Published 2009 | Version v1
Miscellaneous

Energetic electron precipitation during substorm injection events. High-latitude fluxes and an unexpected midlatitude signature

  • 1. British Antarctic Survey (NERC), Cambridge (United Kingdom)
  • 2. Otago University, Dunedin (New Zealand). Department of Physics
  • 3. Dunedin (New Zealand)
  • 4. Lancaster University, Lancaster (United Kingdom). Department of Communication Systems
  • 5. FMI, Helsinki, Finland and BAS, Cambridge (United Kingdom)
  • 6. Los Alamos National Laboratory, Los Alamos, NM (United States)
  • 7. Newcastla University, Callaghan, New South Wales (Australia)

Description

Complete text of publication follows. Geosynchronous Los Alamos National Laboratory (LANL-97A) satellite particle data, riometer data, and radio wave data recorded at high geomagnetic latitudes in the region south of Australia and New Zealand are used to perform the first complete modeling study of the effect of substorm electron precipitation fluxes on low-frequency radio wave propagation conditions associated with dispersionless substorm injection events. We find that the precipitated electron energy spectrum is consistent with an e-folding energy of 50 keV for energies <400 keV but also contains higher fluxes of electrons from 400 to 2000 keV. To reproduce the peak subionospheric radio wave absorption signatures seen at Casey (Australian Antarctic Division), and the peak riometer absorption observed at Macquarie Island, requires the precipitation of 50-90% of the peak fluxes observed by LANL-97A. Additionally, there is a concurrent and previously unreported substorm signature at L < 2.8, observed as a substorm-associated phase advance on radio waves propagating between Australia and New Zealand. We find that the most likely mechanism is the triggering of wave-induced electron precipitation caused by waves enhanced in the plasmasphere during the substorm and that either plasmaspheric hiss waves or electromagnetic ion cyclotron waves are a potential source capable of precipitating the type of high-energy electron spectrum required. However, the presence of these waves at such low L shells has not been confirmed in this study.

Part of:
International Association of Geomagnetism and Aeronomy IAGA 11. Scientific Assembly

Additional details

Identifiers

Publishing Information

Publisher
Geodetic and Geophysical Research Institute of the Hungarian Academy of Sciences
Imprint Place
Sopron (Hungary)
Imprint Title
International Association of Geomagnetism and Aeronomy IAGA 11. Scientific Assembly
Imprint Pagination
[1212 p.]
Journal Page Range
[1 p.]
Report number
INIS-HU--010

Conference

Title
International Association of Geomagnetism and Aeronomy IAGA 11. Scientific Assembly
Dates
23-30 Aug 2009
Place
Sopron (Hungary)

INIS

Country of Publication
Hungary
Country of Input or Organization
Hungary
INIS RN
41094760
Subject category
S79: ASTROPHYSICS, COSMOLOGY AND ASTRONOMY;
Resource subtype / Literary indicator
Conference, Non-conventional Literature
Descriptors DEI
CYCLOTRONS; ELECTRON PRECIPITATION; INJECTION; LONG WAVE RADIATION; RIOMETERS; SATELLITES; STORMS
Descriptors DEC
ACCELERATORS; CHARGED-PARTICLE PRECIPITATION; CYCLIC ACCELERATORS; ELECTROMAGNETIC RADIATION; INTAKE; MEASURING INSTRUMENTS; RADIATIONS; RADIOWAVE RADIATION

Optional Information