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Water Vapor Vertical Profiles on Mars in Dust Storms Observed by TGO/NOMAD

Authors :
Belgian Science Policy Office
European Space Agency
Ministerio de Ciencia e Innovación (España)
European Commission
UK Space Agency
Agenzia Spaziale Italiana
Ministerio de Ciencia, Innovación y Universidades (España)
Fonds de la Recherche Scientifique (Fédération Wallonie-Bruxelles)
National Aeronautics and Space Administration (US)
Canadian Space Agency
Aoki, Shohei
Vandaele, Ann Carine
Daerden, Frank
Villanueva, Geronimo L.
Liuzzi, Giuliano
Thomas, Ian R.
Erwin, Justin T.
Trompet, L.
Robert, S.
Neary, L.
Viscardy, S.
Hathi, B.
Zafra, J.J.
Leese, M.
Maes, J.
Pastor-Morales, M.
Mazy, E.
Mazzoli, A.
Meseguer, J.
Morales, Rafael
Pérez Grande, Isabel
Ristic, Bojan
Queirolo, C.
Ristic, R.
Gomez, J.R.
Saggin, B.
Smith, M.D.
Samain, V.
Sanz Andres, A.
Altieri, F.
Sanz, R.
Simar, J.-F.
Patel, Manish R.
Thibert, T.
the NOMAD team
López-Valverde, M. A.
Hill, Brittany
Bellucci, Giancarlo
Bauduin, S.
López-Moreno, José Juan
Alonso-Rodrigo, G.
Fussen, D.
Bolsée, D.
Carrozzo, G.
Clancy, R. Todd
Cloutis, E.
Crismani, M.
Da Pieve, F.
D'Aversa, E.
Kaminski, J.
Depiesse, C.
Garcia-Comas, M.
Etiope, G.
Fedorova, A.A.
Funke, Bernd
Geminale, A.
Gérard, Jean-Claude
Giuranna, M.
Karatekin, O.
Gkouvelis, L.
González-Galindo, F.
Holmes, J.
Hubert, B.
Mumma, M.J.
Ignatiev, N.I.
Kasaba, Y.
Kass, D.
Kleinböhl, A.
Lanciano, O.
Lefèvre, F.
Lewis, S.
López-Puertas, M.
Schneider, Nicholas
Nakagawa, H.
Hidalgo López, Ana
Mahieux, A.
Mason, J.
Mege, D.
Neefs, E.
Novak, R.E.
Oliva, F.
Sindoni, G.
Piccialli, A.
Renotte, E.
Ritter, B.
Willame, Y.
Schmidt, F.
Teanby, N.A.
Thiemann, E.
Trokhimovskiy, A.
Auwera, J.V.
Wolff, M.J.
Clairquin, R.
Whiteway, J.
Wilquet, V.
Wolkenberg, P.
Yelle, R.
del Moral Beatriz, A.
Barzin, P.
Beeckman, B.
Cubas, J.
BenMoussa, A.
Berkenbosch, S.
Orban, A.
Biondi, D.
Bonnewijn, S.
Candini, G.P.
Giordanengo, B.
Gissot, Samuel
Gomez, A.
Belgian Science Policy Office
European Space Agency
Ministerio de Ciencia e Innovación (España)
European Commission
UK Space Agency
Agenzia Spaziale Italiana
Ministerio de Ciencia, Innovación y Universidades (España)
Fonds de la Recherche Scientifique (Fédération Wallonie-Bruxelles)
National Aeronautics and Space Administration (US)
Canadian Space Agency
Aoki, Shohei
Vandaele, Ann Carine
Daerden, Frank
Villanueva, Geronimo L.
Liuzzi, Giuliano
Thomas, Ian R.
Erwin, Justin T.
Trompet, L.
Robert, S.
Neary, L.
Viscardy, S.
Hathi, B.
Zafra, J.J.
Leese, M.
Maes, J.
Pastor-Morales, M.
Mazy, E.
Mazzoli, A.
Meseguer, J.
Morales, Rafael
Pérez Grande, Isabel
Ristic, Bojan
Queirolo, C.
Ristic, R.
Gomez, J.R.
Saggin, B.
Smith, M.D.
Samain, V.
Sanz Andres, A.
Altieri, F.
Sanz, R.
Simar, J.-F.
Patel, Manish R.
Thibert, T.
the NOMAD team
López-Valverde, M. A.
Hill, Brittany
Bellucci, Giancarlo
Bauduin, S.
López-Moreno, José Juan
Alonso-Rodrigo, G.
Fussen, D.
Bolsée, D.
Carrozzo, G.
Clancy, R. Todd
Cloutis, E.
Crismani, M.
Da Pieve, F.
D'Aversa, E.
Kaminski, J.
Depiesse, C.
Garcia-Comas, M.
Etiope, G.
Fedorova, A.A.
Funke, Bernd
Geminale, A.
Gérard, Jean-Claude
Giuranna, M.
Karatekin, O.
Gkouvelis, L.
González-Galindo, F.
Holmes, J.
Hubert, B.
Mumma, M.J.
Ignatiev, N.I.
Kasaba, Y.
Kass, D.
Kleinböhl, A.
Lanciano, O.
Lefèvre, F.
Lewis, S.
López-Puertas, M.
Schneider, Nicholas
Nakagawa, H.
Hidalgo López, Ana
Mahieux, A.
Mason, J.
Mege, D.
Neefs, E.
Novak, R.E.
Oliva, F.
Sindoni, G.
Piccialli, A.
Renotte, E.
Ritter, B.
Willame, Y.
Schmidt, F.
Teanby, N.A.
Thiemann, E.
Trokhimovskiy, A.
Auwera, J.V.
Wolff, M.J.
Clairquin, R.
Whiteway, J.
Wilquet, V.
Wolkenberg, P.
Yelle, R.
del Moral Beatriz, A.
Barzin, P.
Beeckman, B.
Cubas, J.
BenMoussa, A.
Berkenbosch, S.
Orban, A.
Biondi, D.
Bonnewijn, S.
Candini, G.P.
Giordanengo, B.
Gissot, Samuel
Gomez, A.
Publication Year :
2019

Abstract

It has been suggested that dust storms efficiently transport water vapor from the near-surface to the middle atmosphere on Mars. Knowledge of the water vapor vertical profile during dust storms is important to understand water escape. During Martian Year 34, two dust storms occurred on Mars: a global dust storm (June to mid-September 2018) and a regional storm (January 2019). Here we present water vapor vertical profiles in the periods of the two dust storms (Ls = 162–260° and Ls = 298–345°) from the solar occultation measurements by Nadir and Occultation for Mars Discovery (NOMAD) onboard ExoMars Trace Gas Orbiter (TGO). We show a significant increase of water vapor abundance in the middle atmosphere (40–100 km) during the global dust storm. The water enhancement rapidly occurs following the onset of the storm (Ls~190°) and has a peak at the most active period (Ls~200°). Water vapor reaches very high altitudes (up to 100 km) with a volume mixing ratio of ~50 ppm. The water vapor abundance in the middle atmosphere shows high values consistently at 60°S-60°N at the growth phase of the dust storm (Ls = 195°–220°), and peaks at latitudes greater than 60°S at the decay phase (Ls = 220°–260°). This is explained by the seasonal change of meridional circulation: from equinoctial Hadley circulation (two cells) to the solstitial one (a single pole-to-pole cell). We also find a conspicuous increase of water vapor density in the middle atmosphere at the period of the regional dust storm (Ls = 322–327°), in particular at latitudes greater than 60°S. ©2019. American Geophysical Union. All Rights Reserved.

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1286541055
Document Type :
Electronic Resource