Pluto's global surface composition through pixel-by-pixel Hapke modeling of New Horizons Ralph/LEISA data
arXiv:1604.08468 · doi:10.1016/j.icarus.2016.11.028
Abstract
On July 14th 2015, NASA's New Horizons mission gave us an unprecedented detailed view of the Pluto system. The complex compositional diversity of Pluto's encounter hemisphere was revealed by the Ralph/LEISA infrared spectrometer on board of New Horizons. We present compositional maps of Pluto defining the spatial distribution of the abundance and textural properties of the volatiles methane and nitrogen ices and non-volatiles water ice and tholin. These results are obtained by applying a pixel-by-pixel Hapke radiative transfer model to the LEISA scans. Our analysis focuses mainly on the large scale latitudinal variations of methane and nitrogen ices and aims at setting observational constraints to volatile transport models. Specifically, we find three latitudinal bands: the first, enriched in methane, extends from the pole to 55deg N, the second dominated by nitrogen, continues south to 35deg N, and the third, composed again mainly of methane, reaches 20deg N. We demonstrate that the distribution of volatiles across these surface units can be explained by differences in insolation over the past few decades. The latitudinal pattern is broken by Sputnik Planitia, a large reservoir of volatiles, with nitrogen playing the most important role. The physical properties of methane and nitrogen in this region are suggestive of the presence of a cold trap or possible volatile stratification. Furthermore our modeling results point to a possible sublimation transport of nitrogen from the northwest edge of Sputnik Planitia toward the south.
43 pages, 7 figures; accepted for publication in Icarus
References in corpus (10)
- The Pluto system: Initial results from its exploration by New Horizons
- Surface Compositions Across Pluto and Charon
- The Geology of Pluto and Charon Through the Eyes of New Horizons
- Ralph: A Visible/Infrared Imager for the New Horizons Pluto/Kuiper Belt Mission
- Long-Range Reconnaissance Imager on New Horizons
- Convection in a volatile nitrogen-ice-rich layer drives Pluto's geological vigor
- New Horizons: Anticipated Scientific Investigations at the Pluto System
- Absorption Coefficients of the Methane-Nitrogen Binary Ice System: Implications for Pluto
- Near-Infrared Spectral Monitoring of Pluto's Ices II: Recent Decline of CO and N Ice Absorptions
- The Spectrum of Pluto, 0.40 - 0.93 m I. Secular and longitudinal distribution of ices and complex organics
Cited by in corpus (36)
- Planetary Spectrum Generator: an accurate online radiative transfer suite for atmospheres, comets, small bodies and exoplanets
- Scientific Discovery with the James Webb Space Telescope
- The Pluto System After New Horizons
- The nitrogen cycles on Pluto over seasonal and astronomical timescales
- SHADOWS: a spectro-gonio radiometer for bidirectional reflectance studies of dark meteorites and terrestrial analogs: design, calibrations, and performances on challenging surfaces
- Pluto's Haze as a Surface Material
- Dome C UltraCarbonaceous Antarctic MicroMeteorites Infrared and Raman fingerprints
- On the Origin and Thermal Stability of Arrokoths and Plutos Ices
- The thermal emission of Centaurs and Trans-Neptunian objects at millimeter wavelengths from ALMA observations
- 1I/'Oumuamua as an N2 ice fragment of an exo-pluto surface. II. Generation of N2 ice fragments and the origin of 'Oumuamua
- The CH4 cycles on Pluto over seasonal and astronomical timescales
- 1I/'Oumuamua as an N2 ice fragment of an exo-Pluto surface: I. size and compositional constraints
- The Role of Acetylene in the Chemical Evolution of Carbon Complexity
- Large-scale cryovolcanic resurfacing on Pluto
- Primordial N2 provides a cosmochemical explanation for the existence of Sputnik Planitia, Pluto
- Modeling Pluto's Minimum Pressure: Implications for Haze Production
- Morphological Comparison of Blocks in Chaos Terrains on Pluto, Europa, and Mars
- Volatile evolution and atmospheres of Trans-Neptunian Objects
- A Search for Temporal Changes on Pluto and Charon
- Volatile transport modeling on Triton with new observational constraints
- New Constraints on Pluto's Sputnik Planitia Ice Sheet from a Coupled Reorientation-Climate Model
- Impact Craters on Pluto and Charon and Terrain Age Estimates
- Distribution and Energy Balance of Pluto's Nitrogen Ice, as seen by New Horizons in 2015
- Surface Composition of Pluto's Kiladze Area and Relationship to Cryovolcanism
- Uncertainty in Grain Size Estimations of Volatiles on Trans-Neptunian Objects (TNOs) and Kuiper Belt Objects (KBOs)
- Evaluation of short-term temporal evolution of Pluto's surface composition from 2014-2017 with APO/TripleSpec
- Discrepancy in Grain Size Estimation of HO Ice in the Outer Solar System and the Interstellar Medium
- Pluto Geologic Map: Use of Crater Data to Understand Age Relationships
- Twin Worlds, Divergent Fates: How Obliquity has differently shaped Pluto's and Triton's landscapes and climates
- Surface Volatile Composition as Evidence for Hydrothermal Processes Lasting Longer in Triton's Interior than Pluto's
- Global Climate Model Occultation Lightcurves Tested by August 2018 Ground-Based Stellar Occultation
- New Investigations of Dark Floored Pits in the Volatile Ice of Sputnik Planitia on Pluto
- Investigating the extent of bladed terrain on Pluto via photometric surface roughness
- Modeling the formation of N2 and CH4 frost on Pluto's slopes
- Pluto Follow On Missions: Background, Rationale, and New Mission Recommendations
- New surface composition and temperature maps of Pluto from New Horizons LEISA data