Use of MESSENGER radioscience data to improve planetary ephemeris and to test general relativity

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TitreUse of MESSENGER radioscience data to improve planetary ephemeris and to test general relativity
Type de publicationJournal Article
Year of Publication2014
AuteursVerma A.K, Fienga A., Laskar J., Manche H., Gastineau M.
JournalASTRONOMY & ASTROPHYSICS
Volume561
PaginationA115
Date PublishedJAN
Type of ArticleArticle
ISSN0004-6361
Mots-cléscelestial mechanics, ephemerides
Résumé

The current knowledge of Mercury's orbit has mainly been gained by direct radar ranging obtained from the 60s to 1998 and by five Mercury flybys made with Mariner 10 in the 70s, and with MESSENGER made in 2008 and 2009. On March 18, 2011, MESSENGER became the first spacecraft to orbit Mercury. The radioscience observations acquired during the orbital phase of MESSENGER drastically improved our knowledge of the orbit of Mercury. An accurate MESSENGER orbit is obtained by fitting one-and-half years of tracking data using GINS orbit determination software. The systematic error in the Earth-Mercury geometric positions, also called range bias, obtained from GINS are then used to fit the INPOP dynamical modeling of the planet motions. An improved ephemeris of the planets is then obtained, INPOP13a, and used to perform general relativity tests of the parametrized post-Newtonian (PPN) formalism. Our estimations of PPN parameters (gamma and beta) are more stringent than previous results.

DOI10.1051/0004-6361/201322124