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grokqcd committed Apr 8, 2024
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10 changes: 6 additions & 4 deletions main.tex
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Expand Up @@ -792,10 +792,10 @@ \subsubsection{Internal structure of Goldstone mesons and nucleon}



% David Richards
% David Richards/Joe Karpie
\subsubsection{Internal structure of mesons and nucleons}\label{sec:meshadstruct}
\begin{itemize}
\item{\bf Motivation:} A quantitative understanding of the internal
\item{\bf Motivation:} A quantitative understanding of the internal
structure of hadrons, including the distribution of charge, spin
and mass, in terms of the quarks and gluons of QCD is a central
goal of nuclear physics, and key to high-energy physics through
Expand All @@ -808,7 +808,7 @@ \subsubsection{Internal structure of mesons and nucleons}\label{sec:meshadstruct
measures of one-dimensional and three-dimensional hadron
structure encapsulated in the Parton Distribution Functions (PDFs),
Generalized Parton Distribution Functions (GPDs) and
Transverse-Momentum-Dependent Functions (TMDs). Performing
Transverse-Momentum-Dependent Functions (TMDs) as well as studying their evolution kernels from first principles. Performing
computations of a precision that can both confront experiment,
and complement experiment in global analysis.
\item{\bf Method:} Computation of the three-point matrix elements of quark- and
Expand All @@ -817,7 +817,7 @@ \subsubsection{Internal structure of mesons and nucleons}\label{sec:meshadstruct
short-distance-factorization/pseudo-PDF framework. Exploitation
of the ``distillation'' both to fully sample lattices, and
provide control over excited-state contributions.
\item{\bf Timeline:} \hfill [last updated May 2023]
\item{\bf Timeline:} \hfill [last updated May 2024]
\begin{itemize}
\item{\bf 2017} First calculation of the nucleon unpolarized PDF within
the pseudo-PDF framework~\cite{Orginos:2017kos}.
Expand All @@ -829,6 +829,8 @@ \subsubsection{Internal structure of mesons and nucleons}\label{sec:meshadstruct
the nucleon~\cite{HadStruc:2022yaw}
\item{\bf 2022} Combined global analysis of lattice QCD and
experimental data to compute the Pion PDF~\cite{JeffersonLabAngularMomentumJAM:2022aix}.
\item{\bf 2023} Combined global analysis of lattice QCD and experimental data for gluon spin structure of the nucleon~\cite{Karpie:2023nyg}
\item{\bf 2023} First non-perturbative study of evolution of nucleon pseudo-distribution~\cite{Dutrieux:2023zpy}
\item{\bf 2024} Calculation of the isosinglet unpolarized and
polarized nucleon PDF.
\item{\bf 2024} First Calculation of the nucleon Generalized Parton
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28 changes: 28 additions & 0 deletions ref.bib
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Expand Up @@ -15,6 +15,34 @@ @article{Aoyama:2020ynm
}


@article{Dutrieux:2023zpy,
author = "Dutrieux, H. and Karpie, J. and Monahan, C. and Orginos, K. and Zafeiropoulos, S.",
title = "{Evolution of Parton Distribution Functions in the Short-Distance Factorization Scheme}",
eprint = "2310.19926",
archivePrefix = "arXiv",
primaryClass = "hep-lat",
reportNumber = "JLAB-THY-23-3951",
month = "10",
year = "2023"
}

@article{JeffersonLabAngularMomentumJAM:2022aix,
author = "Barry, P. C. and others",
collaboration = "Jefferson Lab Angular Momentum (JAM), HadStruc",
title = "{Complementarity of experimental and lattice QCD data on pion parton distributions}",
eprint = "2204.00543",
archivePrefix = "arXiv",
primaryClass = "hep-ph",
reportNumber = "JLAB-THY-22-3592",
doi = "10.1103/PhysRevD.105.114051",
journal = "Phys. Rev. D",
volume = "105",
number = "11",
pages = "114051",
year = "2022"
}


@article{NA48:2001bct,
author = "Lai, A. and others",
collaboration = "NA48",
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