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Evaluation of solar proton spectra using balloon cosmic ray observations and Monte Carlo simulation results
Institution:1. Lebedev Physical Institute RAS, Leninsky pr.53, 119991 Moscow, Russia;2. Physikalisches Institut, University of Bern, Sidlerstrasse 5, CH-3012 Bern, Switzerland;3. CRAAM/Universidade Presbiteriana Mackenzie, Escola de Engenharia, Sao Paulo, Brazil
Abstract:We have developed a method to evaluate the spectrum of solar energetic protons at the top of the Earth’s atmosphere from the measurements of our balloon cosmic ray experiment. By using the Monte Carlo PLANETOCOSMICS code based on Geant4 we compute the interaction of solar protons 10 MeV–10 GeV] with the Earth’s atmosphere. We obtain the angular and energy distributions of secondary particles (p, e?, e+, photons, muons) at different atmospheric levels as a function of primary proton spectra. By comparing the calculated depth dependence of the particle flux with the data obtained by our balloon experiment we can deduce the parameters of the solar proton spectrum that best fit the observations. In this paper we discuss our solar proton spectrum estimation method, and present results of its application to selected solar proton events from 2001 to 2005.
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