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- W2517777301 abstract "Abstract Measurements show that plasmasphere refilling rates decrease with increasing solar activity, while paradoxically, the vertical integration of the plasmasphere electron density (pTEC) increases with increasing solar activity. Using the Naval Research Laboratory SAMI2 (Sami2 is Another Model of the Ionosphere) and SAMI3 (Sami3 is Also a Model of the Ionosphere) codes, we simulate plasmasphere refilling following a model storm, reproducing this observed phenomenon. In doing so, we find that the refilling rate and resulting pTEC values are sensitive to the oxygen profile in the thermosphere and exosphere: the supply of H + in the topside ionosphere is limited by the local O + density, through charge exchange. At solar minimum, the O + supply simply increases with the O density in the exosphere. At solar maximum, we find that O‐O + collisions limit the O + density in the topside ionosphere such that it decreases with increasing O density. The paradox occurs because the pTEC metric gives electrons in the topside ionosphere more weight than electrons in the plasmasphere." @default.
- W2517777301 created "2016-09-16" @default.
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- W2517777301 date "2016-09-01" @default.
- W2517777301 modified "2023-09-27" @default.
- W2517777301 title "The plasmasphere electron content paradox" @default.
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- W2517777301 doi "https://doi.org/10.1002/2016ja023008" @default.
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