An electron analyser to measure the three-dimensional velocity distribution of electrons in the energy range from 0.59 eV to 26.4 keV on the four spacecraft of the Cluster mission is described. The instrument consists of two sensors with hemispherical electrostatic energy analysers with a position-sensitive microchannel plate detectors placed to view radially on opposite sides of the spacecraft. The intrinsic energy resolutions of the two sensors are 12.7% and 16.5% full width at half maximum. Their angular resolutions are 2.8° and 5.3° respectively in an azimuthal direction and 15° in a polar direction. The two sensors will normally measure in different overlapping energy ranges and will scan the distribution in half a spacecraft rotation ...
International audienceElectrostatic analyzers of different designs have been used since the earliest...
It is known that the Earth’s inner magnetosphere is the region where plasma particles have a wide ra...
International audienceThe MAVEN Solar Wind Electron Analyzer (SWEA) is a symmetric hemispheric elect...
The two PEACE (Plasma Electron And Current Experiment) sensors on board each Cluster spacecraft ...
The Plasma Electron and Current Experiment (PEACE) instruments operate on all four of the Cluster sp...
The requirements for the proposed Electron Analyser System (EAS) for the ESA Solar Orbiter spacecra...
The Comet Rendezvous and Asteroid Flyby Mission (CRAF) will include, as one of its complement of thi...
International audienceThe Solar Wind Electrons Alphas and Protons (SWEAP) Investigation on Solar Pro...
The electron drift instrument (EDI) on Cluster pioneered a new method of measuring electric fields, ...
We have determined the transit time distribution of electrons passing a high resolution hemispherica...
One of the most important space plasma measurements is that of a well-resolved low-energy (approxima...
The Plasma Science Experiment (PLS) on the Voyager spacecraft provide data on the plasma ions and el...
International audienceUnderstanding electron acceleration mechanisms in planetary magnetospheres or ...
International audienceElectrostatic analyzers of different designs have been used since the earliest...
It is known that the Earth’s inner magnetosphere is the region where plasma particles have a wide ra...
International audienceThe MAVEN Solar Wind Electron Analyzer (SWEA) is a symmetric hemispheric elect...
The two PEACE (Plasma Electron And Current Experiment) sensors on board each Cluster spacecraft ...
The Plasma Electron and Current Experiment (PEACE) instruments operate on all four of the Cluster sp...
The requirements for the proposed Electron Analyser System (EAS) for the ESA Solar Orbiter spacecra...
The Comet Rendezvous and Asteroid Flyby Mission (CRAF) will include, as one of its complement of thi...
International audienceThe Solar Wind Electrons Alphas and Protons (SWEAP) Investigation on Solar Pro...
The electron drift instrument (EDI) on Cluster pioneered a new method of measuring electric fields, ...
We have determined the transit time distribution of electrons passing a high resolution hemispherica...
One of the most important space plasma measurements is that of a well-resolved low-energy (approxima...
The Plasma Science Experiment (PLS) on the Voyager spacecraft provide data on the plasma ions and el...
International audienceUnderstanding electron acceleration mechanisms in planetary magnetospheres or ...
International audienceElectrostatic analyzers of different designs have been used since the earliest...
It is known that the Earth’s inner magnetosphere is the region where plasma particles have a wide ra...
International audienceThe MAVEN Solar Wind Electron Analyzer (SWEA) is a symmetric hemispheric elect...