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JWST Reveals Spectral Tracers of Recent Surface Modification on EuropaEuropa has been modified by a variety of geologic processes, exposing internally-derived materials that are heavily irradiated by charged particles trapped in Jupiter’s magnetosphere. Prior spectral analysis of H2O ice on Europa relied on low signal-to-noise data at wavelengths >2.5 µm, limiting assessment of a 3.1 µm Fresnel peak that is diagnostic of exposed crystalline ice. We report new measurements of H2O ice spectral features using high signal-to-noise data collected by the NIRSpec spectrograph (1.48 – 5.35 µm) on the James Webb Space Telescope. These data reveal a narrow 3.1 µm crystalline H2O ice Fresnel peak, which is primarily located at southern latitudes in Tara and Powys Regiones. Our analysis indicates that crystalline ice exposed in these low-latitude regiones is likely sustained by ongoing thermal (re)crystallization outpacing charged particle amorphization of the top ∼10 µm of Europa’s regolith over short timescales (<15 days). We also measured H2O ice features centered near 1.5 µm, 1.65 µm, and 2.0 µm, and a broad 3.6 µm H2O continuum peak, which are all stronger at northern latitudes, in contrast to the 3.1 µm Fresnel peak identified at southern latitudes. These results support the hypothesis that H2O ice in Europa’s regolith is vertically stratified, with amorphous ice grains dominating its exposed surface, except in Tara and Powys Regiones. We also find that a previously detected 4.38 µm 13CO2 feature is present almost exclusively at southern latitudes
in Tara and Powys Regiones, likely derived from an internal source of carbon-bearing material.
Document ID
20260004601
Acquisition Source
Goddard Space Flight Center
Document Type
Accepted Manuscript (Version with final changes)
Authors
Richard J Cartwright ORCID
(Johns Hopkins University Applied Physics Laboratory North Laurel, United States)
Charles A Hibbitts ORCID
(Johns Hopkins University Applied Physics Laboratory North Laurel, United States)
Bryan J Holler ORCID
(Space Telescope Science Institute Baltimore, United States)
Ujjwal Raut ORCID
(Southwest Research Institute San Antonio, United States)
Tom A Nordheim ORCID
(Johns Hopkins University Applied Physics Laboratory North Laurel, United States)
Marc Neveu ORCID
(University of Maryland, College Park College Park, United States)
Silvia Protopapa ORCID
(Southwest Research Institute San Antonio, United States)
Christopher R Glein ORCID
(Southwest Research Institute San Antonio, United States)
Erin J Leonard ORCID
(Jet Propulsion Laboratory Pasadena, United States)
Lorenz Roth ORCID
(KTH Royal Institute of Technology Stockholm, Sweden)
Chloe B Beddingfield ORCID
(Johns Hopkins University Applied Physics Laboratory North Laurel, United States)
Geronimo I Villanueva ORCID
(Goddard Space Flight Center Greenbelt, United States)
Date Acquired
May 21, 2026
Publication Date
May 28, 2025
Publication Information
Publication: The Planetary Science Journal
Publisher: IOP Publishing, Inc.
Volume: 6
Issue: 5
Issue Publication Date: May 28, 2026
ISSN: 2632-3338
Subject Category
Optics
Earth Resources and Remote Sensing
Funding Number(s)
PROJECT: JWST-GTO
CONTRACT_GRANT: NAS 5-03127
CONTRACT_GRANT: 1715089
CONTRACT_GRANT: 80HQTR24DA010
Distribution Limits
Public
Copyright
Use by or on behalf of the US Gov. Permitted.
Technical Review
External Peer Committee
Keywords
Surface processes (2116)
Surface composition (2115)
James Webb Space Telescope (2291)
Galilean Satellites (627)
Europa (2189
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