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The mass spectrum analyzer (MSA) onboard BEPI COLOMBO MMO: Scientific objectives and prototype results
Authors:D Delcourt  Y Saito  J-M Illiano  N Krupp  J-J Berthelier  D Fontaine  M Fraenz  F Leblanc  H Fischer  S Yokota  H Michalik  M Godefroy  E Saint-Jacques  J-D Techer  B Fiethe  J Covinhes  J Gastou  D Attia
Institution:1. CETP-CNRS-IPSL, Avenue de Neptune, 4, 94107 Saint-Maur Des Fossés, France;2. ISAS-JAXA, Sagamihara, Japan;3. MPS, Lindau, Germany;4. IDA, Braunschweig, Germany
Abstract:BEPI COLOMBO is a joint mission between ESA and JAXA that is scheduled for launch in 2014 and arrival at Mercury in 2020. A comprehensive set of ion sensors will be flown onboard the two probes that form BEPI COLOMBO. These ion sensors combined with electron analyzers will allow a detailed investigation of the structure and dynamics of the charged particle environment at Mercury. Among the ion sensors, the Mass Spectrum Analyzer (MSA) is the experiment dedicated to composition analysis onboard the Mercury Magnetospheric Orbiter (MMO). It consists of a top-hat for energy analysis followed by a Time-Of-Flight (TOF) section to derive the ion mass. A notable feature of MSA is that the TOF section is polarized with a linear electric field that provides an enhanced mass resolution, a capability that is of importance at Mercury since a variety of species originating from the planet surface and exosphere is expected. MSA exhibits two detection planes: (i) one with moderate mass resolution but a high count rate making MSA appropriate for plasma analysis, (ii) another with a high (above 40) mass resolution though a low count rate making it appropriate for planetology science. Taking advantage of the spacecraft rotation, MSA will provide three-dimensional distribution functions of magnetospheric ions, from energies characteristic of exospheric populations (a few eVs or a few tens of eVs) up to the plasma sheet energy range (up to ∼40 keV/q) in one spin (4 s).
Keywords:Plasma composition and dynamics  Mercury&rsquo  s magnetosphere  BEPI COLOMBO
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