Spectral Decomposition Reveals Surface Processes on Europa

Fuente: arXiv
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Main Authors: Yoffe, Gideon, Shahaf, Sahar
Format: Preprint
Published: 2026
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author Yoffe, Gideon
Shahaf, Sahar
author_facet Yoffe, Gideon
Shahaf, Sahar
contents Competing processes shape Europa's surface: geological activity replenishes material through resurfacing, while bombardment by charged particles alters surface chemical composition. Each process leaves distinct spectral signatures. We present a novel data-driven analysis of JWST NIRSpec-IFU observations of Europa's leading hemisphere across three observing geometries, targeting nine spectral bands sensitive to water ice, radiolytic products, and volatiles. Through spectral factorization, we isolate the dominant components of spectral variability and reconstruct their spatial distributions. We find that CO2 enrichment extends beyond Tara Regio, and covers multiple chaos units in a lens-like pattern. These CO2-enriched areas co-occur with anomalous ice-texture signatures. Together, these findings suggest that enrichment in volatiles on Europa may reflect retention-favorable near-surface microphysics as well as emplacement, refining how they are interpreted in the context of surface--interior exchange. This has implications for interpreting the sources and supply rates of extant carbon-bearing species and, ultimately, for assessing Europa's habitability.
format Preprint
id arxiv_https___arxiv_org_abs_2603_10520
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Spectral Decomposition Reveals Surface Processes on Europa
Yoffe, Gideon
Shahaf, Sahar
Earth and Planetary Astrophysics
Instrumentation and Methods for Astrophysics
Applications
Competing processes shape Europa's surface: geological activity replenishes material through resurfacing, while bombardment by charged particles alters surface chemical composition. Each process leaves distinct spectral signatures. We present a novel data-driven analysis of JWST NIRSpec-IFU observations of Europa's leading hemisphere across three observing geometries, targeting nine spectral bands sensitive to water ice, radiolytic products, and volatiles. Through spectral factorization, we isolate the dominant components of spectral variability and reconstruct their spatial distributions. We find that CO2 enrichment extends beyond Tara Regio, and covers multiple chaos units in a lens-like pattern. These CO2-enriched areas co-occur with anomalous ice-texture signatures. Together, these findings suggest that enrichment in volatiles on Europa may reflect retention-favorable near-surface microphysics as well as emplacement, refining how they are interpreted in the context of surface--interior exchange. This has implications for interpreting the sources and supply rates of extant carbon-bearing species and, ultimately, for assessing Europa's habitability.
title Spectral Decomposition Reveals Surface Processes on Europa
topic Earth and Planetary Astrophysics
Instrumentation and Methods for Astrophysics
Applications
url https://arxiv.org/abs/2603.10520