The small semimajor axes of hot Jupiters lead to high atmospheric temperatures of up to several thousand Kelvin. Under these conditions, thermally ionized metals provide a rich source of charged particles and thus build up a sizeable electrical conductivity. Subsequent electromagnetic effects, such as the induction of electric currents, Ohmic heating, magnetic drag, or the weakening of zonal winds have thus far been considered mainly in the framework of a linear, steady-state model of induction. For hot Jupiters with an equilibrium temperature Teq > 1500 K, the induction of atmospheric magnetic fields is a runaway process that can only be stopped by non-linear feedback. For example, the back-reaction of the magnetic field on to the flow via...
We present a new, magnetohydrodynamic mechanism for inflation of close-in giant extrasolar planets. ...
Jupiter's magnetosphere-ionosphere-thermosphere system drives the brightest, steadiest aurora in our...
Jupiter's dynamo is modelled using the anelastic convection-driven dynamo equations. The reference s...
The small semimajor axes of hot Jupiters lead to high atmospheric temperatures of up to several thou...
The small semi-major axes of Hot Jupiters lead to high atmospheric temperatures of up to several tho...
The small semimajor axes of hot Jupiters lead to high atmospheric temperatures of up to several thou...
While magnetism in exoplanets remains largely unknown, Hot Jupiters have been considered as natural ...
Hot jupiter atmospheres may be subject to a thermo-resistive instability where an increase in the el...
Hot Jupiters have proven themselves to be a rich class of exoplanets that test our theories of plane...
This dataset contains ionization and transport values for ultra-hot Jupiter KELT-9b. The transport c...
Through the process of thermal ionization, intense stellar irradiation renders hot Jupiter atmospher...
International audienceWe revisit the effects of Joule heating upon the upper atmospheres of Jupiter ...
We present models of ohmic heating in the interiors of hot Jupiters in which we decouple the interio...
Context. Ultra-hot Jupiters are the hottest exoplanets that have been discovered so far. They presen...
Jupiter's magnetosphere-ionosphere-thermosphere system drives the brightest, steadiest aurora in our...
We present a new, magnetohydrodynamic mechanism for inflation of close-in giant extrasolar planets. ...
Jupiter's magnetosphere-ionosphere-thermosphere system drives the brightest, steadiest aurora in our...
Jupiter's dynamo is modelled using the anelastic convection-driven dynamo equations. The reference s...
The small semimajor axes of hot Jupiters lead to high atmospheric temperatures of up to several thou...
The small semi-major axes of Hot Jupiters lead to high atmospheric temperatures of up to several tho...
The small semimajor axes of hot Jupiters lead to high atmospheric temperatures of up to several thou...
While magnetism in exoplanets remains largely unknown, Hot Jupiters have been considered as natural ...
Hot jupiter atmospheres may be subject to a thermo-resistive instability where an increase in the el...
Hot Jupiters have proven themselves to be a rich class of exoplanets that test our theories of plane...
This dataset contains ionization and transport values for ultra-hot Jupiter KELT-9b. The transport c...
Through the process of thermal ionization, intense stellar irradiation renders hot Jupiter atmospher...
International audienceWe revisit the effects of Joule heating upon the upper atmospheres of Jupiter ...
We present models of ohmic heating in the interiors of hot Jupiters in which we decouple the interio...
Context. Ultra-hot Jupiters are the hottest exoplanets that have been discovered so far. They presen...
Jupiter's magnetosphere-ionosphere-thermosphere system drives the brightest, steadiest aurora in our...
We present a new, magnetohydrodynamic mechanism for inflation of close-in giant extrasolar planets. ...
Jupiter's magnetosphere-ionosphere-thermosphere system drives the brightest, steadiest aurora in our...
Jupiter's dynamo is modelled using the anelastic convection-driven dynamo equations. The reference s...