Resolving Io’s Volcanoes from a Mutual Event Observation at the Large Binocular Telescope

Author:

de Kleer KatherineORCID,Skrutskie Michael,Leisenring JarronORCID,Davies Ashley G.ORCID,Conrad AlORCID,de Pater ImkeORCID,Resnick Aaron,Bailey Vanessa P.ORCID,Defrère DenisORCID,Hinz Phil,Skemer AndrewORCID,Spalding EckhartORCID,Vaz Amali,Veillet ChristianORCID,Woodward Charles E.ORCID

Abstract

Abstract Unraveling the geological processes ongoing at Io’s numerous sites of active volcanism requires high spatial resolution to, for example, measure the areal coverage of lava flows or identify the presence of multiple emitting regions within a single volcanic center. In de Kleer et al. (2017) we described observations with the Large Binocular Telescope during an occultation of Io by Europa at ∼6:17 UT on 2015 March 8 and presented a map of the temperature distribution within Loki Patera derived from these data. Here we present emission maps of three other volcanic centers derived from the same observation: Pillan Patera, Kurdalagon Patera, and the vicinity of Ulgen Patera/PV59/N Lerna Regio. The emission is localized by the light curves and resolved into multiple distinct emitting regions in two of the cases. Both Pillan and Kurdalagon Paterae had undergone eruptions in the months prior to our observations, and the location and intensity of the emission are interpreted in the context of the temporal evolution of these eruptions observed from other facilities. The emission from Kurdalagon Patera is resolved into two distinct emitting regions separated by only a few degrees in latitude that were unresolved by Keck observations from the same month.

Funder

National Aeronautics and Space Administration

National Science Foundation

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Earth and Planetary Sciences (miscellaneous),Geophysics,Astronomy and Astrophysics

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1. Near Infrared Spectral Radiance at Multiple Wavelengths From Io's Volcanoes 1: The Low Spatial Resolution Night‐Time Galileo NIMS Data Set;Journal of Geophysical Research: Planets;2023-08

2. Io Hot Spot Distribution Detected by Juno/JIRAM;Geophysical Research Letters;2023-01-03

3. Io’s Thermal Emission and Heat Flow;Io: A New View of Jupiter’s Moon;2023

4. NaCl and KCl in Io’s Atmosphere;The Planetary Science Journal;2022-10-01

5. Imaging nearby, habitable-zone planets with the Large Binocular Telescope Interferometer;Optical and Infrared Interferometry and Imaging VIII;2022-08-26

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