By extracting the beam with a bent crystal or by using an internal gas target, the multi-TeV proton and lead LHC beams allow one to perform the most energetic fixed-target experiments ever and to study pp, pd and pA collisions at √sNN = 115 GeV and Pbp and PbA collisions at √sNN = 72 GeV with high precision and modern detection techniques. Such studies would address open questions in the domain of the nucleon and nucleus partonic structure at high-x, quark-gluon plasma and, by using longitudinally or transversally polarised targets, spin physics. In this paper, we will review the technical solutions to obtain a high-luminosity fixed-target experiment at the LHC and will discuss their possible implementations with the ALICE and LHCb detectors.

High luminosity fixed-target experiment at the LHC

Donato F.;Signori A.;
2018-01-01

Abstract

By extracting the beam with a bent crystal or by using an internal gas target, the multi-TeV proton and lead LHC beams allow one to perform the most energetic fixed-target experiments ever and to study pp, pd and pA collisions at √sNN = 115 GeV and Pbp and PbA collisions at √sNN = 72 GeV with high precision and modern detection techniques. Such studies would address open questions in the domain of the nucleon and nucleus partonic structure at high-x, quark-gluon plasma and, by using longitudinally or transversally polarised targets, spin physics. In this paper, we will review the technical solutions to obtain a high-luminosity fixed-target experiment at the LHC and will discuss their possible implementations with the ALICE and LHCb detectors.
2018
2018 International Conference on Hard and Electromagnetic Probes of High-Energy Nuclear Collisions, Hard Probes 2018
Congress Center of Aix-Les-Bains, fra
2018
345
1
5
https://pos.sissa.it/345/041
hadronic interactions; fixed-target experiment at the LHC
Hadjidakis C.; Brodsky S. J.; Cavoto G.; Da Silva C.; Donato F.; Echevarria M. G.; Ferreiro E. G.; Hrivnacova I.; Kikola D.; Klein A.; Kurepin A.; Kusina A.; Lansberg J. P.; Lorce C.; Lyonnet F.; Makdisi Y.; Massacrier L.; Porteboeuf S.; Quintans C.; Rakotozafindrabe A.; Robbe P.; Scandale W.; Schienbein I.; Seixas J.; Shao H. S.; Signori A.; Topilskaya N.; Trzeciak B.; Uras A.; Wagner J.; Yamanaka N.; Yang Z.; Zelenski A.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/1894395
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