RESULTS OF FRACTAL ANALYSIS OF THE KIEL EXTENSIVE AIR SHOWER DATA

1998 
For years there has been a problem in cosmic ray studies of how to distinguish individual extensive air showers (EAS) originating from primary protons, heavy nuclei or primary photons. In this paper results of experimental data obtained from the fractal analysis of particle density distributions in individual EAS detected in the range of shower sizes between - by the old Kiel experiment are presented. The Lipschitz-H?lder exponent distributions of EAS detected by the Kiel experiment are discussed. The examples of EAS most probably originating from primary protons, heavy nuclei and high-energy gamma-rays are presented. The lateral distributions of charged particle densities at small distances, angular and size spectra and the mass composition of primary cosmic ray particles around the `knee' of the energy spectrum are discussed. The Monte Carlo simulation data illustrating the problem of interest are also shown.
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