Artículos de revistas
The lateral trigger probability function for the ultra-high energy cosmic ray showers detected by the Pierre Auger Observatory
Fecha
2011-12Registro en:
Astroparticle Physics, Amsterdam : Elsevier BV, v. 35, n. 5, p. 266-276, Dec. 2011
0927-6505
10.1016/j.astropartphys.2011.08.001
Autor
Abreu, P.
Albuquerque, Ivone Freire da Mota e
Souza, Vitor de
Gouffon, Philippe
Carvalho, W. Rodrigues de
Peixoto, C. J. Todero
Tridapalli, D. B
et al.
Institución
Resumen
In this paper we introduce the concept of Lateral Trigger Probability (LTP) function, i.e., the probability for an Extensive Air Shower (EAS) to trigger an individual detector of a ground based array as a function of distance to the shower axis, taking into account energy, mass and direction of the primary cosmic ray. We apply this concept to the surface array of the Pierre Auger Observatory consisting of a 1.5 km spaced grid of about 1600 water Cherenkov stations. Using Monte Carlo simulations of ultra-high energy showers the LTP functions are derived for energies in the range between 1017 and 1019 eV and zenith angles up to 65°. A parametrization combining a step function with an exponential is found to reproduce them very well in the considered range of energies and zenith angles. The LTP functions can also be obtained from data using events simultaneously observed by the fluorescence and the surface detector of the Pierre Auger Observatory (hybrid events). We validate the Monte Carlo results showing how LTP functions from data are in good agreement with simulations.