ROADMAP | ROle and impAct of Dust and clouds in the Martian Atmosphere: from lab to space

Summary
The goal of the ROADMAP project is to better understand the role and impact of dust and clouds on the Martian atmosphere. Although dust is present throughout the Martian atmosphere, its abundance and physical properties are still poorly defined. Similarly the impact of dust on the composition, structure and dynamics of the atmosphere is only beginning to be addressed. Specifically, accurate knowledge of the characteristics of dust and ice clouds is crucial for the interpretation of the remote sensing observations, both in the infrared and the ultraviolet spectral regions. The ROADMAP project employs an integrated scientific approach including; laboratory simulations, modelling of specific phenomena, analysis of space data and Global Circulation Modelling. This will improve our vision of the Martian atmosphere and provide a new generation of high-level data, increasing the science return of the past and current missions to Mars as well as shaping future planetary missions.
We will focus on two European missions which are still active around the Red Planet and in particular make use of the ExoMars TGO instrument NOMAD, which has been optimized for the detection of trace gases, dust and clouds in the Martian atmosphere.
This project is therefore both timely and highly relevant to the SPACE-30-SCI-2020 call by addressing scientific data exploitation and the objective of increasing the science return of specific European space missions.
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More information & hyperlinks
Web resources: https://cordis.europa.eu/project/id/101004052
Start date: 01-11-2020
End date: 31-10-2023
Total budget - Public funding: 1 486 273,00 Euro - 1 480 023,00 Euro
Cordis data

Original description

The goal of the ROADMAP project is to better understand the role and impact of dust and clouds on the Martian atmosphere. Although dust is present throughout the Martian atmosphere, its abundance and physical properties are still poorly defined. Similarly the impact of dust on the composition, structure and dynamics of the atmosphere is only beginning to be addressed. Specifically, accurate knowledge of the characteristics of dust and ice clouds is crucial for the interpretation of the remote sensing observations, both in the infrared and the ultraviolet spectral regions. The ROADMAP project employs an integrated scientific approach including; laboratory simulations, modelling of specific phenomena, analysis of space data and Global Circulation Modelling. This will improve our vision of the Martian atmosphere and provide a new generation of high-level data, increasing the science return of the past and current missions to Mars as well as shaping future planetary missions.
We will focus on two European missions which are still active around the Red Planet and in particular make use of the ExoMars TGO instrument NOMAD, which has been optimized for the detection of trace gases, dust and clouds in the Martian atmosphere.
This project is therefore both timely and highly relevant to the SPACE-30-SCI-2020 call by addressing scientific data exploitation and the objective of increasing the science return of specific European space missions.

Status

CLOSED

Call topic

SPACE-30-SCI-2020

Update Date

27-10-2022
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Horizon 2020
H2020-EU.2. INDUSTRIAL LEADERSHIP
H2020-EU.2.1. INDUSTRIAL LEADERSHIP - Leadership in enabling and industrial technologies
H2020-EU.2.1.6. INDUSTRIAL LEADERSHIP - Leadership in enabling and industrial technologies – Space
H2020-EU.2.1.6.3. Enabling exploitation of space data
H2020-SPACE-2020
SPACE-30-SCI-2020 Scientific data exploitation