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Heavy-ion Physics at a Fixed-Target Experiment Using the LHC Proton and Lead Beams (AFTER@LHC): Feasibility Studies for Quarkonium and Drell-Yan Production

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arxiv 1703.03726 v1 pith:ODUBI4UC submitted 2017-03-10 nucl-ex hep-exhep-phnucl-th

classification nucl-exhep-exhep-phnucl-th
keywords heavy-ionproductionbeamscollisionsdrell-yanfixed-targetleadphysics
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abstract

We outline the case for heavy-ion-physics studies using the multi-TeV lead LHC beams in the fixed-target mode. After a brief contextual reminder, we detail the possible contributions of AFTER@LHC to heavy-ion physics with a specific emphasis on quarkonia. We then present performance simulations for a selection of observables. These show that $\Upsilon(nS)$, $J/\psi$ and $\psi(2S)$ production in heavy-ion collisions can be studied in new energy and rapidity domains with the LHCb and ALICE detectors. We also discuss the relevance to analyse the Drell-Yan pair production in asymmetric nucleus-nucleus collisions to study the factorisation of the nuclear modification of partonic densities and of further quarkonia to restore their status of golden probes of the quark-gluon plasma formation.

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  1. Sivers Asymmetry in Photoproduction of $J/\psi$ and Jet at the EIC

    hep-ph 2019-08 conditional novelty 6.0 of 10

    Photoproduction of J/psi+jet at the EIC shows a gluon-dominated Sivers asymmetry of up to 6-8% in the models studied, making it a promising probe of the gluon Sivers function.

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