Skip to main navigation Skip to search Skip to main content

Mars’ plasma system. Scientific potential of coordinated multipoint missions: “The next generation”

  • Beatriz Sánchez-Cano
  • , Mark Lester
  • , David Andrews
  • , Hermann Opgenoorth
  • , Robert Lillis
  • , Francois Leblanc
  • , C.M. Fowler
  • , Xiaohua Fang
  • , Oleg Vaisberg
  • , Majd Mayyasi
  • , Mika Holmberg
  • , Jingnan Guo
  • , Maria Hamrin
  • , Christian Mazelle
  • , Kerstin Peter
  • , Martin Pätzold
  • , Katerina Stergiopoulou
  • , Charlotte Goetz
  • , Vladimir Nikolaevich Ermakov
  • , Sergei Shuvalov
  • Jim Wild, P.-L. Blelly, Michael Mendillo, Cesar Bertucci, Marco Cartacci, Roberto Orosei, Feng Chu, Andrew Kopf, Zachary Girazian, Michael Roman
  • Umea Univ, Umea University, Dept Space Phys
  • Space Sciences Laboratory; University of California; Berkeley California USA
  • Laboratoire Atmosphères, Milieux, Observations Spatiales. Centre National de la Recherche Scientifique, Sorbonne Université, Paris, France
  • Univ Colorado, University of Colorado Boulder, University of Colorado System, LASP
  • Space Research Institute of Russian academy of Sciences, Moscow, Russia
  • Boston University
  • ESA ESTEC; Noordwijjk Netherlands
  • Republic of China School of Earth and Space Sciences, University of Science and Technology of China, Hefei, People’s
  • Institut de Recherche en Astrophysique et Planétologie, Toulouse
  • Department of Planetary Research, Rhenish Institute for Environmental Research at the University of Cologne, Cologne, Germany
  • Swedish Institute of Space Physics; Kiruna Sweden
  • European Space Agency; ESTEC; Noordwijk The Netherlands
  • RAS - Space Research Institute
  • Instituto de Astronomía y Física del Espacio, Buenos Aires, Argentina
  • Istituto di Radioastronomia; Istituto Nazionale di Astrofisica; Bologna Italy
  • Physics and Astronomy, University of Iowa, Iowa, United States
  • Astronomical Applications Department, United States Naval Observatory, Washington, DC, USA
  • Department of Physics and Astronomy; University of Leicester; Leicester; UK
  • Univ Leicester, University of Leicester
  • Univ Leicester, University of Leicester, Dept Phys & Astron
  • Swedish Institute of Space Physics; Uppsala; Sweden
  • Inst Rech Astrophys & Planetol
  • Boston Univ, Boston University, Ctr Space Phys
  • Istituto Nazionale di Astrofisica

Research output: Contribution to Journal/MagazineJournal articlepeer-review

2 Citations (Scopus)
55 Downloads (Pure)

Abstract

The objective of this White Paper, submitted to ESA’s Voyage 2050 call, is to get a more holistic knowledge of the dynamics of the Martian plasma system, from its surface up to the undisturbed solar wind outside of the induced magnetosphere. This can only be achieved with coordinated multi-point observations with high temporal resolution as they have the scientific potential to track the whole dynamics of the system (from small to large scales), and they constitute the next generation of the exploration of Mars analogous to what happened at Earth a few decades ago. This White Paper discusses the key science questions that are still open at Mars and how they could be addressed with coordinated multipoint missions. The main science questions are: (i) How does solar wind driving impact the dynamics of the magnetosphere and ionosphere? (ii) What is the structure and nature of the tail of Mars’ magnetosphere at all scales? (iii) How does the lower atmosphere couple to the upper atmosphere? (iv) Why should we have a permanent in-situ Space Weather monitor at Mars? Each science question is devoted to a specific plasma region, and includes several specific scientific objectives to study in the coming decades. In addition, two mission concepts are also proposed based on coordinated multi-point science from a constellation of orbiting and ground-based platforms, which focus on understanding and solving the current science gaps.
Original languageEnglish
Pages (from-to)641-676
Number of pages36
JournalExperimental Astronomy
Volume54
Issue number2-3
Early online date13/11/2021
DOIs
Publication statusPublished - 31/12/2022

User-defined Keywords

  • Mars
  • Missions
  • Ionosphere
  • Magnetosphere
  • Solar wind
  • ESA Voyage 2050

Cite this