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May 8, 2026Science Advances2 citationsOpen Access

Powering Ganymede’s dynamo with protracted core formation

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KTKevin T. TrinhFPFlavio PetriccaDHD J Hemingway

Key Points

  • The study aims to reassess the thermal evolution of Ganymede's interior and its implications for the moon's dynamo.
  • Developed models to evaluate thermal evolution from a cold start.
  • Assessed impact of mantle warming on core formation and dynamo sustainment.
  • Models indicate ongoing core formation could explain Ganymede's active dynamo.
  • Findings suggest a Fe-FeS core composition, contributing to sustained dynamo activity over billions of years.

Abstract

Ganymede is the only known moon with an active dynamo today. Previous studies interpret Ganymede’s dynamo as arising from convection in a metal core that formed billions of years ago. However, Ganymede likely accreted too cold to form with a metal core, which confounds interpretations of Ganymede’s magnetic field as a constraint on the moon’s broader history. Here, we reevaluate the thermal evolution of Ganymede’s rock-metal interior from a cold start. Our models show that Ganymede’s observed dynamo is consistent with ongoing core formation, a process not yet observed elsewhere. If Ganymede has an Fe-FeS core with a sub-eutectic composition, then gradual mantle warming may expel dense Fe melt onto the growing protocore and stir liquid metal, sustaining a dynamo for billions of years.

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Cite This Study

Trinh et al. (2026) studied this question.

synapsesocial.com/papers/69fd7e23bfa21ec5bbf065dfhttps://doi.org/10.1126/sciadv.aed8021
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