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Martian dust storm impact on atmospheric H2O and D/H observed by ExoMars Trace Gas Orbiter

Author

Listed:
  • Ann Carine Vandaele

    (Royal Belgian Institute for Space Aeronomy (IASB-BIRA))

  • Oleg Korablev

    (Space Research Institute (IKI), Russian Academy of Sciences (RAS))

  • Frank Daerden

    (Royal Belgian Institute for Space Aeronomy (IASB-BIRA))

  • Shohei Aoki

    (Royal Belgian Institute for Space Aeronomy (IASB-BIRA))

  • Ian R. Thomas

    (Royal Belgian Institute for Space Aeronomy (IASB-BIRA))

  • Francesca Altieri

    (Istituto di Astrofisica e Planetologia Spaziali (IAPS/INAF))

  • Miguel López-Valverde

    (Instituto de Astrofìsica de Andalucia (IAA), Consejo Superior de Investigaciones Científicas (CSIC))

  • Geronimo Villanueva

    (NASA Goddard Space Flight Center)

  • Giuliano Liuzzi

    (NASA Goddard Space Flight Center)

  • Michael D. Smith

    (NASA Goddard Space Flight Center)

  • Justin T. Erwin

    (Royal Belgian Institute for Space Aeronomy (IASB-BIRA))

  • Loïc Trompet

    (Royal Belgian Institute for Space Aeronomy (IASB-BIRA))

  • Anna A. Fedorova

    (Space Research Institute (IKI), Russian Academy of Sciences (RAS))

  • Franck Montmessin

    (Laboratoire Atmosphères, Milieux, Observations Spatiales (LATMOS), UVSQ Université Paris-Saclay, Sorbonne Université, CNRS)

  • Alexander Trokhimovskiy

    (Space Research Institute (IKI), Russian Academy of Sciences (RAS))

  • Denis A. Belyaev

    (Space Research Institute (IKI), Russian Academy of Sciences (RAS))

  • Nikolay I. Ignatiev

    (Space Research Institute (IKI), Russian Academy of Sciences (RAS))

  • Mikhail Luginin

    (Space Research Institute (IKI), Russian Academy of Sciences (RAS))

  • Kevin S. Olsen

    (Laboratoire Atmosphères, Milieux, Observations Spatiales (LATMOS), UVSQ Université Paris-Saclay, Sorbonne Université, CNRS)

  • Lucio Baggio

    (Laboratoire Atmosphères, Milieux, Observations Spatiales (LATMOS), UVSQ Université Paris-Saclay, Sorbonne Université, CNRS)

  • Juan Alday

    (Oxford University)

  • Jean-Loup Bertaux

    (Space Research Institute (IKI), Russian Academy of Sciences (RAS)
    Laboratoire Atmosphères, Milieux, Observations Spatiales (LATMOS), UVSQ Université Paris-Saclay, Sorbonne Université, CNRS)

  • Daria Betsis

    (Space Research Institute (IKI), Russian Academy of Sciences (RAS))

  • David Bolsée

    (Royal Belgian Institute for Space Aeronomy (IASB-BIRA))

  • R. Todd Clancy

    (Space Science Institute)

  • Edward Cloutis

    (University of Winnipeg)

  • Cédric Depiesse

    (Royal Belgian Institute for Space Aeronomy (IASB-BIRA))

  • Bernd Funke

    (Instituto de Astrofìsica de Andalucia (IAA), Consejo Superior de Investigaciones Científicas (CSIC))

  • Maia Garcia-Comas

    (Instituto de Astrofìsica de Andalucia (IAA), Consejo Superior de Investigaciones Científicas (CSIC))

  • Jean-Claude Gérard

    (Laboratory for Planetary and Atmospheric Physics (LPAP), University of Liège)

  • Marco Giuranna

    (Istituto di Astrofisica e Planetologia Spaziali (IAPS/INAF))

  • Francisco Gonzalez-Galindo

    (Instituto de Astrofìsica de Andalucia (IAA), Consejo Superior de Investigaciones Científicas (CSIC))

  • Alexey V. Grigoriev

    (Space Research Institute (IKI), Russian Academy of Sciences (RAS))

  • Yuriy S. Ivanov

    (Main Astronomical Observatory (MAO), National Academy of Sciences of Ukraine)

  • Jacek Kaminski

    (Polish Academy of Sciences)

  • Ozgur Karatekin

    (Royal Observatory of Belgium)

  • Franck Lefèvre

    (Laboratoire Atmosphères, Milieux, Observations Spatiales (LATMOS), UVSQ Université Paris-Saclay, Sorbonne Université, CNRS)

  • Stephen Lewis

    (The Open University)

  • Manuel López-Puertas

    (Instituto de Astrofìsica de Andalucia (IAA), Consejo Superior de Investigaciones Científicas (CSIC))

