The deep atmosphere of Jupiter is obscured beneath thick clouds. This causes direct observations to be difficult, and thermochemical equilibrium models fill in the observational gaps. This research uses Galileo and Juno data together with the Gibbs free energy minimization code GGCHEM to update the gas phase and condensation equilibrium chemistry of the deep atmosphere of Jupiter down to 1000 bars. Specifically, the Galileo data provides helium abundances and, with the incorporated Juno data, we use new enrichment values for oxygen, nitrogen, carbon and sulphur. The temperature profile in Jupiter’s deep atmosphere is obtained following recent interior model calculations that fit the gravitational harmonics measured by Juno. Following this a...
The elemental ratios of carbon, nitrogen, and oxygen in the atmospheres of hot Jupiters may hold clu...
International audienceTwo decades ago, the Galileo probe performed an in situ measurement of element...
New results (Grassi et al., 2020, https://doi.org/10.1029/2019JE006206) from analysis of Juno Jovian...
The deep atmosphere of Jupiter is obscured beneath thick clouds. This causes direct observations to ...
The Galileo Probe Mass Spectrometer (GPMS) dataset describes the composition of Jupiter's atmosphere...
Virtual meetingInternational audienceThe recent water and ammonia measurements (Bolton et al. 2017; ...
Context. The atmosphere of hot Jupiters can be probed by primary transit and secondary eclipse spect...
Aims. The atmospheres of ultra-hot Jupiters (UHJs) are commonly considered to be at thermochemical e...
The oxygen abundances of giant planets potentially constrain the conditions of the protoplanetary di...
International audienceObservations of Jupiter’s gravity field by Juno have revealed surprisingly low...
International audienceIn this paper, we attempt to place constraints on the possible global abundanc...
Spectroscopic observations of Jupiter at 5 microns were analyzed in order to derive the gas composit...
The atmosphere of hot Jupiters can be probed by primary transit and secondary eclipse spectroscopy. ...
Aims. The atmospheres of ultra-hot Jupiters (UHJs) are commonly considered to be at thermochemical e...
In this paper, we attempt to place constraints on the possible global abundance of water and the ave...
The elemental ratios of carbon, nitrogen, and oxygen in the atmospheres of hot Jupiters may hold clu...
International audienceTwo decades ago, the Galileo probe performed an in situ measurement of element...
New results (Grassi et al., 2020, https://doi.org/10.1029/2019JE006206) from analysis of Juno Jovian...
The deep atmosphere of Jupiter is obscured beneath thick clouds. This causes direct observations to ...
The Galileo Probe Mass Spectrometer (GPMS) dataset describes the composition of Jupiter's atmosphere...
Virtual meetingInternational audienceThe recent water and ammonia measurements (Bolton et al. 2017; ...
Context. The atmosphere of hot Jupiters can be probed by primary transit and secondary eclipse spect...
Aims. The atmospheres of ultra-hot Jupiters (UHJs) are commonly considered to be at thermochemical e...
The oxygen abundances of giant planets potentially constrain the conditions of the protoplanetary di...
International audienceObservations of Jupiter’s gravity field by Juno have revealed surprisingly low...
International audienceIn this paper, we attempt to place constraints on the possible global abundanc...
Spectroscopic observations of Jupiter at 5 microns were analyzed in order to derive the gas composit...
The atmosphere of hot Jupiters can be probed by primary transit and secondary eclipse spectroscopy. ...
Aims. The atmospheres of ultra-hot Jupiters (UHJs) are commonly considered to be at thermochemical e...
In this paper, we attempt to place constraints on the possible global abundance of water and the ave...
The elemental ratios of carbon, nitrogen, and oxygen in the atmospheres of hot Jupiters may hold clu...
International audienceTwo decades ago, the Galileo probe performed an in situ measurement of element...
New results (Grassi et al., 2020, https://doi.org/10.1029/2019JE006206) from analysis of Juno Jovian...