4.5 Article

Cold Plasmaspheric Electrons Affected by ULF Waves in the Inner Magnetosphere: A Van Allen Probes Statistical Study

Journal

JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS
Volume 124, Issue 10, Pages 7954-7965

Publisher

AMER GEOPHYSICAL UNION
DOI: 10.1029/2019JA027009

Keywords

cold plasmaspheric electrons; ULF waves; wave-particle interaction; drift-bounce resonance

Funding

  1. National Postdoctoral Program for Innovative Talents [BX20180002]
  2. China Postdoctoral Science Foundation
  3. National Natural Science Foundation of China [41904145, 41421003, 41627805, NAS5-01072]

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Six years of Van Allen Probes data are used to investigate cold plasmaspheric electrons affected by ultralow-frequency (ULF) waves in the inner magnetosphere (L<7) including spatial distributions, occurrence conditions, and resonant energy range. Events exhibit a global distribution within L= 4-7 but preferentially occur at L similar to 5.5-7 in the dayside, while there is higher occurrence rate in the duskside than dawnside. They can occur under different geomagnetic activities and solar wind velocities (V-S), but the occurrence rates are increasing with larger AE, |SYMH|, and V-S. These features are closely associated with the generation and propagation of ULF waves in Pc4 (45-150 s) and Pc5 (150-600 s) bands. Combined with electron observations from HOPE instrument, the resonant energies inferred from wave power indicate that cold electrons at ones to hundreds of electron volts can be affected by ULF waves. This study may shed new light on further investigations on the acceleration and transportation of cold plasmaspheric particles that would affect plasmaspheric material release to the Earth's magnetosphere and instabilities for exciting various waves.

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