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Related papers: Surface Compositions Across Pluto and Charon

200 papers

Observations of the Pluto-Charon system, acquired with the ALMA interferometer on June 12-13, 2015, have yielded a detection of the CO(3-2) and HCN(4-3) rotational transitions from Pluto, providing a strong confirmation of the presence of…

The Pluto-Charon system has come into sharper focus following the fly by of New Horizons. We use N-body simulations to probe the unique dynamical history of this binary dwarf planet system. We follow the evolution of the debris disc that…

Earth and Planetary Astrophysics · Physics 2017-01-18 Rachel A. Smullen , Kaitlin M. Kratter

Thermal observations of the Pluto-Charon system acquired by the Herschel Space Observatory in February 2012 are presented. They consist of photometric measurements with the PACS and SPIRE instruments (nine visits to the Pluto system each),…

Earth and Planetary Astrophysics · Physics 2016-03-23 E. Lellouch , P. Santos-Sanz , S. Fornasier , T. Lim , J. Stansberry , E. Vilenius , Cs. Kiss , T. Müller , G. Marton , S. Protopapa , P. Panuzzo , R. Moreno

We report on a variety of standard techniques used by New Horizons including a solar ultraviolet occultation, ultraviolet airglow observations, and high-phase look-back particulate search imaging to search for an atmosphere around Pluto's…

Pluto has a heterogeneous surface, despite a global haze deposition rate of ~1 micrometer per orbit (Cheng et al., 2017; Grundy et al., 2018). While there could be spatial variation in the deposition rate, this has not yet been rigorously…

Pluto's system of 5 known satellites are in a puzzling orbital configuration. Each of the four small satellites are on low-eccentricity and low-inclination orbits situated near a mean motion resonance with the largest satellite Charon. The…

Earth and Planetary Astrophysics · Physics 2015-05-07 Kevin J. Walsh , Harold F. Levison

The New Horizons spacecraft, which flew by Pluto on July 14, 2015, revealed the presence of haze in Pluto's atmosphere that were formed by CH4/N2 photochemistry at high altitudes in Pluto's atmosphere, as on Titan and Triton. In order to…

Earth and Planetary Astrophysics · Physics 2017-03-08 Tanguy Bertrand , François Forget

The Pluto system is an archetype for the multitude of icy dwarf planets and accompanying satellite systems that populate the vast volume of the solar system beyond Neptune. New Horizons' exploration of Pluto and its five moons gave us a…

Earth and Planetary Astrophysics · Physics 2022-01-26 Alex H. Parker

Pluto and its satellites will be the most distant objects ever reconnoitered when NASA's New Horizons spacecraft conducts its intensive flyby of this system in 2015. The size-frequency distribution (SFD) of craters on the surfaces in the…

Earth and Planetary Astrophysics · Physics 2015-06-23 S. Alan Stern , Simon Porter , Amanda Zangari

The presence of N2 in the surface environment of Pluto is critical in creating Pluto's richness of features and processes. Here, we propose that the nitrogen atoms in the N2 observed on Pluto were accreted in that chemical form during the…

Earth and Planetary Astrophysics · Physics 2018-05-29 Christopher R. Glein , J. Hunter Waite

Io's intense volcanic activity results in one of the most colorful surfaces in the solar system. Ultraviolet and visible-wavelength observations of Io are critical to uncovering the chemistry behind its volcanic hues. Here, we present…

Earth and Planetary Astrophysics · Physics 2022-12-20 Samantha K. Trumbo , M. Ryleigh Davis , Benjamin Cassese , Michael E. Brown

An analytic expression for the variation in surface and sub-surface temperature is developed for worlds whose surface pressures are nearly constant with latitude and longitude and whose atmospheres are in vapor-pressure equilibrium with the…

Earth and Planetary Astrophysics · Physics 2015-06-05 Leslie A. Young

We present the first measurements of Charon's far-ultraviolet surface reflectance, obtained by the Alice spectrograph on New Horizons. We find no measurable flux shortward of 1650 A, and Charon's geometric albedo is $<0.019$ ($3\sigma$) at…

Earth and Planetary Astrophysics · Physics 2021-08-20 Brian A. Keeney , Joel Wm. Parker , Nathaniel Cunningham , S. Alan Stern , Anne J. Verbiscer , the New Horizons Team

We present the results of an investigation to determine the longitudinal (zonal) distributions and temporal evolution of ices on the surface of Triton. Between 2002 and 2014, we obtained 63 nights of near-infrared (0.67-2.55 $\mu$m) spectra…

Earth and Planetary Astrophysics · Physics 2016-01-27 B. J. Holler , L. A. Young , W. M. Grundy , C. B. Olkin

The New Horizons spacecraft has found evidence for geologic activity on the surface of Pluto, including extensional tectonic deformation of its water ice bedrock (see Moore et al., 2016). One mechanism that could drive extensional tectonic…

Earth and Planetary Astrophysics · Physics 2016-08-03 Noah P. Hammond , Amy C. Barr , Edgar M. Parmentier

Clouds and hazes are abundant in the thin and cold atmospheres of Triton and Pluto, where they are thought to be produced by interactions between atmospheric gases and ultraviolet photons from the Sun and those scattered by the local…

Earth and Planetary Astrophysics · Physics 2024-11-20 Peter Gao , Kazumasa Ohno

Pluto, Titan, and Triton make up a unique class of solar system bodies, with icy surfaces and chemically reducing atmospheres rich in organic photochemistry and haze formation. Hazes play important roles in these atmospheres, with physical…