Despite the increasing sophistication of numerical models of hot Jupiter atmospheres, the large time-scale separation required in simulating the wide range in electrical conductivity between the dayside and nightside has made it difficult to run fully consistent magnetohydrodynamic (MHD) models. This has led to many studies that resort to drag parametrizations of MHD. In this study, we revisit the question of the Lorentz force as an effective drag by running a series of direct numerical simulations of a weakly rotating, poorly conducting flow in the presence of a misaligned, strong background magnetic field. We find that the drag parametrization fails once the time-scale associated with the Lorentz force becomes shorter than the dynamical t...
AbstractJupiter’s dynamo is modelled using the anelastic convection-driven dynamo equations. The ref...
Hot Jupiters have proven themselves to be a rich class of exoplanets that test our theories of plane...
International audienceContext. Atmospheric superrotating flows at the equator are a nearly ubiquitou...
Despite the increasing sophistication of numerical models of hot Jupiter atmospheres, the large time...
We present the first three-dimensional (3D) magnetohydrodynamic (MHD) simulations of the at-mosphere...
While magnetism in exoplanets remains largely unknown, Hot Jupiters have been considered as natural ...
We present the first three-dimensional magnetohydrodynamic (MHD) simulations of the atmosphere of HD...
Through the process of thermal ionization, intense stellar irradiation renders Hot Jupiter atmo-sphe...
Hot jupiter atmospheres may be subject to a thermo-resistive instability where an increase in the el...
Hot Jupiters (HJs) are gas giants orbiting very close to their host stars. These planets have inflat...
We present magnetohydrodynamic (MHD) simulations of the atmospheres of hot Jupiters ranging in tempe...
Astrophysical jets, consisting of collimated high-speed outflows, are typically found in several ast...
In this paper we study the small scale-magnetic field fluctuations of the middle Jovian magnetosphe...
39 pages, 19 figures, accepted for publication in JGR planetsInternational audienceThe Juno mission ...
The magnetic fields of planets and stars are thought to play an important role in the fluid motions ...
AbstractJupiter’s dynamo is modelled using the anelastic convection-driven dynamo equations. The ref...
Hot Jupiters have proven themselves to be a rich class of exoplanets that test our theories of plane...
International audienceContext. Atmospheric superrotating flows at the equator are a nearly ubiquitou...
Despite the increasing sophistication of numerical models of hot Jupiter atmospheres, the large time...
We present the first three-dimensional (3D) magnetohydrodynamic (MHD) simulations of the at-mosphere...
While magnetism in exoplanets remains largely unknown, Hot Jupiters have been considered as natural ...
We present the first three-dimensional magnetohydrodynamic (MHD) simulations of the atmosphere of HD...
Through the process of thermal ionization, intense stellar irradiation renders Hot Jupiter atmo-sphe...
Hot jupiter atmospheres may be subject to a thermo-resistive instability where an increase in the el...
Hot Jupiters (HJs) are gas giants orbiting very close to their host stars. These planets have inflat...
We present magnetohydrodynamic (MHD) simulations of the atmospheres of hot Jupiters ranging in tempe...
Astrophysical jets, consisting of collimated high-speed outflows, are typically found in several ast...
In this paper we study the small scale-magnetic field fluctuations of the middle Jovian magnetosphe...
39 pages, 19 figures, accepted for publication in JGR planetsInternational audienceThe Juno mission ...
The magnetic fields of planets and stars are thought to play an important role in the fluid motions ...
AbstractJupiter’s dynamo is modelled using the anelastic convection-driven dynamo equations. The ref...
Hot Jupiters have proven themselves to be a rich class of exoplanets that test our theories of plane...
International audienceContext. Atmospheric superrotating flows at the equator are a nearly ubiquitou...