Inferring Io's Internal Properties by Combining Gravity Measurements and Volcanic Activity

Abstract With its extreme geological activity, Io represents an archetype for tidally heated exoplanets/moons and provides insight into early stages of terrestrial planet evolution. Decades of ground‐based observations and multiple space missions have refined our understanding of Io, yet it remains debated where inside Io the tidal heating takes place. Here, we synthesize several independent data sets in a Bayesian approach to provide an updated view of Io's interior. Tidal response data constrain the bulk mechanical properties of the silicate envelope but do not resolve the radial profile. We propose adding constraints based on the observed distribution of volcanic activity, thereby introducing sensitivity to the radial viscosity profile. The combined observations are consistent with the majority of the dissipation occurring in a low‐viscosity asthenosphere approximately 200 km thick, with a maximum viscosity of Pa s, which is also valid under a more conservative estimate of spatially uniform heat flux. This low viscosity implies either enhanced viscous dissipation under Io's conditions due to poorly understood rheological laws, an asthenosphere near the disaggregation threshold, corresponding to a melt fraction of , or a combination of both. Together, these results provide a coherent interior structure and thermal state that can be used in future Io studies.

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Publication Details

Journal
Journal of Geophysical Research Planets
Published
2026-09-01
DOI
https://doi.org/10.1029/2026je009885
Citations
1
Primary Topic
Astro and Planetary Science
Type
article
Field-Weighted Citation Impact
4.48
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Inferring Io's Internal Properties by Combining Gravity Measurements and Volcanic Activity

Wouter van der Wal, Marc Rovira‐Navarro, Allard Veenstra
1 citations
Journal of Geophysical Research Planets
Astro and Planetary Science
4.48
article

Inferring Io's Internal Properties by Combining Gravity Measurements and Volcanic Activity

Wouter van der Wal, Marc Rovira‐Navarro, Allard Veenstra
article en
1 citations

Abstract

Abstract With its extreme geological activity, Io represents an archetype for tidally heated exoplanets/moons and provides insight into early stages of terrestrial planet evolution. Decades of ground‐based observations and multiple space missions have refined our understanding of Io, yet it remains debated where inside Io the tidal heating takes place. Here, we synthesize several independent data sets in a Bayesian approach to provide an updated view of Io's interior. Tidal response data constrain the bulk mechanical properties of the silicate envelope but do not resolve the radial profile. We propose adding constraints based on the observed distribution of volcanic activity, thereby introducing sensitivity to the radial viscosity profile. The combined observations are consistent with the majority of the dissipation occurring in a low‐viscosity asthenosphere approximately 200 km thick, with a maximum viscosity of Pa s, which is also valid under a more conservative estimate of spatially uniform heat flux. This low viscosity implies either enhanced viscous dissipation under Io's conditions due to poorly understood rheological laws, an asthenosphere near the disaggregation threshold, corresponding to a melt fraction of , or a combination of both. Together, these results provide a coherent interior structure and thermal state that can be used in future Io studies.

Journal of Geophysical Research PlanetsVol. 131(9)
Delft University of Technology (NL)
Openalex Percentile: Top 5%
Astro and Planetary Science
4.48
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Inferring Io's Internal Properties by Combining Gravity Measurements and Volcanic Activity — Wouter van der Wal, Marc Rovira‐Navarro, et al. · Journal of Geophysical Research Planets (2026) | TGRS Research Map | TGRS