Jupiter's dominant large-scale weather patterns (dimensions ~10,000 km) are zonal jets and long-lived ovals. The jets have been flowing east and west at constant speeds of up to 180 m s^(-1) for over 100 years. These jets receive energy from small-scale eddies, which pump eastward momentum into the eastward jets and westward momentum into the westward jets. This momentum transfer was predicted by numerical models before it was observed on Jupiter. The large ovals roll between the jets in an anticyclonic direction—clockwise in the northern hemisphere and counterclockwise in the southern hemisphere—where they regularly assimilate small anticyclonic eddies. But from where the eddies receive their energy has been an open question. Here we argue...
The extremely dynamic atmosphere of Jupiter is characterised by alternated jets, a strong convective...
The energetics and spectral characteristis of quasi-geostrophic turbulence in Jupiter's atmosphere a...
The longitudinal asymmetry of the Io plasma torus, as predicted by the magnetic-anomaly model and ob...
Jupiter's dominant large-scale weather patterns (dimensions ~10,000 km) are zonal jets and long-live...
International audienceJupiter’s atmosphere is one of the most turbulent places in the solar system. ...
The energy source driving Jupiter's active meteorology is not understood. There are two main candida...
International audienceRecent observations of Jupiter have suggested the existence of global oscillat...
Cloud‐tracked wind observations document the role of eddies in putting momentum into the zonal jets....
Cloud-tracked wind observations document the role of eddies in putting momentum into the zonal jets....
Observations suggest that moist convection plays an important role in the large-scale dynamics of Ju...
Two fundamentally different views of the general circulation of Jovian atmospheres have emerged. Acc...
The bands of Jupiter represent a global system of powerful winds. Broad eastward equatorial jets are...
This thesis describes the development of and results from a new numerical model of Jupiter's atmosph...
Studies of the dynamical response of thin atmospheric layers overlying thick envelopes are extended ...
A longstanding mystery about Jupiter has been the straightness and steadiness of its weather-layer j...
The extremely dynamic atmosphere of Jupiter is characterised by alternated jets, a strong convective...
The energetics and spectral characteristis of quasi-geostrophic turbulence in Jupiter's atmosphere a...
The longitudinal asymmetry of the Io plasma torus, as predicted by the magnetic-anomaly model and ob...
Jupiter's dominant large-scale weather patterns (dimensions ~10,000 km) are zonal jets and long-live...
International audienceJupiter’s atmosphere is one of the most turbulent places in the solar system. ...
The energy source driving Jupiter's active meteorology is not understood. There are two main candida...
International audienceRecent observations of Jupiter have suggested the existence of global oscillat...
Cloud‐tracked wind observations document the role of eddies in putting momentum into the zonal jets....
Cloud-tracked wind observations document the role of eddies in putting momentum into the zonal jets....
Observations suggest that moist convection plays an important role in the large-scale dynamics of Ju...
Two fundamentally different views of the general circulation of Jovian atmospheres have emerged. Acc...
The bands of Jupiter represent a global system of powerful winds. Broad eastward equatorial jets are...
This thesis describes the development of and results from a new numerical model of Jupiter's atmosph...
Studies of the dynamical response of thin atmospheric layers overlying thick envelopes are extended ...
A longstanding mystery about Jupiter has been the straightness and steadiness of its weather-layer j...
The extremely dynamic atmosphere of Jupiter is characterised by alternated jets, a strong convective...
The energetics and spectral characteristis of quasi-geostrophic turbulence in Jupiter's atmosphere a...
The longitudinal asymmetry of the Io plasma torus, as predicted by the magnetic-anomaly model and ob...