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Effect of Photoelectrons on Boom-Satellite Potential Differences During Electron Beam Ejection

机译:光电子对电子束射出过程中臂 - 卫星电位差的影响

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Data taken on the SCATHA satellite at geosynchronous altitudes during perios of electron beam ejection in sunlight showed that the potential difference between an electrically isolated boom and the satellite main body was a function of beam current, energy, and boom-sun angle. The potential difference decreased as the boom area illuminated by the sun increased; the maximum and minimum potential differences were measured when minimum and maximum boom areas, respectively, were exposed to the sun. It is shown that photoelectrons, created on the boom, could be engulfed in the electrostatic field of the highly charged satellite main body. Theoretical calculations made using a simple current balance model showed that these electrons could provide a substantial discharging current to the main body and cause the observed variations in the potential difference between the main body amd the booms.

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