Phoebe: a surface dominated by water

The Saturnian irregular satellite, Phoebe, can be broadly described as a water-rich rock. This object, which presumably originated from the same primordial population shared by the dynamically excited Kuiper Belt Objects, has received high resolution spectral imaging during the Cassini flyby. We pre...

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Main Authors: Fraser, Wesley C., Brown, Michael E.
Format: Text
Language:unknown
Published: arXiv 2018
Subjects:
Online Access:https://dx.doi.org/10.48550/arxiv.1803.04979
https://arxiv.org/abs/1803.04979
id ftdatacite:10.48550/arxiv.1803.04979
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spelling ftdatacite:10.48550/arxiv.1803.04979 2023-05-15T18:23:03+02:00 Phoebe: a surface dominated by water Fraser, Wesley C. Brown, Michael E. 2018 https://dx.doi.org/10.48550/arxiv.1803.04979 https://arxiv.org/abs/1803.04979 unknown arXiv https://dx.doi.org/10.3847/1538-3881/aac213 arXiv.org perpetual, non-exclusive license http://arxiv.org/licenses/nonexclusive-distrib/1.0/ Earth and Planetary Astrophysics astro-ph.EP FOS Physical sciences article-journal Article ScholarlyArticle Text 2018 ftdatacite https://doi.org/10.48550/arxiv.1803.04979 https://doi.org/10.3847/1538-3881/aac213 2022-04-01T09:48:46Z The Saturnian irregular satellite, Phoebe, can be broadly described as a water-rich rock. This object, which presumably originated from the same primordial population shared by the dynamically excited Kuiper Belt Objects, has received high resolution spectral imaging during the Cassini flyby. We present a new analysis of the Visual Infrared Mapping Spectrometer observations of Phoebe, which critically, includes a geometry correction routine that enables pixel-by-pixel mapping of visible and infrared spectral cubes directly onto the Phoebe shape model, even when an image exhibits significant trailing errors. The result of our re-analysis is a successful match of 40 images, producing spectral maps covering the majority of Phoebe's surface, roughly a 3rd of which is imaged by high resolution observations (<22 km per pixel resolution). There is no spot on Phoebe's surface that is absent of water absorption. The regions richest in water are clearly associated with the Jason and South Pole impact basins. We find Phoebe exhibits only three spectral types, and a water-ice concentration that correlates with physical depth and visible albedo. The water-rich and water-poor regions exhibit significantly different crater size frequency distributions, and different large crater morphologies. We propose that Phoebe once had a water-poor surface whose water-ice concentration was enhanced by basin forming impacts which exposed richer subsurface layers. Finally, we demonstrate that the range of Phoebe's water-ice absorption spans the same range exhibited by dynamically excited Kuiper Belt Objects. The common water-ice absorption depths and primordial origins, and the association of Phoebe's water-rich regions with its impact basins, suggests the plausible idea that Kuiper Belt Objects also originated with water-poor surfaces that were enhanced through stochastic collisional modification. : 16 pages, 8 figures, submitted to the Astrophysical Journal Text South pole DataCite Metadata Store (German National Library of Science and Technology) South Pole Phoebe ENVELOPE(-68.765,-68.765,-71.791,-71.791)
institution Open Polar
collection DataCite Metadata Store (German National Library of Science and Technology)
op_collection_id ftdatacite
language unknown
topic Earth and Planetary Astrophysics astro-ph.EP
FOS Physical sciences
spellingShingle Earth and Planetary Astrophysics astro-ph.EP
FOS Physical sciences
Fraser, Wesley C.
Brown, Michael E.
Phoebe: a surface dominated by water
topic_facet Earth and Planetary Astrophysics astro-ph.EP
FOS Physical sciences
description The Saturnian irregular satellite, Phoebe, can be broadly described as a water-rich rock. This object, which presumably originated from the same primordial population shared by the dynamically excited Kuiper Belt Objects, has received high resolution spectral imaging during the Cassini flyby. We present a new analysis of the Visual Infrared Mapping Spectrometer observations of Phoebe, which critically, includes a geometry correction routine that enables pixel-by-pixel mapping of visible and infrared spectral cubes directly onto the Phoebe shape model, even when an image exhibits significant trailing errors. The result of our re-analysis is a successful match of 40 images, producing spectral maps covering the majority of Phoebe's surface, roughly a 3rd of which is imaged by high resolution observations (<22 km per pixel resolution). There is no spot on Phoebe's surface that is absent of water absorption. The regions richest in water are clearly associated with the Jason and South Pole impact basins. We find Phoebe exhibits only three spectral types, and a water-ice concentration that correlates with physical depth and visible albedo. The water-rich and water-poor regions exhibit significantly different crater size frequency distributions, and different large crater morphologies. We propose that Phoebe once had a water-poor surface whose water-ice concentration was enhanced by basin forming impacts which exposed richer subsurface layers. Finally, we demonstrate that the range of Phoebe's water-ice absorption spans the same range exhibited by dynamically excited Kuiper Belt Objects. The common water-ice absorption depths and primordial origins, and the association of Phoebe's water-rich regions with its impact basins, suggests the plausible idea that Kuiper Belt Objects also originated with water-poor surfaces that were enhanced through stochastic collisional modification. : 16 pages, 8 figures, submitted to the Astrophysical Journal
format Text
author Fraser, Wesley C.
Brown, Michael E.
author_facet Fraser, Wesley C.
Brown, Michael E.
author_sort Fraser, Wesley C.
title Phoebe: a surface dominated by water
title_short Phoebe: a surface dominated by water
title_full Phoebe: a surface dominated by water
title_fullStr Phoebe: a surface dominated by water
title_full_unstemmed Phoebe: a surface dominated by water
title_sort phoebe: a surface dominated by water
publisher arXiv
publishDate 2018
url https://dx.doi.org/10.48550/arxiv.1803.04979
https://arxiv.org/abs/1803.04979
long_lat ENVELOPE(-68.765,-68.765,-71.791,-71.791)
geographic South Pole
Phoebe
geographic_facet South Pole
Phoebe
genre South pole
genre_facet South pole
op_relation https://dx.doi.org/10.3847/1538-3881/aac213
op_rights arXiv.org perpetual, non-exclusive license
http://arxiv.org/licenses/nonexclusive-distrib/1.0/
op_doi https://doi.org/10.48550/arxiv.1803.04979
https://doi.org/10.3847/1538-3881/aac213
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