  • Arnaud Mahieux

    (Royal Belgian Institute for Space Aeronomy (IASB-BIRA))

  • Igor Maslov

    (Space Research Institute (IKI), Russian Academy of Sciences (RAS))

  • Jon Mason

    (The Open University)

  • Michael J. Mumma

    (NASA Goddard Space Flight Center)

  • Lori Neary

    (Royal Belgian Institute for Space Aeronomy (IASB-BIRA))

  • Eddy Neefs

    (Royal Belgian Institute for Space Aeronomy (IASB-BIRA))

  • Andrey Patrakeev

    (Space Research Institute (IKI), Russian Academy of Sciences (RAS))

  • Dmitry Patsaev

    (Space Research Institute (IKI), Russian Academy of Sciences (RAS))

  • Bojan Ristic

    (Royal Belgian Institute for Space Aeronomy (IASB-BIRA))

  • Séverine Robert

    (Royal Belgian Institute for Space Aeronomy (IASB-BIRA))

  • Frédéric Schmidt

    (Geosciences Paris Sud (GEOPS), Université Paris Sud)

  • Alexey Shakun

    (Space Research Institute (IKI), Russian Academy of Sciences (RAS))

  • Nicholas A. Teanby

    (University of Bristol)

  • Sébastien Viscardy

    (Royal Belgian Institute for Space Aeronomy (IASB-BIRA))

  • Yannick Willame

    (Royal Belgian Institute for Space Aeronomy (IASB-BIRA))

  • James Whiteway

    (York University)

  • Valérie Wilquet

    (Royal Belgian Institute for Space Aeronomy (IASB-BIRA))

  • Michael J. Wolff

    (Space Science Institute)

  • Giancarlo Bellucci

    (Istituto di Astrofisica e Planetologia Spaziali (IAPS/INAF))

  • Manish R. Patel

    (The Open University)

  • Jose-Juan López-Moreno

    (Instituto de Astrofìsica de Andalucia (IAA), Consejo Superior de Investigaciones Científicas (CSIC))

  • François Forget

    (Laboratoire de Météorologie Dynamique (LMD), CNRS Jussieu)

  • Colin F. Wilson

    (Oxford University)

  • Håkan Svedhem

    (European Space Research and Technology Centre (ESTEC), ESA)

  • Jorge L. Vago

    (European Space Research and Technology Centre (ESTEC), ESA)

  • Daniel Rodionov

    (Space Research Institute (IKI), Russian Academy of Sciences (RAS))

Abstract

Global dust storms on Mars are rare1,2 but can affect the Martian atmosphere for several months. They can cause changes in atmospheric dynamics and inflation of the atmosphere3, primarily owing to solar heating of the dust3. In turn, changes in atmospheric dynamics can affect the distribution of atmospheric water vapour, with potential implications for the atmospheric photochemistry and climate on Mars4. Recent observations of the water vapour abundance in the Martian atmosphere during dust storm conditions revealed a high-altitude increase in atmospheric water vapour that was more pronounced at high northern latitudes5,6, as well as a decrease in the water column at low latitudes7,8. Here we present concurrent, high-resolution measurements of dust, water and semiheavy water (HDO) at the onset of a global dust storm, obtained by the NOMAD and ACS instruments onboard the ExoMars Trace Gas Orbiter. We report the vertical distribution of the HDO/H2O ratio (D/H) from the planetary boundary layer up to an altitude of 80 kilometres. Our findings suggest that before the onset of the dust storm, HDO abundances were reduced to levels below detectability at altitudes above 40 kilometres. This decrease in HDO coincided with the presence of water-ice clouds. During the storm, an increase in the abundance of H2O and HDO was observed at altitudes between 40 and 80 kilometres. We propose that these increased abundances may be the result of warmer temperatures during the dust storm causing stronger atmospheric circulation and preventing ice cloud formation, which may confine water vapour to lower altitudes through gravitational fall and subsequent sublimation of ice crystals3. The observed changes in H2O and HDO abundance occurred within a few days during the development of the dust storm, suggesting a fast impact of dust storms on the Martian atmosphere.

Suggested Citation

  • Ann Carine Vandaele & Oleg Korablev & Frank Daerden & Shohei Aoki & Ian R. Thomas & Francesca Altieri & Miguel López-Valverde & Geronimo Villanueva & Giuliano Liuzzi & Michael D. Smith & Justin T. Erw, 2019. "Martian dust storm impact on atmospheric H2O and D/H observed by ExoMars Trace Gas Orbiter," Nature, Nature, vol. 568(7753), pages 521-525, April.
  • Handle: RePEc:nat:nature:v:568:y:2019:i:7753:d:10.1038_s41586-019-1097-3
    DOI: 10.1038/s41586-019-1097-3
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