Vertical Tracer Mixing in Hot Jupiter Atmospheres
arXiv:1904.09676 · doi:10.3847/1538-4357/ab338b
Abstract
Aerosols appear to be ubiquitous in close-in gas giant atmospheres, and disequilibrium chemistry likely impacts the emergent spectra of these planets. Lofted aerosols and disequilibrium chemistry are caused by vigorous vertical transport in these heavily irradiated atmospheres. Here we numerically and analytically investigate how vertical transport should change over the parameter space of spin-synchronized gas giants. In order to understand how tracer transport depends on planetary parameters, we develop an analytic theory to predict vertical velocities and mixing rates () and compare the results to our numerical experiments. We find that both our theory and numerical simulations predict that, if the vertical mixing rate is described by an eddy diffusivity, then this eddy diffusivity should increase with increasing equilibrium temperature, decreasing frictional drag strength, and increasing chemical loss timescales. We find that the transition in our numerical simulations between circulation dominated by a superrotating jet and that with solely day-to-night flow causes a marked change in the vertical velocity structure and tracer distribution. The mixing ratio of passive tracers is greatest for intermediate drag strengths that corresponds to this transition between a superrotating jet with columnar vertical velocity structure and day-to-night flow with upwelling on the dayside and downwelling on the nightside. Lastly, we present analytic solutions for as a function of planetary effective temperature, chemical loss timescales, and other parameters, for use as input to one-dimensional chemistry models of spin-synchronized gas giant atmospheres.
25 pages, 12 figures, Accepted at ApJ
References in corpus (33)
- Rayleigh scattering in the transit spectrum of HD 189733b
- Thermal structure of an exoplanet atmosphere from phase-resolved emission spectroscopy
- Can TiO Explain Thermal Inversions in the Upper Atmospheres of Irradiated Giant Planets?
- Multi-Wavelength Constraints on the Day-Night Circulation Patterns of HD 189733b
- A chemical model for the atmosphere of hot Jupiters
- Extremely Irradiated Hot Jupiters: Non-Oxide Inversions, H- Opacity, and Thermal Dissociation of Molecules
- Dynamics and Disequilibrium Carbon Chemistry in Hot Jupiter Atmospheres, With Application to HD 209458b
- Atmospheric Circulation of Hot Jupiters: Three-dimensional circulation models of HD 209458b and HD 189733b with Simplified Forcing
- Changing Phases of Alien Worlds: Probing Atmospheres of Kepler Planets with High-Precision Photometry
- Atmospheric Circulation of Hot Jupiters: A Shallow Three-Dimensional Model
- The 4.5 m full-orbit phase curve of the hot Jupiter HD 209458b
- Atmospheric Circulation of Eccentric Hot Neptune GJ436b
- High temperature condensate clouds in super-hot Jupiter atmospheres
- Balancing the Energy Budget of Short-Period Giant Planets: Evidence for Reflective Clouds and Optical Absorbers
- The Peculiar Atmospheric Chemistry of KELT-9b
- Magnetic Effects in Hot Jupiter Atmospheres
- Variability in the Atmosphere of the Hot Giant Planet HAT-P-7 b
- Simulating the cloudy atmospheres of HD 209458 b and HD 189733 b with the 3D Met Office Unified Model
- Sedimentation Efficiency of Condensation Clouds in Substellar Atmospheres
- Global-mean Vertical Tracer Mixing in Planetary Atmospheres I: Theory and Fast-rotating Planets
- Effects of Bulk Composition on The Atmospheric Dynamics on Close-in Exoplanets
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- Three-Dimensional Circulation Driving Chemical Disequilibrium in WASP-43b
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- The Effect of 3D Transport-Induced Disequilibrium Carbon Chemistry on the Atmospheric Structure and Phase Curves and Emission Spectra of Hot Jupiter HD 189733b
- Observable signatures of wind--driven chemistry with a fully consistent three dimensional radiative hydrodynamics model of HD 209458b
- Global-mean Vertical Tracer Mixing in Planetary Atmospheres II: Tidally Locked Planets
- Towards Consistent Modeling of Atmospheric Chemistry and Dynamics in Exoplanets: Validation and Generalization of Chemical Relaxation Method
- The 3D thermal, dynamical and chemical structure of the atmosphere of HD 189733b: implications of wind-driven chemistry for the emission phase curve
- Atmospheric Circulations of Hot Jupiters as Planetary Heat Engines
- Turbulent Vertical Mixing in Hot Exoplanet Atmospheres
- Convective dynamics and disequilibrium chemistry in the atmospheres of giant planets and brown dwarfs
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