Nuclear Cold QCD: Review and Future Strategy

Fuente: arXiv
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Auteurs principaux: Arleo, F., Caucal, P., Deshpande, A., Durham, J. M., Innocenti, G. M., Jalilian-Marian, J., Kusina, A., Liu, M. X., Mehtar-Tani, Y., Naïm, C. -J., Paukkunen, H., Platchkov, S., Salazar, F., Vitev, I., Vogt, R.
Format: Preprint
Publié: 2025
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author Arleo, F.
Caucal, P.
Deshpande, A.
Durham, J. M.
Innocenti, G. M.
Jalilian-Marian, J.
Kusina, A.
Liu, M. X.
Mehtar-Tani, Y.
Naïm, C. -J.
Paukkunen, H.
Platchkov, S.
Salazar, F.
Vitev, I.
Vogt, R.
author_facet Arleo, F.
Caucal, P.
Deshpande, A.
Durham, J. M.
Innocenti, G. M.
Jalilian-Marian, J.
Kusina, A.
Liu, M. X.
Mehtar-Tani, Y.
Naïm, C. -J.
Paukkunen, H.
Platchkov, S.
Salazar, F.
Vitev, I.
Vogt, R.
contents This review examines data from hadron-nucleus collisions, primarily focusing on hard processes like Drell-Yan, heavy flavor and quarkonium production. It highlights observed modifications of particle yields as functions of momentum and rapidity, aiming to clarify the underlying QCD effects in cold nuclear matter (CNM). The paper outlines strategies for future experiments, including the Electron-Ion Collider (EIC), to distinguish between these effects. Key questions address the universality of suppression mechanisms and the role of non-perturbative physics, providing a road map for upcoming nuclear data.
format Preprint
id arxiv_https___arxiv_org_abs_2506_17454
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Nuclear Cold QCD: Review and Future Strategy
Arleo, F.
Caucal, P.
Deshpande, A.
Durham, J. M.
Innocenti, G. M.
Jalilian-Marian, J.
Kusina, A.
Liu, M. X.
Mehtar-Tani, Y.
Naïm, C. -J.
Paukkunen, H.
Platchkov, S.
Salazar, F.
Vitev, I.
Vogt, R.
High Energy Physics - Phenomenology
High Energy Physics - Experiment
High Energy Physics - Theory
Nuclear Experiment
Nuclear Theory
This review examines data from hadron-nucleus collisions, primarily focusing on hard processes like Drell-Yan, heavy flavor and quarkonium production. It highlights observed modifications of particle yields as functions of momentum and rapidity, aiming to clarify the underlying QCD effects in cold nuclear matter (CNM). The paper outlines strategies for future experiments, including the Electron-Ion Collider (EIC), to distinguish between these effects. Key questions address the universality of suppression mechanisms and the role of non-perturbative physics, providing a road map for upcoming nuclear data.
title Nuclear Cold QCD: Review and Future Strategy
topic High Energy Physics - Phenomenology
High Energy Physics - Experiment
High Energy Physics - Theory
Nuclear Experiment
Nuclear Theory
url https://arxiv.org/abs/2506.17454