The strong force which binds hadrons is described by the theory of Quantum Chromodynamics (QCD). Determining the character and manifestations of QCD is one of the most important and challenging outstanding issues necessary for a comprehensive understanding of the structure of hadrons. Within the context of the QCD parton picture, the Parton Distribution Functions (PDFs) have been remarkably successful in describing a wide variety of processes. However, these PDFs have generally been confined to the description of collinear partons within the hadron. New experiments and facilities provide the opportunity to additionally explore the transverse structure of hadrons which is described by Generalized Parton Distributions (GPDs) and Transverse Mo...
We review the current status of parton distribution function (PDF) determinations for unpolarized an...
The understanding of the internal structure of the proton and other strongly interacting particles i...
Transverse momentum dependent (TMD) observables in high-energy particle collisions allow one to stud...
The strong force which binds hadrons is described by the theory of Quantum Chromodynamics (QCD). Det...
International audienceThe strong force which binds hadrons is described by the theory of quantum chr...
In the framework of quantum chromodynamics (QCD), parton distribution functions (PDFs) quantify how ...
In the framework of quantum chromodynamics (QCD), parton distribution functions (PDFs) quantify how ...
For many phenomenological applications involving hadrons in high energy processes the hadronic struc...
Recently, there have been rapid developments in lattice-QCD calculations of proton structure, especi...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2004.Includes bibliographi...
Precision computation of hadronic physics with lattice QCD is becoming feasible. The last decade has...
Analyses of LHC (and other!) experiments require robust and statistically accurate determinations of...
We review the state of the art of the determination of the parton substructure of the nucleon, as ex...
We review the current status of parton distribution function (PDF) determinations for unpolarized an...
The understanding of the internal structure of the proton and other strongly interacting particles i...
Transverse momentum dependent (TMD) observables in high-energy particle collisions allow one to stud...
The strong force which binds hadrons is described by the theory of Quantum Chromodynamics (QCD). Det...
International audienceThe strong force which binds hadrons is described by the theory of quantum chr...
In the framework of quantum chromodynamics (QCD), parton distribution functions (PDFs) quantify how ...
In the framework of quantum chromodynamics (QCD), parton distribution functions (PDFs) quantify how ...
For many phenomenological applications involving hadrons in high energy processes the hadronic struc...
Recently, there have been rapid developments in lattice-QCD calculations of proton structure, especi...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2004.Includes bibliographi...
Precision computation of hadronic physics with lattice QCD is becoming feasible. The last decade has...
Analyses of LHC (and other!) experiments require robust and statistically accurate determinations of...
We review the state of the art of the determination of the parton substructure of the nucleon, as ex...
We review the current status of parton distribution function (PDF) determinations for unpolarized an...
The understanding of the internal structure of the proton and other strongly interacting particles i...
Transverse momentum dependent (TMD) observables in high-energy particle collisions allow one to stud...