A Photometric System for Detection of Water and Methane Ices on Kuiper Belt Objects
Chadwick A. Trujillo, Scott S. Sheppard, Emily L. Schaller

TL;DR
This paper introduces a new near-infrared photometric system with custom filters to efficiently detect water and methane ices on Kuiper Belt Objects, enabling rapid classification and family identification.
Contribution
The authors develop and validate a novel photometric system that reduces observation time and accurately identifies ice compositions on KBOs, including new family members.
Findings
Photometric system agrees with spectroscopic data
Identified new Haumea family member 2009 YE7
Largest KBOs show methane ice presence
Abstract
We present a new near-infrared photometric system for detection of water ice and methane ice in the solar system. The system consists of two medium-band filters in the K-band region of the near-infrared, which are sensitive to water ice and methane ice, plus continuum observations in the J-band and Y-band. The primary purpose of this system is to distinguish between three basic types of Kuiper Belt Objects (KBOs) --- those rich in water ice, those rich in methane ice, and those with little absorbance. In this work, we present proof-of-concept observations of 51 KBOs using our filter system, 21 of which have never been observed in the near-IR spectroscopically. We show that our custom photometric system is consistent with previous spectroscopic observations while reducing telescope observing time by a factor of 3. We use our filters to identify Haumea collisional family members, which…
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Taxonomy
TopicsAstro and Planetary Science · Planetary Science and Exploration · Spacecraft and Cryogenic Technologies
