Diffractive single hadron production in a saturation framework at the NLO

Fuente: arXiv
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Main Authors: Fucilla, Michael, Grabovsky, Andrey, Li, Emilie, Szymanowski, Lech, Wallon, Samuel
Format: Preprint
Published: 2023
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author Fucilla, Michael
Grabovsky, Andrey
Li, Emilie
Szymanowski, Lech
Wallon, Samuel
author_facet Fucilla, Michael
Grabovsky, Andrey
Li, Emilie
Szymanowski, Lech
Wallon, Samuel
contents We calculate the cross-sections of diffractive single hadron photo- or electroproduction with large $p_T$, on a nucleon or a nucleus in the shockwave formalism. We use the hybrid formalism mixing collinear factorization with high energy small-$x$ factorization with the impact factors computed at next-to-leading order accuracy. We prove the cancellation of divergence and we determine the finite parts of the differential cross-sections. We work in general kinematics such that both photoproduction and leptoproduction are considered. The results can be used to detect saturation effects, at both the future EIC or already at LHC, using Ultra-Peripheral Collisions.
format Preprint
id arxiv_https___arxiv_org_abs_2310_11066
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Diffractive single hadron production in a saturation framework at the NLO
Fucilla, Michael
Grabovsky, Andrey
Li, Emilie
Szymanowski, Lech
Wallon, Samuel
High Energy Physics - Phenomenology
High Energy Physics - Experiment
We calculate the cross-sections of diffractive single hadron photo- or electroproduction with large $p_T$, on a nucleon or a nucleus in the shockwave formalism. We use the hybrid formalism mixing collinear factorization with high energy small-$x$ factorization with the impact factors computed at next-to-leading order accuracy. We prove the cancellation of divergence and we determine the finite parts of the differential cross-sections. We work in general kinematics such that both photoproduction and leptoproduction are considered. The results can be used to detect saturation effects, at both the future EIC or already at LHC, using Ultra-Peripheral Collisions.
title Diffractive single hadron production in a saturation framework at the NLO
topic High Energy Physics - Phenomenology
High Energy Physics - Experiment
url https://arxiv.org/abs/2310.11066