Back to Search Start Over

Spin state and deep interior structure of Mars from InSight radio tracking.

Authors :
Le Maistre S
Rivoldini A
Caldiero A
Yseboodt M
Baland RM
Beuthe M
Van Hoolst T
Dehant V
Folkner WM
Buccino D
Kahan D
Marty JC
Antonangeli D
Badro J
Drilleau M
Konopliv A
Péters MJ
Plesa AC
Samuel H
Tosi N
Wieczorek M
Lognonné P
Panning M
Smrekar S
Banerdt WB
Source :
Nature [Nature] 2023 Jul; Vol. 619 (7971), pp. 733-737. Date of Electronic Publication: 2023 Jun 14.
Publication Year :
2023

Abstract

Knowledge of the interior structure and atmosphere of Mars is essential to understanding how the planet has formed and evolved. A major obstacle to investigations of planetary interiors, however, is that they are not directly accessible. Most of the geophysical data provide global information that cannot be separated into contributions from the core, the mantle and the crust. The NASA InSight mission changed this situation by providing high-quality seismic and lander radio science data <superscript>1,2</superscript> . Here we use the InSight's radio science data to determine fundamental properties of the core, mantle and atmosphere of Mars. By precisely measuring the rotation of the planet, we detected a resonance with a normal mode that allowed us to characterize the core and mantle separately. For an entirely solid mantle, we found that the liquid core has a radius of 1,835 ± 55 km and a mean density of 5,955-6,290 kg m <superscript>-3</superscript> , and that the increase in density at the core-mantle boundary is 1,690-2,110 kg m <superscript>-3</superscript> . Our analysis of InSight's radio tracking data argues against the existence of a solid inner core and reveals the shape of the core, indicating that there are internal mass anomalies deep within the mantle. We also find evidence of a slow acceleration in the Martian rotation rate, which could be the result of a long-term trend either in the internal dynamics of Mars or in its atmosphere and ice caps.<br /> (© 2023. The Author(s), under exclusive licence to Springer Nature Limited.)

Details

Language :
English
ISSN :
1476-4687
Volume :
619
Issue :
7971
Database :
MEDLINE
Journal :
Nature
Publication Type :
Academic Journal
Accession number :
37316663
Full Text :
https://doi.org/10.1038/s41586-023-06150-0