activity
20152020
most citedThermochemistry and vertical mixing in the tropospheres of Uranus and Neptune: How convection inhibition can affect the derivation of deep oxygen abundances

58 citations · 155 across the 5 of their papers we have counts for

collaborators

6 papers

astro-ph.EP20207 cited

18-year long monitoring of the evolution of H2O vapor in the stratosphere of Jupiter with the Odin space telescope

B. Benmahi, T. Cavalié, M. Dobrijevic +14

Comet Shoemaker-Levy 9 impacted Jupiter in July 1994, leaving its stratosphere with several new species, among them water vapor (H2O). With the aid of a photochemical model H2O can…

astro-ph.EP202022 cited

The deep composition of Uranus and Neptune from in situ exploration and thermochemical modeling

Thibault Cavalié, Olivia Venot, Yamila Miguel +7

The distant ice giants of the Solar System, Uranus and Neptune, have only been visited by one space mission, Voyager 2. The current knowledge on their composition remains very limi…

astro-ph.EP2019

Ice Giant Systems: The Scientific Potential of Orbital Missions to Uranus and Neptune

Leigh N. Fletcher, Ravit Helled, Elias Roussos +27

Uranus and Neptune, and their diverse satellite and ring systems, represent the least explored environments of our Solar System, and yet may provide the archetype for the most comm…

astro-ph.EP201939 cited

A reduced chemical scheme for modelling warm to hot hydrogen-dominated atmospheres

Olivia Venot, Roda Bounaceur, Michel Dobrijevic +5

Three dimensional models that account for chemistry are useful tools to predict the chemical composition of (exo)planet and brown dwarf atmospheres and interpret observations of fu…

astro-ph.EP201758 cited

Thermochemistry and vertical mixing in the tropospheres of Uranus and Neptune: How convection inhibition can affect the derivation of deep oxygen abundances

Thibault Cavalié, Olivia Venot, Franck Selsis +3

Thermochemical models have been used in the past to constrain the deep oxygen abundance in the gas and ice giant planets from tropospheric CO spectroscopic measurements. Knowing th…

astro-ph.EP201529 cited

2D photochemical modeling of Saturn's stratosphere. Part I: Seasonal variation of atmospheric composition without meridional transport

Vincent Hue, Thibault Cavalié, Michel Dobrijevic +2

Saturn's axial tilt of 26.7° produces seasons in a similar way as on Earth. Both the stratospheric temperature and composition are affected by this latitudinally varying insolation…