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The EnVision Venus orbiter mission, proposed to ESA

Colin Wilson

Visitor

Research theme

  • Exoplanets and planetary physics

Sub department

  • Atmospheric, Oceanic and Planetary Physics

Research groups

  • Planetary atmosphere observation analysis
  • Planetary surfaces
  • Solar system
  • Space instrumentation
Colin.Wilson@physics.ox.ac.uk
Telephone: 01865 (2)72086
Atmospheric Physics Clarendon Laboratory, room 301
  • About
  • Publications

Venus: Evolution Through Time – Editorial

Space Science Reviews Springer Nature 220:4 (2024) 39

Authors:

Thomas Widemann, Colin Wilson, Doris Breuer, Cédric Gillmann, Suzanne E Smrekar, Tilman Spohn

Isotopic composition of water vapour in the Martian atmosphere: vertical profiles from ACS MIR on ExoMars TGO

Copernicus Publications (2024)

Authors:

Juan Alday, Patrick GJ Irwin, Colin F Wilson, Kevin S Olsen, Lucio Baggio, Franck Montmessin, Oleg Korablev, Alexander Trokhimovskiy, Anna A Fedorova, Denis A Belyaev, Alexey Shakun, Andrew Patrakeev, Alexey Grigoriev

Abstract:

We report retrievals in the 2.53 – 2.79 μm spectral range using the Atmopheric Chemistry Suite onboard of ExoMars Trace Gas Orbiter, which allow the simultaneous measurement of vertical profiles of H and O isotope ratios in water vapour in the Martian atmosphere. The large coverage of ACS MIR solar occultations provides the possibility to analyse the spatial, seasonal and diurnal variations of these ratios.

Modelling the in situ solar and thermal radiation environment for future entry probe missions to Venus

Copernicus Publications (2024)

Authors:

Patrick Irwin, Colin Wilson, Juan Alday, Maarten Roos-Serote, Jo Barstow, Shahid Aslam

Possible Effects of Volcanic Eruptions on the Modern Atmosphere of Venus

Space Science Reviews Springer 220:3 (2024) 31

Authors:

Colin F Wilson, Emmanuel Marcq, Cédric Gillmann, Thomas Widemann, Oleg Korablev, Nils T Mueller, Maxence Lefèvre, Paul B Rimmer, Séverine Robert, Mikhail Y Zolotov

Abstract:

This work reviews possible signatures and potential detectability of present-day volcanically emitted material in the atmosphere of Venus. We first discuss the expected composition of volcanic gases at present time, addressing how this is related to mantle composition and atmospheric pressure. Sulfur dioxide, often used as a marker of volcanic activity in Earth's atmosphere, has been observed since late 1970s to exhibit variability at the Venus' cloud tops at time scales from hours to decades; however, this variability may be associated with solely atmospheric processes. Water vapor is identified as a particularly valuable tracer for volcanic plumes because it can be mapped from orbit at three different tropospheric altitude ranges, and because of its apparent low background variability. We note that volcanic gas plumes could be either enhanced or depleted in water vapor compared to the background atmosphere, depending on magmatic volatile composition. Non-gaseous components of volcanic plumes, such as ash grains and/or cloud aerosol particles, are another investigation target of orbital and in situ measurements. We discuss expectations of in situ and remote measurements of volcanic plumes in the atmosphere with particular focus on the upcoming DAVINCI, EnVision and VERITAS missions, as well as possible future missions.ISSN:1572-9672ISSN:0038-630

Development and Testing of the Dragonfly Geophysics and Meteorology (DraGMet) WIND Sensor

Institute of Electrical and Electronics Engineers (IEEE) 00 (2024) 1-12

Authors:

Danielle Mortensen, James A Shackford, Kyle R Lowery, Nicholas Seese, Robert Osiander, Ralph D Lorenz, Colin F Wilson

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