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New DMSP database of precipitating auroral electrons and ions
Author(s) -
Redmon Robert J.,
Denig William F.,
Kilcommons Liam M.,
Knipp Delores J.
Publication year - 2017
Publication title -
journal of geophysical research: space physics
Language(s) - English
Resource type - Journals
eISSN - 2169-9402
pISSN - 2169-9380
DOI - 10.1002/2016ja023339
Subject(s) - spacecraft , defense meteorological satellite program , space weather , satellite , observatory , database , space environment , spacecraft charging , environmental science , earth's magnetic field , meteorology , physics , computer science , geophysics , astronomy , magnetic field , quantum mechanics
Since the mid‐1970s, the Defense Meteorological Satellite Program (DMSP) spacecraft have operated instruments for monitoring the space environment from low Earth orbit. As the program evolved, so have the measurement capabilities such that modern DMSP spacecraft include a comprehensive suite of instruments providing estimates of precipitating electron and ion fluxes, cold/bulk plasma composition and moments, the geomagnetic field, and optical emissions in the far and extreme ultraviolet. We describe the creation of a new public database of precipitating electrons and ions from the Special Sensor J (SSJ) instrument, complete with original counts, calibrated differential fluxes adjusted for penetrating radiation, estimates of the total kinetic energy flux and characteristic energy, uncertainty estimates, and accurate ephemerides. These are provided in a common and self‐describing format that covers 30+ years of DMSP spacecraft from F06 (launched in 1982) to F18 (launched in 2009). This new database is accessible at the National Centers for Environmental Information and the Coordinated Data Analysis Web. We describe how the new database is being applied to high‐latitude studies of the colocation of kinetic and electromagnetic energy inputs, ionospheric conductivity variability, field‐aligned currents, and auroral boundary identification. We anticipate that this new database will support a broad range of space science endeavors from single observatory studies to coordinated system science investigations.