Mars Climate Controls Atmospheric Escape: Dust-Driven Escape from Surface to Space with MRO/MCS, TGO/NOMAD, TGO/ACS, and MAVEN/IUVS
View/ Open
Authors
Chaffin, M.S.
Kass, D.M.
Aoki, S.
Fedorova, A.A.
Deighan, J.
Chaufray, J.-Y.
Connour, K.
Heavens, N.G.
Kleinboehl, A.
Jain, S.K.
Mayyasi, M.
Clarke, J.T.
Schneider, N.M.
Jakosky, B.M.
Villanueva, G.
Liuzzi, G.
Daerden, F.
Thomas, I.R.
Lopez-Moreno, J.-J.
Patel, M.R.
Bellucci, G.
Vandaele, A.C.
Trokhmovskiy, A.
Montmessin, F.
Korablev, O.I.
Discipline
Physical sciences
Audience
Scientific
Date
2019Metadata
Show full item recordCitation
Chaffin, M.S.; Kass, D.M.; Aoki, S.; Fedorova, A.A.; Deighan, J.; Chaufray, J.-Y.; Connour, K.; Heavens, N.G.; Kleinboehl, A.; Jain, S.K.; Mayyasi, M.; Clarke, J.T.; Schneider, N.M.; Jakosky, B.M.; Villanueva, G.; Liuzzi, G.; Daerden, F.; Thomas, I.R.; Lopez-Moreno, J.-J.; Patel, M.R.; Bellucci, G.; Vandaele, A.C.; Trokhmovskiy, A.; Montmessin, F.; Korablev, O.I. (2019). Mars Climate Controls Atmospheric Escape: Dust-Driven Escape from Surface to Space with MRO/MCS, TGO/NOMAD, TGO/ACS, and MAVEN/IUVS. , 9th International Conference on Mars, July 22-26, 2019, Pasadena, California, USA, #6312,Type
Conference
Peer-Review
No
Language
eng