Journal article
Constraints on the shallow elastic and anelastic structure of Mars from InSight seismic data
- Abstract:
- Mars’s seismic activity and noise have been monitored since January 2019 by the seismometer of the InSight (Interior Exploration using Seismic Investigations, Geodesy and Heat Transport) lander. At night, Mars is extremely quiet; seismic noise is about 500 times lower than Earth’s microseismic noise at periods between 4 s and 30 s. The recorded seismic noise increases during the day due to ground deformations induced by convective atmospheric vortices and ground-transferred wind-generated lander noise. Here we constrain properties of the crust beneath InSight, using signals from atmospheric vortices and from the hammering of InSight’s Heat Flow and Physical Properties (HP3) instrument, as well as the three largest Marsquakes detected as of September 2019. From receiver function analysis, we infer that the uppermost 8–11 km of the crust is highly altered and/or fractured. We measure the crustal diffusivity and intrinsic attenuation using multiscattering analysis and find that seismic attenuation is about three times larger than on the Moon, which suggests that the crust contains small amounts of volatiles.
- Publication status:
- Published
- Peer review status:
- Peer reviewed
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- Files:
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(Preview, Accepted manuscript, 10.4MB, Terms of use)
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- Publisher copy:
- 10.1038/s41561-020-0536-y
Authors
- Publisher:
- Springer Nature
- Journal:
- Nature Geoscience More from this journal
- Volume:
- 13
- Issue:
- 3
- Pages:
- 213-220
- Publication date:
- 2020-02-24
- Acceptance date:
- 2020-01-09
- DOI:
- EISSN:
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1752-0908
- ISSN:
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1752-0894
- Language:
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English
- Keywords:
- Subjects:
- Pubs id:
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1094481
- Local pid:
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pubs:1094481
- Deposit date:
-
2020-04-28
Terms of use
- Copyright holder:
- Lognonné, P et al.
- Copyright date:
- 2020
- Rights statement:
- © The Author(s), under exclusive licence to Springer Nature Limited 2020.
- Notes:
- This is the accepted manuscript version of the article. The final version is available online from Springer Nature at: https://doi.org/10.1038/s41561-020-0536-y
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