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Eastâ€"West Proton Flux Anisotropy Observed with the PAMELA Mission.

Authors :
Bruno, A.
Martucci, M.
Cafagna, F. S.
Sparvoli, R.
Adriani, O.
Barbarino, G. C.
Bazilevskaya, G. A.
Bellotti, R.
Boezio, M.
Bogomolov, E. A.
Bongi, M.
Bonvicini, V.
Campana, D.
Carlson, P.
Casolino, M.
Castellini, G.
Santis, C. De
Galper, A. M.
Koldashov, S. V.
Koldobskiy, S.
Source :
Astrophysical Journal; 10/1/2021, Vol. 919 Issue 2, p1-6, 6p
Publication Year :
2021

Abstract

We present a study of the eastâ€"west anisotropy of trapped-proton fluxes in low-Earth orbit based on the measurements of the Payload for Antimatter Matter Exploration and Light-nuclei Astrophysics (PAMELA) experiment. The differential intensities of eastward- and westward-traveling protons detected in the South Atlantic Anomaly region were estimated as a function of equatorial pitch angle and drift shell, for six energy bins between 80 MeV and 2 GeV. We found that, as a consequence of the strong atmospheric gradient coupled with the large gyroradius in this energy range, the intensities of eastward fluxes exceed those of westward fluxes by a factor of ∼10â€"20. However, the reported directional asymmetry also depends on the sign of the local flux gradient, resulting in more intense westward fluxes beyond the radial distances where the inner belt peaks. PAMELA observations can be used to improve the description of the near-Earth radiation environment at lowest altitudes and highest trapping energies, where current theoretical and empirical models are affected by the largest uncertainties. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
0004637X
Volume :
919
Issue :
2
Database :
Complementary Index
Journal :
Astrophysical Journal
Publication Type :
Academic Journal
Accession number :
152801036
Full Text :
https://doi.org/10.3847/1538-4357/ac1677