info:eu-repo/semantics/article
Through the looking-glass with ALICE into the quark-gluon plasma: A new test for hadronic interaction models used in air shower simulations
Date
2020-11Registration in:
Anchordoqui, Luis A.; García Canal, Carlos Alberto; Sciutto, Sergio Juan; Soriano, Jorge F.; Through the looking-glass with ALICE into the quark-gluon plasma: A new test for hadronic interaction models used in air shower simulations; Elsevier Science; Physics Letters B; 810; 135837; 11-2020; 1-4
0370-2693
CONICET Digital
CONICET
Author
Anchordoqui, Luis A.
García Canal, Carlos Alberto
Sciutto, Sergio Juan
Soriano, Jorge F.
Abstract
Recently, the ALICE Collaboration reported an enhancement of the yield ratio of strange and multi-strange hadrons to charged pions as a function of multiplicity at mid-rapidity in proton-proton, proton-lead, lead-lead, and xenon-xenon scattering. ALICE observations provide a strong indication that a quark-gluon plasma is partly formed in high multiplicity events of both small and large colliding systems. Motivated by ALICE’s results, we propose a new test for hadronic interaction models used for analyzing ultra-highenergy-cosmic-ray (UHECR) collisions with air nuclei. The test is grounded in the almost equal columnenergy density in UHECR-air collisions and lead-lead collisions at the LHC. We applied the test to postLHC event generators describing hadronic phenomena of UHECR scattering and show that these QCD Monte Carlo-based codes must be retuned to accommodate the strangeness enhancement relative to pions observed in LHC data.