activity
20242026
collaborators

12 papers

hep-ph2026

Femtoscale imaging of the proton with Ioffe-time distributions

Robert G. Edwards, Joe Karpie, Christopher Monahan +5

Mapping how strongly interacting constituents are distributed within protons is a key goal of nuclear physics and a major direction of the future Electron Ion Collider program. We…

hep-lat2026

Reconstructing the full kinematic dependence of GPDs from pseudo-distributions

Hervé Dutrieux, Robert G. Edwards, Joe Karpie +7

We propose a reconstruction of the full dependence of unpolarized isovector proton generalized parton distributions (GPDs) and from lattice QCD dat…

hep-lat2026

Inverse problem in the LaMET framework

Hervé Dutrieux, Joe Karpie, Christopher J. Monahan +4

One proposal to compute parton distributions from first principles is the large momentum effective theory (LaMET), which requires the Fourier transform of matrix elements computed…

hep-lat2026

Accessing the Gluon Momentum Fraction of Nucleons through the Gradient Flow

Robert Edwards, Joe Karpie, Lorenzo Maio +5

We calculate the gluon momentum fraction of the nucleon using lattice quantum chromodynamics (QCD), with a nonperturbative renormalization technique based on the gradient flow. The…

hep-lat2026

Gaussian Processes for Inferring Parton Distributions

Yamil Cahuana Medrano, Hervé Dutrieux, Joseph Karpie +2

The extraction of parton distribution functions (PDFs) from experimental or lattice QCD data is an ill-posed inverse problem, where regularization strongly impacts both systematic…

hep-lat2025

Window observables for benchmarking parton distribution functions

Joe Karpie, Christopher J. Monahan, Kostas Orginos +1

Global analysis of collider and fixed-target experimental data and calculations from lattice quantum chromodynamics (QCD) are used to gain complementary information on the structur…