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Mark Lester
Mark Lester

Public Documents 2
Statistics of traveling ionospheric disturbances at high latitudes using a rapid-run...
Samson Tilahun Moges
R. O. Sherstyukov

Samson Tilahun Moges

and 4 more

June 07, 2023
A document by Samson Tilahun Moges. Click on the document to view its contents.
Spacecraft Discharge Time Constants Determined from Electron-Flux Suppression during...
Sebastián Rojas Mata
Stas Barabash

Sebastián Rojas Mata

and 7 more

December 07, 2024
Spacecraft discharge time constants are calculated from measurements of electron differential flux before and during operation of an ionospheric sounding radar. Determining these time constants provides insight into how the operation of a sounding radar affects the surrounding plasma’s interaction with the spacecraft. The analysis is enabled by the fixed-frequency operation mode of a sounding radar which enhances resonant interaction with the ambient plasma. This mode’s effect on measured energy spectra of ion and electron fluxes is described. Measurements of electron fluxes disturbed by radar operation serve as input to a model of spacecraft discharge for calculating capacitive discharge time constants. A case study using electron fluxes measured at Mars yields discharge time constants in the range 0.6-0.8 ms and reveals that a residual potential around −4 V remains on the spacecraft long after radar operation ceases. The minimum spacecraft potential cannot be determined with these data and model due to the narrow energy range of electrons in the ambient plasma.

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