Ultrahigh-energy cosmic rays: Anomalies, QCD, and LHC data
arXiv:1902.09505 · doi:10.1051/epjconf/201921002005
Abstract
Measurements of proton and nuclear collisions at the Large Hadron Collider at nucleon-nucleon c.m. energies up to 13 TeV, have improved our understanding of hadronic interactions at the highest energies reached in collisions of cosmic rays with nuclei in the earth atmosphere, up to TeV. The Monte Carlo event generators (EPOS, QGSJET, and SIBYLL) commonly used to describe the air showers generated by ultrahigh-energy cosmic rays (UHECR, with -- eV) feature now, after parameter retuning based on LHC Run-I data, more consistent predictions on the nature of the cosmic rays at the tail of the measured spectrum. However, anomalies persist in the data that cannot be accommodated by the models. Among others, the total number of muons (as well as their maximum production depth) remains significantly underestimated (overestimated) by all models. Comparisons of EPOS, QGSJET, and SIBYLL predictions to the latest LHC data, and to collider MC generators such as PYTHIA, indicate that improved description of hard multiple minijet production and nuclear effects may help reduce part of the data--model discrepancies, shed light on the UHECR composition approaching the observed eV cutoff, and uncover any potential new physics responsible of the observed anomalies.
Minor text corrections. 6 pages, 10 figures. Proceedings of UHECR2018 (Paris). EDP WebOfConf to appear
References in corpus (11)
- PYTHIA 6.4 Physics and Manual
- Depth of Maximum of Air-Shower Profiles at the Pierre Auger Observatory: Measurements at Energies above 10^17.8 eV
- One-dimensional Hybrid Approach to Extensive Air Shower Simulation
- Cosmic Rays from the Knee to the Highest Energies
- Measurement of the proton-air cross-section at TeV with the Pierre Auger Observatory
- The Cosmic Ray Energy Spectrum Observed with the Surface Detector of the Telescope Array Experiment
- Study of Ultra-High Energy Cosmic Ray Composition Using Telescope Array's Middle Drum Detector and Surface Array in Hybrid Mode
- New facts about muon production in Extended Air Shower simulations
- Hadronic Multiparticle Production at Ultra-High Energies and Extensive Air Showers
- Progress in high-energy cosmic ray physics
- Constraining high energy interaction mechanisms by studying forward hadron production at the LHC