arXiv:2504.04268·v1·High Energy Physics — Phenomenology
Physics with high-luminosity proton-nucleus collisions at the LHC
D. d'Enterria🇨🇭 · C. A. Flett🇫🇷 · I. Grabowska-Bold🇵🇱 · C. Hadjidakis🇫🇷 · P. Kotko🇵🇱 · A. Kusina🇵🇱 · J.P. Lansberg🇫🇷 · R. McNulty🇮🇪 · M. Rinaldi🇮🇹 · L. Bonechi🇮🇹 · R. Bruce🇨🇭 · C. Da Silva🇺🇸
Abstract
The physics case for the operation of high-luminosity proton-nucleus () collisions during Run 3 and 4 at the LHC is reviewed. The collection of (1-10 pb) of proton-lead (Pb) collisions at the LHC will provide unique physics opportunities in a broad range of topics including proton and nuclear parton distribution functions (PDFs and nPDFs), generalised parton distributions (GPDs), transverse momentum dependent PDFs (TMDs), low- QCD and parton saturation, hadron spectroscopy, baseline studies for quark-gluon plasma and parton collectivity, double and triple parton scatterings (DPS/TPS), photon-photon collisions, and physics beyond the Standard Model (BSM); which are not otherwise as clearly accessible by exploiting data from any other colliding system at the LHC. This report summarises the accelerator aspects of high-luminosity operation at the LHC, as well as each of the physics topics outlined above, including the relevant experimental measurements that motivate -- much -- larger datasets.
Comments: 26 pages inc. refs, 1 figure, 3 tables. Slightly expanded version of a contribution submitted for the 2025 European Strategy for Particle Physics