International audienceIn order to learn effectively from measurements of generalised parton distributions (GPDs), it is desirable to compute them using a framework that can potentially connect empirical information with basic features of the Standard Model. We sketch an approach to such computations, based upon a rainbow-ladder (RL) truncation of QCD's Dyson–Schwinger equations and exemplified via the pion's valence dressed-quark GPD, Hπv(x,ξ,t) . Our analysis focuses primarily on ξ=0 , although we also capitalise on the symmetry-preserving nature of the RL truncation by connecting Hπv(x,ξ=±1,t) with the pion's valence-quark parton distribution amplitude. We explain that the impulse-approximation used hitherto to define the pion's valence d...
A rainbow-ladder truncation of QCD's Dyson-Schwinger equations, constrained by existing applica...
International audienceThe impulse-approximation expression used hitherto to define the pion's valenc...
International audienceThe impulse-approximation expression used hitherto to define the pion's valenc...
AbstractIn order to learn effectively from measurements of generalised parton distributions (GPDs), ...
In order to learn effectively from measurements of generalised parton distributions (GPDs), it is de...
In order to learn effectively from measurements of generalised parton distributions (GPDs), it is de...
AbstractIn order to learn effectively from measurements of generalised parton distributions (GPDs), ...
AbstractWithin the Dyson–Schwinger equation formulation of QCD, a rainbow ladder truncation is used ...
Within the Dyson–Schwinger equation formulation of QCD, a rainbow ladder truncation is used to calcu...
Within the Dyson-Schwinger equation formulation of QCD, a rainbow ladder truncation is used to calcu...
Abstract not available.C. Mezrag, L. Chang, H. Moutarde, C.D. Roberts, J. Rodríguez-Quintero, F. Sab...
Within the Dyson–Schwinger equation formulation of QCD, a rainbow ladder truncation is used to calcu...
AbstractThe impulse-approximation expression used hitherto to define the pion's valence-quark distri...
The impulse-approximation expression used hitherto to define the pion's valence-quark distribution f...
The impulse-approximation expression used hitherto to define the pion’s valence-quark distribution ...
A rainbow-ladder truncation of QCD's Dyson-Schwinger equations, constrained by existing applica...
International audienceThe impulse-approximation expression used hitherto to define the pion's valenc...
International audienceThe impulse-approximation expression used hitherto to define the pion's valenc...
AbstractIn order to learn effectively from measurements of generalised parton distributions (GPDs), ...
In order to learn effectively from measurements of generalised parton distributions (GPDs), it is de...
In order to learn effectively from measurements of generalised parton distributions (GPDs), it is de...
AbstractIn order to learn effectively from measurements of generalised parton distributions (GPDs), ...
AbstractWithin the Dyson–Schwinger equation formulation of QCD, a rainbow ladder truncation is used ...
Within the Dyson–Schwinger equation formulation of QCD, a rainbow ladder truncation is used to calcu...
Within the Dyson-Schwinger equation formulation of QCD, a rainbow ladder truncation is used to calcu...
Abstract not available.C. Mezrag, L. Chang, H. Moutarde, C.D. Roberts, J. Rodríguez-Quintero, F. Sab...
Within the Dyson–Schwinger equation formulation of QCD, a rainbow ladder truncation is used to calcu...
AbstractThe impulse-approximation expression used hitherto to define the pion's valence-quark distri...
The impulse-approximation expression used hitherto to define the pion's valence-quark distribution f...
The impulse-approximation expression used hitherto to define the pion’s valence-quark distribution ...
A rainbow-ladder truncation of QCD's Dyson-Schwinger equations, constrained by existing applica...
International audienceThe impulse-approximation expression used hitherto to define the pion's valenc...
International audienceThe impulse-approximation expression used hitherto to define the pion's valenc...