is obtained at a low normalization...
We present here an extension of our model for the pion, which we used previously to calculate its di...
We extend our model for the pion, which we used previously to calculate its diagonal structure funct...
We develop a relativistic quark model for pion structure, which incorporates the non-trivial structu...
We develop a relativistic quark model for pion structure, which incorporates the non-trivial structu...
Off-forward structure functions of the pion are investigated in twist-two and twist-three approximat...
The impulse-approximation expression used hitherto to define the pion's valence-quark distribution f...
The pion structure function is investigated in a simple model, where pion and constituent quark fiel...
peer reviewedThe pion structure function is investigated in a simple pseudo-scalar coupling model of...
The pion structure function is investigated in a simple model, where the pion and its constituent qu...
AbstractWe extend our model for the pion, which we used previously to calculate its diagonal structu...
We present a method to evaluate the pion structure functions from a box diagram calculation. Pion an...
We extend our model for the pion, which we used previously to calculate its diagonal structure funct...
AbstractWe extend our model for the pion, which we used previously to calculate its diagonal structu...
We develop a relativistic quark model for pion structure, which incorporates the nontrivial structur...
The leading-twist valence-quark distribution function in the pion is obtained at a low normalization...
We present here an extension of our model for the pion, which we used previously to calculate its di...
We extend our model for the pion, which we used previously to calculate its diagonal structure funct...
We develop a relativistic quark model for pion structure, which incorporates the non-trivial structu...
We develop a relativistic quark model for pion structure, which incorporates the non-trivial structu...
Off-forward structure functions of the pion are investigated in twist-two and twist-three approximat...
The impulse-approximation expression used hitherto to define the pion's valence-quark distribution f...