Radial and Latitudinal Gradients in Galactic Cosmic Rays

Author:

Hall D. L.,Humble J. E.,Duldig M. L.

Abstract

AbstractWe have deduced the yearly averaged value of the solar diurnal variation as observed by a surface muon telescope and three underground muon telescopes over the years 1957 to 1985. This has allowed us to examine the temporal variation in both the latitudinal gradient Gz and the product of the parallel mean free path and the radial gradient of galactic cosmic rays during three consecutive solar cycles. The median rigidities of the primary particles being detected by the telescopes are 50 GV in the case of the surface muon telescope and greater than 150 GV in the case of the underground muon telescopes. We have compared our results with those of a similar study made from observations of the solar diurnal variation by neutron monitors and an ion chamber, which have median rigidities of response between 17 and 70 GV (Bieber and Chen 1991a). The product has a solar magnetic cycle dependence and our values are lower than those observed by neutron monitors, in agreement with the Bieber and Chen observation that reverses after a solar magnetic field reversal, in accordance with drift theories.

Publisher

Cambridge University Press (CUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

Reference13 articles.

1. Fujimoto K. , Inoue A. , Murakami K. and Nagashima K. , 1984, Cosmic Ray Research Lab. Rep. No. 9, Nagoya.

2. Cosmic-ray streaming and anisotropies

3. Secular changes in the upper cut-off rigidity of the solar diurnal anisotropy of cosmic rays

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1. Influence of Extraterrestrial Radiation on Radiation Portal Monitors;IEEE Transactions on Nuclear Science;2009-06

2. Australian Cosmic Ray Modulation Research;Publications of the Astronomical Society of Australia;2001

3. A Cosmic Ray Muon Detector for Astronomy Teaching;Publications of the Astronomical Society of Australia;2000

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