Lava Lakes on Io: crust age and implications for thermal output

Fuente: arXiv
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Main Authors: Mura, Alessandro, Lopes, Rosaly M. C., Tosi, Federico, Mouginis-Mark, Peter J., Radebaugh, Jani, Zambon, Francesca, Paris, Matteo, Bolton, Scott, Adriani, Alberto, Sordini, Roberto, Cicchetti, Andrea, Noschese, Raffaella, Piccioni, Giuseppe, Plainaki, Christina, Sindoni, Giuseppe
Format: Preprint
Published: 2026
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author Mura, Alessandro
Lopes, Rosaly M. C.
Tosi, Federico
Mouginis-Mark, Peter J.
Radebaugh, Jani
Zambon, Francesca
Paris, Matteo
Bolton, Scott
Adriani, Alberto
Sordini, Roberto
Cicchetti, Andrea
Noschese, Raffaella
Piccioni, Giuseppe
Plainaki, Christina
Sindoni, Giuseppe
author_facet Mura, Alessandro
Lopes, Rosaly M. C.
Tosi, Federico
Mouginis-Mark, Peter J.
Radebaugh, Jani
Zambon, Francesca
Paris, Matteo
Bolton, Scott
Adriani, Alberto
Sordini, Roberto
Cicchetti, Andrea
Noschese, Raffaella
Piccioni, Giuseppe
Plainaki, Christina
Sindoni, Giuseppe
contents Recent observations by the JIRAM instrument onboard NASA's Juno mission have confirmed that many of Io's volcanic hot spots are active lava lakes, characterized by a colder central crust surrounded by a hotter peripheral ring. In this study, we investigate the thermal properties of thirty such lava lakes, providing new constraints on their structure and energy budget. We find that most of the total power from Io's lava lakes comes from their low-temperature crusts rather than the hotter peripheral rings, suggesting previous estimates underestimated lava lake power by up to a factor of 10. Io's paterae undergo stochastic resurfacing on timescales of roughly a decade, with each lake possibly following its own characteristic cycle. We also explore the relationship between the average temperature of the crust and the evolutionary state of each lake, offering insights into the frequency of resurfacing processes. Finally, we propose an improved assessment of Io's global thermal output, emphasizing that only full-surface observation of Io with sufficient spatial and spectral resolution can yield realistic values for the moon's volcanic total heat flux.
format Preprint
id arxiv_https___arxiv_org_abs_2603_22062
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Lava Lakes on Io: crust age and implications for thermal output
Mura, Alessandro
Lopes, Rosaly M. C.
Tosi, Federico
Mouginis-Mark, Peter J.
Radebaugh, Jani
Zambon, Francesca
Paris, Matteo
Bolton, Scott
Adriani, Alberto
Sordini, Roberto
Cicchetti, Andrea
Noschese, Raffaella
Piccioni, Giuseppe
Plainaki, Christina
Sindoni, Giuseppe
Earth and Planetary Astrophysics
Recent observations by the JIRAM instrument onboard NASA's Juno mission have confirmed that many of Io's volcanic hot spots are active lava lakes, characterized by a colder central crust surrounded by a hotter peripheral ring. In this study, we investigate the thermal properties of thirty such lava lakes, providing new constraints on their structure and energy budget. We find that most of the total power from Io's lava lakes comes from their low-temperature crusts rather than the hotter peripheral rings, suggesting previous estimates underestimated lava lake power by up to a factor of 10. Io's paterae undergo stochastic resurfacing on timescales of roughly a decade, with each lake possibly following its own characteristic cycle. We also explore the relationship between the average temperature of the crust and the evolutionary state of each lake, offering insights into the frequency of resurfacing processes. Finally, we propose an improved assessment of Io's global thermal output, emphasizing that only full-surface observation of Io with sufficient spatial and spectral resolution can yield realistic values for the moon's volcanic total heat flux.
title Lava Lakes on Io: crust age and implications for thermal output
topic Earth and Planetary Astrophysics
url https://arxiv.org/abs/2603.22062