Atmospheric variability driven by radiative cloud feedback in brown dwarfs and directly imaged extrasolar giant planets
arXiv:1809.06467 · doi:10.3847/1538-4357/ab0c07
Abstract
Growing observational evidence has suggested active meteorology in atmospheres of brown dwarfs (BDs) and directly imaged extrasolar giant planets (EGPs). In particular, a number of surveys have shown that near-IR brightness variability is common among L and T dwarfs. Despite initial understandings of atmospheric dynamics which is the major cause of the variability by previous studies, the detailed mechanism of variability remains elusive, and we need to seek a natural, self-consistent mechanism. Clouds are important in shaping the thermal structure and spectral properties of these atmospheres via large opacity, and we expect the same for inducing atmospheric variability. In this work, using a time-dependent one-dimensional model that incorporates a self-consistent coupling between the thermal structure, convective mixing, cloud radiative heating/cooling and condensation/evaporation of clouds, we show that radiative cloud feedback can drive spontaneous atmospheric variability in both temperature and cloud structure in conditions appropriate for BDs and directly imaged EGPs. The typical periods of variability are one to tens of hours with typical amplitude of the variability up to hundreds of Kelvins in effective temperature. The existence of variability is robust over a wide range of parameter space, but the detailed evolution of variability is sensitive to model parameters. Our novel, self-consistent mechanism has important implications for the observed flux variability of BDs and directly imaged EGPs, especially those evolve in short timescales. It is also a promising mechanism for cloud breaking, which has been proposed to explain the L/T transition of brown dwarfs.
19 pages, 14 figures, accepted in ApJ
References in corpus (20)
- The Evolution of L and T Dwarfs in Color-Magnitude Diagrams
- The 0.8-14.5 micron Spectra of Mid-L to Mid-T Dwarfs: Diagnostics of Effective Temperature, Grain Sedimentation, Gas Transport, and Surface Gravity
- A comparison of chemistry and dust cloud formation in ultracool dwarf model atmospheres
- Strong Brightness Variations Signal Cloudy-to-Clear Transition of Brown Dwarfs
- A self-consistent cloud model for brown dwarfs and young giant exoplanets: comparison with photometric and spectroscopic observations
- Consistent simulations of substellar atmospheres and non-equilibrium dust-cloud formation
- Vertical Atmospheric Structure in a Variable Brown Dwarf: Pressure-dependent Phase Shifts in Simultaneous Hubble Space Telescope-Spitzer Light Curves
- Formation of Silicate and Titanium Clouds on Hot Jupiters
- 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
- Atmospheres of Brown Dwarfs
- Atmospheric Circulation of Brown Dwarfs: Jets, Vortices, and Time Variability
- The Brown dwarf Atmosphere Monitoring (BAM) Project I: The largest near-IR monitoring survey of L- & T-dwarfs
- Temperature Fluctuations as a Source of Brown Dwarf Variability
- Simultaneous, Multi-Wavelength Variability Characterization of the Free-Floating Planetary Mass Object PSO J318.5-22
- Exploring the Role of Sub-micron Sized Dust Grains in the Atmospheres of Red L0 - L6 Dwarfs
- Observed Variability at 1um and 4um in the Y0 Brown Dwarf WISEP J173835.52+273258.9
- Effects of Latent Heating on Atmospheres of Brown Dwarfs and Directly Imaged Planets
- Rotation periods and photometric variability of rapidly rotating ultra-cool dwarfs
- Variability of Brown Dwarfs
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- Jupiter and Saturn as Spectral Analogs for Extrasolar Gas Giants and Brown Dwarfs
- LSST Survey Strategy in the Galactic Plane and Magellanic Clouds
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- Traveling planetary-scale waves cause cloud variability on tidally locked aquaplanets
- A Unified Spectroscopic and Photometric Model to Infer Surface Inhomogeneity: Application to Luhman 16B
- The model for cloudy substellar atmospheres: A grid of self-consistent substellar atmosphere models with microphysical cloud formation
- Influences of internal forcing on atmospheric circulations of irradiated giant planets
- Extreme Weather Variability on Hot Rocky Exoplanet 55 Cancri e Explained by Magma Temperature-Cloud Feedback
- New ultracool dwarf candidates from multi-epoch WISE data
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