Authors
DN Baker, SG Kanekal, VC Hoxie, MG Henderson, X Li, Harlan E Spence, SR Elkington, RHW Friedel, J Goldstein, MK Hudson, GD Reeves, RM Thorne, CA Kletzing, SG Claudepierre
Publication date
2013/4/12
Journal
Science
Volume
340
Issue
6129
Pages
186-190
Publisher
American Association for the Advancement of Science
Description
Since their discovery more than 50 years ago, Earth’s Van Allen radiation belts have been considered to consist of two distinct zones of trapped, highly energetic charged particles. The outer zone is composed predominantly of megaelectron volt (MeV) electrons that wax and wane in intensity on time scales ranging from hours to days, depending primarily on external forcing by the solar wind. The spatially separated inner zone is composed of commingled high-energy electrons and very energetic positive ions (mostly protons), the latter being stable in intensity levels over years to decades. In situ energy-specific and temporally resolved spacecraft observations reveal an isolated third ring, or torus, of high-energy (>2 MeV) electrons that formed on 2 September 2012 and persisted largely unchanged in the geocentric radial range of 3.0 to ~3.5 Earth radii for more than 4 weeks before being disrupted (and virtually …
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