Concurrent approaches to Generalized Parton Distribution modeling: the pion’s case
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Abstract
The concept of Generalized Parton Distributions promises an understanding
of the generation of the charge, spin, and energy-momentum structure
of hadrons by quarks and gluons. Forthcoming measurements with unprecedented
accuracy at Jefferson Lab and at CERN will challenge our quantitative
description of the three-dimensional structure of hadrons. To fully exploit these
future measurements, new tools and models are currently being developed.
We explain the difficulties of Generalized Parton Distribution modeling, and
present some recent progresses. In particular we describe the symmetrypreserving
Dyson-Schwinger and Bethe-Salpeter framework. We also discuss
various equivalent parameterizations and sketch how to combine them to obtain
models satisfying a priori all required theoretical constraints. At last we
explain why these developments naturally fit in a versatile software framework,
named PARTONS, dedicated to the theory and phenomenology of GPDs.
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Bibliographic citation
N. Chouika, Cedric Mezrag, Hervé Moutarde, José Rodríguez-Quintero. Concurrent approaches to Generalized Parton Distribution modeling: the pion’s case. EPJ Web of Conferences , eISSN: 2100-014X, 137, 05020 ,2017. DOI https://doi.org/10.1051/epjconf/201713705020














