6533b7ddfe1ef96bd1273dd7
RESEARCH PRODUCT
Evidence of shadowing in inelastic nucleon-nucleon cross section
Mikko KuhaHannu PaukkunenHannu PaukkunenKari J. EskolaIlkka HeleniusIlkka Heleniussubject
PhysicsQuantum chromodynamicsParticle physicsLarge Hadron ColliderNuclear TheoryProtonNuclear TheoryFOS: Physical sciencesSigmaComputer Science::Computation and Language (Computational Linguistics and Natural Language and Speech Processing)hiukkasfysiikka114 Physical sciencesNuclear Theory (nucl-th)High Energy Physics - PhenomenologyHigh Energy Physics - Phenomenology (hep-ph)Saturation (graph theory)Nuclear ExperimentNucleonydinfysiikkaGlauberLine (formation)description
The Glauber modeling plays a key role in centrality-dependent measurements of heavy-ion collisions. A central input parameter in Glauber models is the inelastic nucleon-nucleon cross section $\sigma_{\text{nn}}^{\text{inel}}$ which is nearly always taken from proton-proton measurements. At the LHC energies $\sigma_{\text{nn}}^{\text{inel}}$ depends on the QCD dynamics at small $x$ and low interaction scales where the shadowing/saturation phenomena are expected to become relatively more important for larger nuclei than for the proton. Thus, $\sigma_{\text{nn}}^{\text{inel}}$ e.g. in Pb+Pb collisions may well be lower than what is seen in proton-proton collisions. In this talk, we demonstrate how to use the recent $W^\pm$ and $Z$ measurements as a "standard candle" to extract $\sigma_{\text{nn}}^{\text{inel}}$ in Pb+Pb collisions. Our analysis -- built on the ATLAS data, state-of-the-art NNLO QCD calculations and nuclear PDFs -- indicate that at the LHC energies $\sigma_{\text{nn}}^{\text{inel}}$ in Pb+Pb collisions is suppressed relative to the proton-proton measurements by tens of percents. We demonstrate that this is in line with expectations from nuclear PDFs.
year | journal | country | edition | language |
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2021-09-01 |