Distribution and Energy Balance of Pluto's Nitrogen Ice, as seen by New Horizons in 2015
Briley Lewis, John Stansberry, Bryan Holler, William Grundy, Bernard, Schmitt, Silvia Protopapa, Carey Lisse, S. Alan Stern, Leslie Young, Harold, Weaver, Catherine Olkin, Kimberly Ennico, and the New Horizons Science Team

TL;DR
This study uses New Horizons spectral data to map Pluto's nitrogen ice distribution, analyze its energy balance, and infer implications for seasonal atmospheric variations and volatile transport.
Contribution
It provides the first global nitrogen ice map of Pluto, estimates its energy balance, and links ice distribution to topography and seasonal processes.
Findings
Global nitrogen ice distribution mapped with spectral data.
Average bolometric albedo of nitrogen ice is 0.83.
Emissivity of nitrogen ice likely between 0.47 and 0.72.
Abstract
Pluto's surface is geologically complex because of volatile ices that are mobile on seasonal and longer time scales. Here we analyzed New Horizons LEISA spectral data to globally map the nitrogen ice, including nitrogen with methane diluted in it. Our goal was to learn about the seasonal processes influencing ice redistribution, to calculate the globally averaged energy balance, and to place a lower limit on Pluto's N2 inventory. We present the average latitudinal distribution of nitrogen and investigate the relationship between its distribution and topography on Pluto by using maps that include the shifted bands of methane in solid solution with nitrogen to more completely map the distribution of the nitrogen ice. We find that the global average bolometric albedo is 0.83 +\- 0.11, similar to that inferred for Triton, and that a significant fraction of Pluto's N2 is stored in Sputnik…
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Taxonomy
TopicsAstro and Planetary Science · Isotope Analysis in Ecology · Planetary Science and Exploration
