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Analytical Model for Estimating the Zenith Angle Dependence of Terrestrial Cosmic Ray Fluxes

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  • Tatsuhiko Sato

Abstract

A new model called “PHITS-based Analytical Radiation Model in the Atmosphere (PARMA) version 4.0” was developed to facilitate instantaneous estimation of not only omnidirectional but also angular differential energy spectra of cosmic ray fluxes anywhere in Earth’s atmosphere at nearly any given time. It consists of its previous version, PARMA3.0, for calculating the omnidirectional fluxes and several mathematical functions proposed in this study for expressing their zenith-angle dependences. The numerical values of the parameters used in these functions were fitted to reproduce the results of the extensive air shower simulation performed by Particle and Heavy Ion Transport code System (PHITS). The angular distributions of ground-level muons at large zenith angles were specially determined by introducing an optional function developed on the basis of experimental data. The accuracy of PARMA4.0 was closely verified using multiple sets of experimental data obtained under various global conditions. This extension enlarges the model’s applicability to more areas of research, including design of cosmic-ray detectors, muon radiography, soil moisture monitoring, and cosmic-ray shielding calculation. PARMA4.0 is available freely and is easy to use, as implemented in the open-access EXcel-based Program for Calculating Atmospheric Cosmic-ray Spectrum (EXPACS).

Suggested Citation

  • Tatsuhiko Sato, 2016. "Analytical Model for Estimating the Zenith Angle Dependence of Terrestrial Cosmic Ray Fluxes," PLOS ONE, Public Library of Science, vol. 11(8), pages 1-22, August.
  • Handle: RePEc:plo:pone00:0160390
    DOI: 10.1371/journal.pone.0160390
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    1. Sébastien Procureur & Kunihiro Morishima & Mitsuaki Kuno & Yuta Manabe & Nobuko Kitagawa & Akira Nishio & Hector Gomez & David Attié & Ami Sakakibara & Kotaro Hikata & Masaki Moto & Irakli Mandjavidze, 2023. "Precise characterization of a corridor-shaped structure in Khufu’s Pyramid by observation of cosmic-ray muons," Nature Communications, Nature, vol. 14(1), pages 1-15, December.

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