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Related papers: Haze in Pluto's Atmosphere

200 papers

Jupiter was imaged during the Science Demonstration of the MCAO Demonstrator (MAD) at the European Southern Observatory's UT3 Very Large Telescope unit. Io and Europa were used as natural guide stars on either side of Jupiter, separated…

Super-Earths and sub-Neptunes are the most common exoplanets, with a "radius valley" suggesting that super-Earths may form by shedding sub-Neptunes' gaseous envelopes. Exoplanets that lie closer to the super-Earth side of the valley are…

We analyze two multi-chord stellar occultations by Pluto observed on July 18th, 2012 and May 4th, 2013, and monitored respectively from five and six sites. They provide a total of fifteen light-curves, twelve of them being used for a…

We use a statistical-thermodynamic model to investigate the formation and composition of noble-gas-rich clathrates on Pluto's surface. By considering an atmospheric composition close to that of today's Pluto and a broad range of surface…

Context: Pluto possesses a thin atmosphere, primarily composed of nitrogen, in which the detection of methane has been reported. Aims: The goal is to constrain essential but so far unknown parameters of Pluto's atmosphere such as the…

Earth and Planetary Astrophysics · Physics 2009-11-13 E. Lellouch , B. Sicardy , C. de Bergh , H. -U. Käufl , S. Kassi , A. Campargue

Recently, properties of exoplanet atmospheres have been constrained via multi-wavelength transit observation, which measures an apparent decrease in stellar brightness during planetary transit in front of its host star (called transit…

Earth and Planetary Astrophysics · Physics 2018-01-31 Yui Kawashima , Masahiro Ikoma

New Horizons RALPH/LEISA near-infrared spectra allow for regional mapping of Pluto's surface ices and their physical state; however, scan-to-scan artifacts and variable spatial resolution complicate quantitative interpretation. We extend…

Earth and Planetary Astrophysics · Physics 2026-03-24 A. E. Drozdov , N. V. Emelyanov

Titan's 'detached' haze, seen in Voyager images in 1980 and 1981 and monitored by the Cassini Imaging Science Subsystem (ISS), during the period 2004-2017, provides a measure of seasonal activity in Titan's mesosphere with observations over…

Earth and Planetary Astrophysics · Physics 2018-05-01 Robert A. West , Benoît Seignovert , Pascal Rannou , Philip Dumont , Elizabeth P. Turtle , Jason Perry , Mou Roy , Aida Ovanessian

The observed mass-radius relationship of low-mass planets informs our understanding of their composition and evolution. Recent discoveries of low mass, large radii objects ("super-puffs") have challenged theories of planet formation and…

Earth and Planetary Astrophysics · Physics 2020-02-26 Peter Gao , Xi Zhang

Context. During the last 30 years the surface of Pluto has been characterized, and its variability has been monitored, through continuous near-infrared spectroscopic observations. But in the visible range only few data are available. Aims.…

Earth and Planetary Astrophysics · Physics 2016-01-13 V. Lorenzi , N. Pinilla-Alonso , J. Licandro , D. P. Cruikshank , W. M. Grundy , R. P. Binzel , J. P. Emery

Photochemical hazes are suspected to obscure molecular features, such as water, from detection in the transmission spectra of exoplanets with atmospheric temperatures < 800 K. The opacities of laboratory produced organic compounds (tholins)…

Earth and Planetary Astrophysics · Physics 2023-02-08 Lia Corrales , Lisseth Gavilan , D. J. Teal , Eliza M. -R. Kempton

Pluto's atmospheric profiles (temperature and pressure) have been studied for decades from stellar occultation lightcurves. In this paper, we look at recent Pluto Global Climate Model (GCM) results (3D temperature, pressure, and density…

Earth and Planetary Astrophysics · Physics 2021-02-10 Sihe Chen , Eliot F. Young , Leslie A. Young , Tanguy Bertrand , François Forget , Yuk L. Yung

A stellar occultation by Pluto was observed on 6 June 2020 with the 1.3-m and 3.6-m telescopes located at Devasthal, Nainital, India, using imaging systems in the I and H bands, respectively. From this event, we derive a surface pressure…

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…

The optical properties of the second generation dust that we observe in debris disks remain quite elusive, whether it is the absorption efficiencies at millimeter wavelengths or the (un)polarized phase function at near-infrared wavelengths.…

Earth and Planetary Astrophysics · Physics 2022-08-24 Johan Olofsson , Philippe Thébault , Grant M. Kennedy , Amelia Bayo

A search for temporal changes on Pluto and Charon was motivated by (1) the discovery of young surfaces in the Pluto system that imply ongoing or recent geologic activity, (2) the detection of active plumes on Triton during the Voyager 2…

The NASA New Horizons spacecraft flies past Pluto on July 14, 2015, carrying two instruments that detect charged particles. Pluto has a tenuous, extended atmosphere that is escaping the weak gravity of the planet. The interaction of the…

Earth and Planetary Astrophysics · Physics 2015-10-28 F. Bagenal , P. A. Delamere , H. A. Elliott , M. E. Hill , C. M. Lisse , D. J. McComas , R. L McNutt, , J. D. Richardson , C. W. Smith , D. F. Strobel

High altitude clouds and hazes are integral to understanding exoplanet observations, and are proposed to explain observed featureless transit spectra. However, it is difficult to make inferences from these data because of the need to…

Earth and Planetary Astrophysics · Physics 2014-10-09 Tyler D. Robinson , Luca Maltagliati , Mark S. Marley , Jonathan J. Fortney

Previous observations of Titan, Pluto and Solar System gas giants along with recent observations of exoplanet atmospheres with the James Webb Space Telescope taught us that photochemical hazes are ubiquitous and form in a variety of…

The goal is to determine the composition of Pluto's atmosphere and to constrain the nature of surface-atmosphere interactions. We perform high--resolution spectroscopic observations in the 2.33--2.36 $\mu$m range, using CRIRES at the VLT.…

Solar and Stellar Astrophysics · Physics 2015-05-27 E. Lellouch , C. de Bergh , B. Sicardy , H. U. Käufl , A. Smette