Thermo-compositional diabatic convection in the atmospheres of brown dwarfs and in Earth's atmosphere and oceans
arXiv:1902.03553 · doi:10.3847/1538-4357/ab05db
Abstract
By generalizing the theory of convection to any type of thermal and compositional source terms (diabatic processes), we show that thermohaline convection in Earth oceans, fingering convection in stellar atmospheres, and moist convection in Earth atmosphere are deriving from the same general diabatic convective instability. We show also that "radiative convection" triggered by CO/CH4 transition with radiative transfer in the atmospheres of brown dwarfs is analog to moist and thermohaline convection. We derive a generalization of the mixing length theory to include the effect of source terms in 1D codes. We show that CO/CH4 radiative convection could significantly reduce the temperature gradient in the atmospheres of brown dwarfs similarly to moist convection in Earth atmosphere thus possibly explaining the reddening in brown-dwarf spectra. By using idealized two-dimensional hydrodynamic simulations in the Ledoux unstable regime, we show that compositional source terms can indeed provoke a reduction of the temperature gradient. The L/T transition could be explained by a bifurcation between the adiabatic and diabatic convective transports and could be seen as a giant cooling crisis: an analog of the boiling crisis in liquid/steam-water convective flows. This mechanism with other chemical transitions could be present in many giant and earth-like exoplanets. The study of the impact of different parameters (effective temperature, compositional changes) on CO/CH4 radiative convection and the analogy with Earth moist and thermohaline convection is opening the possibility to use brown dwarfs to better understand some aspects of the physics at play in the climate of our own planet.
accepted in ApJ
References in corpus (6)
- Fingering convection and cloudless models for cool brown dwarf atmospheres
- The Effects of Consistent Chemical Kinetics Calculations on the Pressure-Temperature Profiles and Emission Spectra of Hot Jupiters
- Chemical Transport and Spontaneous Layer Formation in Fingering Convection in Astrophysics
- Cloudless atmospheres for young low-gravity substellar objects
- Fingering Convection in Red Giants Revisited
- A high performance and portable all-Mach regime flow solver code with well-balanced gravity. Application to compressible convection
Cited by in corpus (37)
- A new set of atmosphere and evolution models for cool T-Y brown dwarfs and giant exoplanets
- Retrieving scattering clouds and disequilibrium chemistry in the atmosphere of HR 8799e
- Atmospheric Dynamics of Hot Giant Planets and Brown Dwarfs
- Atmospheric Regimes and Trends on Exoplanets and Brown Dwarfs
- Atmospheric circulation of brown dwarfs and directly imaged exoplanets driven by cloud radiative feedback: effects of rotation
- Impact of a new H/He equation of state on the evolution of massive brown dwarfs. New determination of the hydrogen burning limit
- How planets grow by pebble accretion. III. Emergence of an interior composition gradient
- Confirmation of water emission in the dayside spectrum of the ultrahot Jupiter WASP-121b
- Spectral Variability of VHS J1256-1257 b from 1 to 5 m
- The 12CO/13CO isotopologue ratio of a young, isolated brown dwarf. Possibly distinct formation pathways of super-Jupiters and brown dwarfs
- Four-of-a-kind? Comprehensive atmospheric characterisation of the HR 8799 planets with VLTI/GRAVITY
- 15NH3 in the atmosphere of a cool brown dwarf
- JWST/NIRSpec Observations of the Planetary Mass Companion TWA 27B
- Exploring the Extremes: Characterizing a New Population of Old and Cold Brown Dwarfs
- Uniform Forward-Modeling Analysis of Ultracool Dwarfs. II. Atmospheric Properties of 55 Late-T Dwarfs
- X-SHYNE: X-shooter spectra of young exoplanet analogs. I. A medium-resolution 0.65-2.5 one-shot spectrum of VHS\,1256-1257 b
- Dust in brown dwarfs and extra-solar planets. VII. Cloud formation in diffusive atmospheres
- Retrieval study of cool, directly imaged exoplanet 51 Eri b
- Revisiting the atmosphere of the exoplanet 51 Eridani b with VLT/SPHERE
- Cloud Atlas: Weak color modulations due to rotation in the planetary-mass companion GU Psc b and 11 other brown dwarfs
- Rotational spectral modulation of cloudless atmospheres for L/T Brown Dwarfs and Extrasolar Giant Planets
- Jet Streams and Tracer Mixing in the Atmospheres of Brown Dwarfs and Isolated Young Giant Planets
- Water depletion and 15NH3 in the atmosphere of the coldest brown dwarf observed with JWST/MIRI
- 3.8um Imaging of 400-600K Brown Dwarfs and Orbital Constraints for WISEP J045853.90+643452.6AB
- Evidence for SiO cloud nucleation in the rogue planet PSO J318
- VLTI/GRAVITY Observations and Characterization of the Brown Dwarf Companion HD 72946 B
- Ultracool Dwarfs Observed with the Spitzer Infrared Spectrograph. I. An Accurate Look at the L-to-T Transition at 300 Myr from Optical through Mid-infrared Spectrophotometry
- Radiative Rayleigh-Taylor Instability and the structure of clouds in planetary atmospheres
- MIRI-LRS spectrum of a cold exoplanet around a white dwarf: water, ammonia, and methane measurements
- Temperature-chemistry coupling in the evolution of gas giant atmospheres driven by stellar flares
- The model for cloudy substellar atmospheres: A grid of self-consistent substellar atmosphere models with microphysical cloud formation
- Disentangling disc and atmospheric signatures of young brown dwarfs with JWST/NIRSpec
- New ultracool dwarf candidates from multi-epoch WISE data
- Astro2020 White Paper: The L/T Transition
- Idealised 3D simulations of diabatically-forced Ledoux convection. Application to the atmosphere of hot rocky exoplanets
- Disentangling auroral, cloud and magnetic spot driven variability in three early L-dwarfs with HST/WFC3
- Disentangling the Signatures of Blended-Light Atmospheres in L/T Transition Brown Dwarfs