On the possibility of primary identification of individual cosmic ray showers
arXiv:0811.4421 · doi:10.1016/j.astropartphys.2008.12.003
Abstract
The transition between the Galactic and extragalactic cosmic ray components could take place either in the region of the spectrum known as the second knee or in the ankle. There are several models of the transition but it is not possible to confirm or even rule out any of them from the flux measurement alone. Therefore, the measurement of the composition as a function of primary energy will play a fundamental role for the understanding of this phenomenon. In this work we study the possibility of primary identification in an event by event basis in the ankle region, around eV. We consider as case study the enhancements of the Pierre Auger Southern Observatory, which are under construction in Malague, Province of Mendoza, Argentina. We use a non-parametric technique to estimate the density functions, from Monte Carlo data, corresponding to different combination of mass sensitive parameters and type of primaries. These estimates are used to obtain the classification probability of protons and iron nuclei for the different combination of parameters considered. We find that, after considering all relevant fluctuations, the maximum classification probability obtained combining surface and fluorescence detectors parameters is of order of 90%.
29 pages and 10 figures
References in corpus (7)
- On the transition from Galactic to extragalactic cosmic-rays: spectral and composition features from two opposite scenarios
- Underground Muon Counters as a Tool for Composition Analyses
- Non-Linear Effects in High Energy Hadronic Interactions
- Cosmic Rays in the 'Knee'-Region - Recent Results from KASCADE -
- Neural Networks as a Composition Diagnostic for Ultra-high Energy Cosmic Rays
- Ultra-high energy cosmic rays: from GeV to ZeV
- Effect of multiple reusing of simulated air showers in detector simulations
Cited by in corpus (8)
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- A new method for reconstructing the muon lateral distribution with an array of segmented counters
- Determination of the Cosmic-Ray Chemical Composition: Open Issues and Prospects
- Reconstruction of air shower muon densities using segmented counters with time resolution
- Estimation of the number of muons with muon counters
- Composition determination of cosmic rays from the muon content of the showers
- A composition dependent energy scale and the determination of the cosmic ray primary mass in the ankle region
- A method to reconstruct the muon lateral distribution with an array of segmented counters with time resolution