Non-Axisymmetric Flows on Hot Jupiters with Oblique Magnetic Fields
arXiv:1408.1386 · doi:10.1088/0004-637X/794/1/10
Abstract
Giant planets that reside in close proximity to their host stars are subject to extreme irradiation, which gives rise to thermal ionization of trace Alkali metals in their atmospheres. On objects where the atmospheric electrical conductivity is substantial, the global circulation couples to the background magnetic field, inducing supplementary fields and altering the nature of the flow. To date, a number of authors have considered the influence of a spin-pole aligned dipole magnetic field on the dynamical state of a weakly-ionized atmosphere and found that magnetic breaking may lead to significantly slower winds than predicted within a purely hydrodynamical framework. Here, we consider the effect of a tilted dipole magnetic field on the circulation and demonstrate that in addition to regulating wind velocities, an oblique field generates stationary non-axisymmetric structures that adhere to the geometry of the magnetic pole. Using a kinematic perturbative approach, we derive a closed-form solution for the perturbed circulation and show that the fractional distortion of zonal jets scales as the product of the field obliquity and the Elsasser number. The results obtained herein suggest that on planets with oblique magnetic fields, advective shifts of dayside hotspots may have substantial latitudinal components. This prediction may be tested observationally using the eclipse mapping technique.
7 pages, 3 figures, accepted to ApJ
References in corpus (9)
- Inflating Hot Jupiters With Ohmic Dissipation
- Constraints on Deep-seated Zonal Winds Inside Jupiter and Saturn
- Inverting Phase Functions to Map Exoplanets
- Early UV Ingress in WASP-12b: Measuring Planetary Magnetic Fields
- Atmospheric Circulation of Hot Jupiters: A Shallow Three-Dimensional Model
- Atmospheric Dynamics of Short-period Extra Solar Gas Giant Planets I: Dependence of Night-Side Temperature on Opacity
- Atmospheric Circulation of Eccentric Hot Neptune GJ436b
- Hot Nights on Extrasolar Planets: Mid-IR Phase Variations of Hot Jupiters
- Hydrodynamic Simulations of Unevenly Irradiated Jovian Planets
Cited by in corpus (6)
- Atmospheric Dynamics of Hot Giant Planets and Brown Dwarfs
- Atmospheric Regimes and Trends on Exoplanets and Brown Dwarfs
- No umbrella needed: Confronting the hypothesis of iron rain on WASP-76b with post-processed general circulation models
- Temporal Variability in Hot Jupiter Atmospheres
- JWST-TST DREAMS: Non-Uniform Dayside Emission for WASP-17b from MIRI/LRS
- Spectral signature of atmospheric winds in high resolution transit observations