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Resolved photoproduction in {\tt MadGraph5\_aMC@NLO}
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abstract
The upcoming Electron-Ion Collider (EIC), with its high luminosity, will offer an unprecedented opportunity to explore the internal structure of atomic nucleus over an extended energy range from $\sqrt{s_{ep}} =$ 45 GeV to $\sqrt{s_{ep}} =$ 140 GeV. A particularly promising aspect of this collider is the study of the partonic structure with quasi-real photons which can also be studied in inclusive ultra-peripheral collisions at the Large Hadron Collider (LHC). In this work, we present our validation of resolved photoproduction at fixed order for (next-to-)leading order using \texttt{MadGraph5\_aMC@NLO}, a widely adopted framework at the LHC.
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Cited by 1 Pith paper
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Prospects for early heavy-quark measurements at the EIC
A leading-order MadGraph study maps the expected heavy-quark and double-charm yields and nuclear modification ratios for early EIC beam configurations.
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