Spacecraft charging on the differential charging and artificial particle emission experiments on ATS 5 and ATS 6 were studied. Differential charging of spacecraft surfaces generated large electrostatic barriers to spacecraft generated electrons, from photoemission, secondary emission, and thermal emitters. The electron emitter could partially or totally discharge the satellite, but the mainframe recharged negatively in a few 10's of seconds. The time dependence of the charging behavior was explained by the relatively large capacitance for differential charging in comparison to the small spacecraft to space capacitance. A daylight charging event on ATS 6 was shown to have a charging behavior suggesting the dominance of differential charging ...
Spacecraft charging due to the natural plasma environment found in all orbits is known to produce ma...
Results obtained from the analysis of data returned by the energetic particle spectrometer on ATS 6 ...
Spacecraft flight environments are characterized both by a wide range of space plasma conditions and...
Effects on spacecraft ground potential of active emission of charged particles are being investigate...
The processing of data from onboard spacecraft instruments are described. The modification of spacec...
Electron emission experiments on Applied Technology Satellite 5 using a thermal electron emitter are...
The ATS-6 geosynchronous satellite carries two cesium ion thrusters as part of the technology experi...
The response of various spacecraft configurations to a charging environment in sunlight was studied ...
The role of potential barrier formation in spacecraft charging at geosynchronous orbit is discussed....
Low-energy secondary electrons have been observed to be reflected back to the spacecraft during ecli...
Any satellite whose orbit passes through the terrestrial magnetosphere will encounter several plasma...
The third Spacecraft Charging Technology Conference proceedings contain 66 papers on the geosynchron...
As spacecraft travel through space plasma, spacecraft surfaces become charged by the collection of c...
The Applications Technology Satellite (ATS-6), launched into synchronous orbit on 30 May 1974, carri...
Severe and extreme surface charging on geosynchronous spacecraft is examined through the analysis of...
Spacecraft charging due to the natural plasma environment found in all orbits is known to produce ma...
Results obtained from the analysis of data returned by the energetic particle spectrometer on ATS 6 ...
Spacecraft flight environments are characterized both by a wide range of space plasma conditions and...
Effects on spacecraft ground potential of active emission of charged particles are being investigate...
The processing of data from onboard spacecraft instruments are described. The modification of spacec...
Electron emission experiments on Applied Technology Satellite 5 using a thermal electron emitter are...
The ATS-6 geosynchronous satellite carries two cesium ion thrusters as part of the technology experi...
The response of various spacecraft configurations to a charging environment in sunlight was studied ...
The role of potential barrier formation in spacecraft charging at geosynchronous orbit is discussed....
Low-energy secondary electrons have been observed to be reflected back to the spacecraft during ecli...
Any satellite whose orbit passes through the terrestrial magnetosphere will encounter several plasma...
The third Spacecraft Charging Technology Conference proceedings contain 66 papers on the geosynchron...
As spacecraft travel through space plasma, spacecraft surfaces become charged by the collection of c...
The Applications Technology Satellite (ATS-6), launched into synchronous orbit on 30 May 1974, carri...
Severe and extreme surface charging on geosynchronous spacecraft is examined through the analysis of...
Spacecraft charging due to the natural plasma environment found in all orbits is known to produce ma...
Results obtained from the analysis of data returned by the energetic particle spectrometer on ATS 6 ...
Spacecraft flight environments are characterized both by a wide range of space plasma conditions and...