JWST Spectroscopy of a Blue Binary Cold Classical Kuiper Belt Object

Fuente: arXiv
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Autori principali: Wong, Ian, Holler, Bryan J., Fraser, Wesley C., Brown, Michael E.
Natura: Preprint
Pubblicazione: 2025
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author Wong, Ian
Holler, Bryan J.
Fraser, Wesley C.
Brown, Michael E.
author_facet Wong, Ian
Holler, Bryan J.
Fraser, Wesley C.
Brown, Michael E.
contents We present observations of two binary systems within the cold classical region of the Kuiper belt$-$2001 XR254 and 2016 BP81$-$obtained with the JWST Near-Infrared Spectrograph. The measured reflectance spectrum of 2001 XR254 is characteristic of the red cold classicals, with strong features due to carbon dioxide, carbon monoxide, and methanol ices. In contrast, 2016 BP81 is a blue binary, with a water-ice-rich surface composition. The two components of the 2016 BP81 binary display identical spectral profiles, consistent with coeval formation from gravitational collapse. Through qualitative and quantitative comparisons of water-ice-rich Kuiper belt objects observed with JWST, we identify a small subclass, including 2016 BP81, that appears to differ in systematic ways from the rest of the population. The relatively deep carbon dioxide ice absorption bands and enhanced signatures of aliphatic organics suggest that objects within this subclass may have originated in a distinct formation environment from the other water-ice-rich Kuiper belt objects. The implications of our findings are discussed within the context of recent models of Kuiper belt formation and evolution.
format Preprint
id arxiv_https___arxiv_org_abs_2506_11972
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle JWST Spectroscopy of a Blue Binary Cold Classical Kuiper Belt Object
Wong, Ian
Holler, Bryan J.
Fraser, Wesley C.
Brown, Michael E.
Earth and Planetary Astrophysics
We present observations of two binary systems within the cold classical region of the Kuiper belt$-$2001 XR254 and 2016 BP81$-$obtained with the JWST Near-Infrared Spectrograph. The measured reflectance spectrum of 2001 XR254 is characteristic of the red cold classicals, with strong features due to carbon dioxide, carbon monoxide, and methanol ices. In contrast, 2016 BP81 is a blue binary, with a water-ice-rich surface composition. The two components of the 2016 BP81 binary display identical spectral profiles, consistent with coeval formation from gravitational collapse. Through qualitative and quantitative comparisons of water-ice-rich Kuiper belt objects observed with JWST, we identify a small subclass, including 2016 BP81, that appears to differ in systematic ways from the rest of the population. The relatively deep carbon dioxide ice absorption bands and enhanced signatures of aliphatic organics suggest that objects within this subclass may have originated in a distinct formation environment from the other water-ice-rich Kuiper belt objects. The implications of our findings are discussed within the context of recent models of Kuiper belt formation and evolution.
title JWST Spectroscopy of a Blue Binary Cold Classical Kuiper Belt Object
topic Earth and Planetary Astrophysics
url https://arxiv.org/abs/2506.11972