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Evolution of Pluto's Impact-Deformed Ice Shell Below Sputnik Planitia Basin

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Author
Kihoulou, Martin
Kalousová, KláraORCiD Profile - 0000-0002-1602-8142WoS Profile - C-2678-2017Scopus Profile - 55248302800
Souček, OndřejORCiD Profile - 0000-0002-6515-5420WoS Profile - K-3466-2017Scopus Profile - 24765621300
Publication date
2022
Published in
Journal of Geophysical Research. Planets
Volume / Issue
127 (6)
ISBN / ISSN
ISSN: 2169-9097
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  • Faculty of Mathematics and Physics

This publication has a published version with DOI 10.1029/2022JE007221

Abstract
Sputnik Planitia basin, the dominant surface feature of the dwarf planet Pluto, is located very close to the far point of Pluto-Charon tidal axis. This position is currently believed to be a result of whole body reorientation driven by the combination of (a) the uplift of a subsurface ocean in response to a basin-forming impact and (b) the nitrogen layer accumulated inside the basin. Since an ice shell made of pure water ice cannot maintain the uplift on timescales of billions of years, the presence of an insulating and highly viscous layer of methane clathrates at the base of the shell has recently been proposed. In this study, we solve the thermo-mechanical evolution of the ice shell in a 2D spherical axisymmetric geometry and evaluate the gravity anomaly associated with the evolving ice shell shape. Taking into account the effect of impact heating and stress-dependent rheology of both ice and clathrates, we show that a thick shell (>= 200 km) loses the impact heat slowly which leads to fast uplift relaxation of the order of hundreds of million years. On the contrary, a thin shell (similar to 100 km) cools down quickly (similar to 10 Myr), becoming rigid and more likely to preserve the ocean/shell interface uplift till the present. These results suggest that a thick ocean may be present beneath Pluto's ice shell.
Keywords
Pluto, Sputnik Planitia, clathrates, ocean, viscous relaxation, ice shell
Permanent link
https://hdl.handle.net/20.500.14178/1665
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WOS:000804006600001
SCOPUS:2-s2.0-85132944974
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Kihoulou, M., Kalousová, K., & Souček, O. (2022). Evolution of Pluto's impact-deformed ice shell below Sputnik Planitia basin. Journal of Geophysical Research: Planets, 127, e2022JE007221. https://doi.org/10.1029/2022JE007221. To view the published open abstract, go to http://dx.doi.org and enter the DOI.

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