paper

Spin Physics with a fixed-target experiment at the LHC

arXiv:1903.03379

Abstract

The multi-TeV proton and ion beams of the LHC would allow for the most energetic fixed-target experiment ever. In particular, , d and A collisions could be performed at = 115~GeV, as well as Pb and PbA collisions at = 72~GeV, in a parasitic way by making use of the already existing LHCb and ALICE detectors in fixed-target mode. This would offer the possibility to carry out a ground-breaking physics program, to study the nucleon and nuclear structure at high , the spin content of the nucleon and the phases of the nuclear matter from a new rapidity viewpoint. In this talk I focus on the spin physics axis of the full program developed so far by the AFTER@LHC study group.

6 pages, 4 figures. Proceedings of the 23rd International Spin Physics Symposium (SPIN 2018), Ferrara, Italy, September 10-14, 2018