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Evidence for Ammonia-bearing Species on the Uranian Satellite Ariel Supports Recent Geologic Activity

Authors :
Richard J. Cartwright
Chloe B. Beddingfield
Tom A. Nordheim
Joseph Roser
William M. Grundy
Kevin P. Hand
Joshua P. Emery
Dale P Cruikshank
Francesca Scipioni
Source :
Astrophysical Journal Letters. 898(1)
Publication Year :
2020
Publisher :
United States: NASA Center for Aerospace Information (CASI), 2020.

Abstract

We investigated whether ammonia-rich constituents are present on the surface of the Uranian moon Ariel by analyzing 32 near-infrared reflectance spectra collected over a wide range of sub-observer longitudes and latitudes. We measured the band areas and depths of a 2.2 μm feature in these spectra, which has been attributed to ammonia-bearing species on other icy bodies. Ten spectra display prominent 2.2 μm features with band areas and depths >2σ. We determined the longitudinal distribution of the 2.2 μm band, finding no statistically meaningful differences between Ariel’s leading and trailing hemispheres, indicating that this band is distributed across Ariel’s surface. We compared the band centers and shapes of the five Ariel spectra displaying the strongest 2.2 μm bands to laboratory spectra of various ammonia-bearing and ammonium-bearing species, finding that the spectral signatures of the Ariel spectra are best matched by ammonia-hydrates and flash frozen ammonia-water solutions. Our analysis also revealed that four Ariel spectra display 2.24 μm bands (>2σ band areas and depths), with band centers and shapes that are best matched by ammonia ice. Because ammonia should be efficiently removed over short timescales by ultraviolet photons, cosmic rays, and charged particles trapped in Uranus’ magnetosphere, the possible presence of this constituent supports geologic activity in the recent past, such as emplacement of ammonia-rich cryolavas and exposure of ammonia-rich deposits by tectonism, impact events, and mass wasting.

Subjects

Subjects :
Geosciences (General)

Details

Language :
English
ISSN :
20418213 and 20418205
Volume :
898
Issue :
1
Database :
NASA Technical Reports
Journal :
Astrophysical Journal Letters
Notes :
NHH18ZDA001N, , NNX17AG15G, , 80NSSC18K00007
Publication Type :
Report
Accession number :
edsnas.20230007370
Document Type :
Report
Full Text :
https://doi.org/10.3847/2041-8213/aba27f