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Related papers: Neptune's Atmospheric Composition from AKARI Infra…

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We report on the initial analysis of a Herschel/PACS full range spectrum of Neptune, covering the 51-220 micrometer range with a mean resolving power of ~ 3000, and complemented by a dedicated observation of CH4 at 120 micrometers. Numerous…

We report 8- to 13-micron spectral observations of Neptune and Uranus from the NASA Infrared Telescope Facility spanning more than a decade. The spectroscopic data indicate a steady increase in Neptune's mean atmospheric 12-micron ethane…

Astrophysics · Physics 2009-11-11 H. B. Hammel , D. K. Lynch , R. W. Russell , M. L. Sitko , L. S. Bernstein , T. Hewagama

The ratio of deuterium to hydrogen (D/H ratio) of Solar System bodies is an important clue to their formation histories. Here we fit a Neptunian atmospheric model to Gemini Near Infrared Spectrograph (GNIRS) high spectral resolution…

Earth and Planetary Astrophysics · Physics 2015-03-30 Daniel V. Cotton , Lucyna L. Kedziora-Chudczer , Kimberly Bott , Jeremy Bailey

We present and analyze three-dimensional data cubes of Neptune from the OSIRIS integral-field spectrograph on the 10-m Keck telescope, from July 2009. These data have a spatial resolution of 0.035"/pixel and spectral resolution of R~3800 in…

Earth and Planetary Astrophysics · Physics 2017-06-19 S. H. Luszcz-Cook , K. de Kleer , I. de Pater , M. Adamkovics , H. B. Hammel

Imaging and spectroscopy of Neptune's thermal infrared emission is used to assess seasonal changes in Neptune's zonal mean temperatures between Voyager-2 observations (1989, heliocentric longitude Ls=236) and southern summer solstice (2005,…

Earth and Planetary Astrophysics · Physics 2015-06-18 Leigh N. Fletcher , Imke de Pater , Glenn S. Orton , Heidi B. Hammel , Michael L. Sitko , Patrick G. J. Irwin

Despite the low solar irradiation it receives, Neptune shows a very active atmosphere with some of the most intense dynamics observed in Solar System atmospheres. Characterizing the atmospheric temperature profiles of the planet is a key to…

We present 2.03-2.30 micron near-infrared spectroscopy of Neptune taken 1999 June 2 (UT) with the W.M. Keck Observatory's near-infrared spectrometer (NIRSPEC) during the commissioning of the instrument. The spectrum is dominated by a bright…

We present spatially resolved ($0.1'' - 1.0''$) radio maps of Neptune taken from the Very Large Array and Atacama Large Submillimeter/Millimeter Array between $2015-2017$. Combined, these observations probe from just below the main methane…

Earth and Planetary Astrophysics · Physics 2021-04-15 Joshua Tollefson , Imke de Pater , Edward M. Molter , Robert J. Sault , Bryan J. Butler , Statia Luszcz-Cook , David DeBoer

We present an analysis of all currently available ground-based imaging of Neptune in the mid-infrared. Dating between 2003 and 2020, the images reveal changes in Neptune's mid-infrared ($\sim 8-25\mu$m) emission over time in the years…

We present spatially resolved millimeter maps of Neptune between 95 and 242 GHz taken with the Atacama Large Millimeter/submillimeter Array (ALMA) in $2016-2017$. The millimeter weighting functions peak between 1 and 10 bar on Neptune,…

Earth and Planetary Astrophysics · Physics 2019-07-17 Joshua Tollefson , Imke de Pater , Statia Luszcz-Cook , David DeBoer

We present observations of Neptune's 1- and 3-mm spectrum from the Combined Array for Research in Millimeter-wave Astronomy (CARMA). Radiative transfer analysis of the CO (2-1) and (1-0) rotation lines was performed to constrain the CO…

Earth and Planetary Astrophysics · Physics 2013-01-11 Statia H. Luszcz-Cook , Imke de Pater

Observations of Neptune, made in 2018 using the new Narrow Field Adaptive Optics mode of the Multi Unit Spectroscopic Explorer (MUSE) instrument at the Very Large Telescope (VLT) from 0.48 - 0.93 micron, are analysed here to determine the…

Observations of transiting gas giant exoplanets have revealed a pervasive depletion of methane, which has only recently been identified atmospherically. The depletion is thought to be maintained by disequilibrium processes such as…

NASA's Spitzer Infrared Spectrometer (IRS) acquired mid-infrared (5-37 microns) disc-averaged spectra of Uranus very near to its equinox in December 2007. A mean spectrum was constructed from observations of multiple central meridian…

Current observation techniques are able to probe the atmosphere of some giant exoplanets and get some clues about their atmospheric composition. However, the chemical compositions derived from observations are not fully understood, as for…

Earth and Planetary Astrophysics · Physics 2015-06-18 Olivia Venot , Marcelino Agundez , Franck Selsis , Marcell Tessenyi , Nicolas Iro

Emission from the molecular ion H$_3^+$ is a powerful diagnostic of the upper atmosphere of Jupiter, Saturn, and Uranus, but it remains undetected at Neptune. In search of this emission, we present near-infrared spectral observations of…

Earth and Planetary Astrophysics · Physics 2017-11-28 H. Melin , L. N. Fletcher , T. S. Stallard , R. E. Johnson , J. O'Donoghue , L. Moore , P. T. Donnelly

Mid-IR albedo values of Neptune are derived from Spitzer Space Telescope measurements reported by Stauffer et al. (2016). The method of this derivation is described and the results indicate that the geometric albedo was about 1% or less at…

Earth and Planetary Astrophysics · Physics 2018-03-12 Anthony Mallama , Liming Li

Raman scattering by H$_2$ in Neptune's atmosphere has significant effects on its reflectivity for $\lambda <$ 0.5 $\mu$m, producing baseline decreases of $\sim$ 20% in a clear atmosphere and $\sim$ 10% in a hazy atmosphere. Here we present…

Earth and Planetary Astrophysics · Physics 2015-04-13 Lawrence Sromovsky

Mid-infrared spectral observations Uranus acquired with the Infrared Spectrometer (IRS) on the Spitzer Space Telescope are used to determine the abundances of C2H2, C2H6, CH3C2H, C4H2, CO2, and tentatively CH3 on Uranus at the time of the…

A method of the calculation of optical parameters of the nonisothermal giant planet atmospheres was developed using detailed intensity data of Raman scattering. We have used the model of Morozhenko (A.V. Morozhenko, 1997) as a baseline. In…

Astrophysics · Physics 2007-05-23 N. M. Kostogryz
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