Strange fireball as an explanation of the muon excess in Auger data
arXiv:1612.07328 · doi:10.1103/PhysRevD.95.063005
Abstract
We argue that ultrahigh energy cosmic ray collisions in the Earth atmosphere can probe the strange quark density of the nucleon. These collisions have center-of-mass energies \agt 10^{4.6} A GeV, where A \geq 14 is the nuclear baryon number. We hypothesize the formation of a deconfined thermal fireball which undergoes a sudden hadronization. At production the fireball has a very high matter density and consists of gluons and two flavors of light quarks (u,d). Because the fireball is formed in the baryon-rich projectile fragmentation region, the high baryochemical potential damps the production of u \bar u and d \bar d pairs, resulting in gluon fragmentation mainly into s \bar s. The strange quarks then become much more abundant and upon hadronization the relative density of strange hadrons is significantly enhanced over that resulting from a hadron gas. Assuming the momentum distribution functions can be approximated by Fermi-Dirac and Bose-Einstein statistics, we estimate a kaon-to-pion ratio of about 3 and expect a similar (total) baryon-to-pion ratio. We show that, if this were the case, the excess of strange hadrons would suppress the fraction of energy which is transferred to decaying π^0's by about 20\%, yielding a \sim 40\% enhancement of the muon content in atmospheric cascades, in agreement with recent data reported by the Pierre Auger Collaboration.
To be published in PRD
References in corpus (13)
- Equation of state and QCD transition at finite temperature
- Depth of Maximum of Air-Shower Profiles at the Pierre Auger Observatory: Measurements at Energies above 10^17.8 eV
- Cosmogenic Neutrinos: parameter space and detectabilty from PeV to ZeV
- Testing Hadronic Interactions at Ultrahigh Energies with Air Showers Measured by the Pierre Auger Observatory
- GZK Neutrinos after the Fermi-LAT Diffuse Photon Flux Measurement
- Hadronic Multiparticle Production at Ultra-High Energies and Extensive Air Showers
- Evidence for a mixed mass composition at the `ankle' in the cosmic-ray spectrum
- Probing the time structure of the quark-gluon plasma with top quarks
- Cosmogenic photons as a test of ultra-high energy cosmic ray composition
- TeV gamma-rays from photo-disintegration/de-excitation of cosmic-ray nuclei
- Implications of gamma-ray observations on proton models of UHECR
- Testing hadronic interaction packages at cosmic ray energies
- Hunting long-lived gluinos at the Pierre Auger Observatory
Cited by in corpus (30)
- Open Questions in Cosmic-Ray Research at Ultrahigh Energies
- The Forward Physics Facility: Sites, Experiments, and Physics Potential
- Ultra-High-Energy Cosmic Rays
- The Muon Puzzle in cosmic-ray induced air showers and its connection to the Large Hadron Collider
- Ultra-High-Energy Cosmic Rays: The Intersection of the Cosmic and Energy Frontiers
- Measurement of the fluctuations in the number of muons in extensive air showers with the Pierre Auger Observatory
- Core-corona effect in hadron collisions and muon production in air showers
- Interplay between core and corona components in high-energy nuclear collisions
- An explanation of the muon puzzle of ultrahigh-energy cosmic rays and the role of the Forward Physics Facility for model improvement
- Investigating the fluxes and physics potential of LHC neutrino experiments
- Through the Looking-Glass with ALICE into the Quark-Gluon Plasma: A New Test for Hadronic Interaction Models Used in Air Shower Simulations
- White paper on EUSO-SPB2
- Science and Project Planning for the Forward Physics Facility in Preparation for the 2024-2026 European Particle Physics Strategy Update
- What is the nature and origin of the highest-energy particles in the universe?
- Sibyll
- Magnetic field tomography in two clouds towards Ursa Major using HI fibers
- Universality of the muon component of extensive air showers
- Modeling Strangeness Enhancements to resolve the Muon Excess in Cosmic Ray Extensive Air Shower Data
- Neutrino Experiments at the Large Hadron Collider
- Lorentz invariance violation as an explanation of muon excess in Auger data
- What do the highest-energy cosmic-ray data suggest about possible new physics around 50 TeV?
- Detecting LHC Neutrinos at Surface Level
- Road map for the tuning of hadronic interaction models with accelerator-based and astroparticle data
- Looking forward to forward physics at the CERN's LHC
- The Puzzle of Muons in Extensive Air Showers
- Particle physics in cosmic rays
- The Forward Physics Facility at the High-Luminosity LHC
- Neutrino Physics and Astrophysics at Colliders
- Explaining muon excess in cosmic rays using the gluon condensation model
- Calculation of rescaling factors and nuclear multiplication of muons in extensive air showers