Sparkling nights and very hot days on WASP-18b: the formation of clouds and the emergence of an ionosphere
arXiv:1901.08640 · doi:10.1051/0004-6361/201834085
Abstract
WASP-18b is an utra-hot Jupiter with a temperature difference of upto 2500K between day and night. Such giant planets begin to emerge as planetary laboratory for understanding cloud formation and gas chemistry in well-tested parameter regimes in order to better understand planetary mass loss and for linking observed element ratios to planet formation and evolution. We aim to understand where clouds form, their interaction with the gas phase chemistry through depletion and enrichment, the ionisation of the atmospheric gas and the possible emergence of an ionosphere on ultra-hot Jupiters. We utilize 1D profiles from a 3D atmosphere simulations for WASP-18b as input for kinetic cloud formation and gas-phase chemical equilibrium calculations. We solve our kinetic cloud formation model for these 1D profiles that sample the atmosphere of WASP-18b at 16 different locations along the equator and in the mid-latitudes and derive consistently the gas-phase composition. The dayside of WASP-18b emerges as completely cloud-free due to the very high atmospheric temperatures. In contrast, the nightside is covered in geometrically extended and chemically heterogeneous clouds with disperse particle size distributions. The atmospheric C/O increases to and the enrichment of the atmospheric gas with cloud particles is . The clouds that form at the limbs appear located farther inside the atmosphere and they are the least extended. Not all day-night terminator regions form clouds. The gas-phase is dominated by H, CO, SiO, HO, HS, CH, SiS. In addition, the dayside has a substantial degree of ionisation due to ions like Na, K, Ca, Fe. Al and Ti are the most abundant of their element classes. We find that WASP-18b, as one example for ultra-hot Jupiters, develops an ionosphere on the dayside.
31 pages, accepted for publication in A&A
References in corpus (16)
- Line and Mean Opacities for Ultracool Dwarfs and Extrasolar Planets
- Atmospheric Sulfur Photochemistry on Hot Jupiters
- A chemical model for the atmosphere of hot Jupiters
- A comparison of chemistry and dust cloud formation in ultracool dwarf model atmospheres
- Dust in Brown Dwarfs and Extra-solar Planets I. Chemical composition and spectral appearance of quasi-static cloud layers
- The Atmospheric Circulation of the Hot Jupiter WASP-43b: Comparing Three-Dimensional Models to Spectrophotometric Data
- 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
- Retrieval of Exoplanet Emission Spectra with HyDRA
- Disk evolution, element abundances and cloud properties of young gas giant planets
- Evidence for a Dayside Thermal Inversion and High Metallicity for the Hot Jupiter WASP-18b
- Atmospheres of Brown Dwarfs
- Modeling the effects of inhomogeneous aerosols on the hot Jupiter Kepler-7b's atmospheric circulation
- Emission lines in the atmosphere of the irradiated brown dwarf WD0137-349B
- The 2014-2017 outburst of the young star ASASSN-13db: A time-resolved picture of a very low-mass star between EXors and FUors
- Mg/Si mineralogical ratio of low-mass planet hosts. Correction for the NLTE effects
Cited by in corpus (55)
- Aerosol Composition of Hot Giant Exoplanets Dominated by Silicates and Hydrocarbon Hazes
- Neutral Iron Emission Lines From The Day-side Of KELT-9b -- The GAPS Programme With HARPS-N At TNG XX
- Atmospheric Dynamics of Hot Giant Planets and Brown Dwarfs
- Aerosols in Exoplanet Atmospheres
- Climate of an Ultra hot Jupiter: Spectroscopic phase curve of WASP-18b with HST/WFC3
- Ionized calcium in the atmospheres of two ultra-hot exoplanets WASP-33b and KELT-9b
- Transit Signatures of Inhomogeneous Clouds on Hot Jupiters: Insights From Microphysical Cloud Modeling
- Mass loss rate and local thermodynamic state of KELT-9 b thermosphere from the hydrogen Balmer series
- The ARCiS framework for Exoplanet Atmospheres: Modelling Philosophy and Retrieval
- Exploring the Effects of Active Magnetic Drag in a GCM of the Ultra-Hot Jupiter WASP-76b
- A temperature inversion with atomic iron in the ultra-hot dayside atmosphere of WASP-189b
- Detection of Fe I and Fe II in the atmosphere of MASCARA-2b using a cross-correlation method
- An inventory of atomic species in the atmosphere of WASP-121b using UVES high-resolution spectroscopy
- Cloud property trends in hot and ultra-hot giant gas planets (WASP-43b, WASP-103b, WASP-121b, HAT-P-7b, and WASP-18b)
- The GAPS Programme at TNG. XLI. The climate of KELT-9b revealed with a new approach to high spectral resolution phase curves
- High-resolution transmission spectroscopy study of ultra-hot Jupiters HAT-P-57b, KELT-17b, KELT-21b, KELT-7b, MASCARA-1b, and WASP-189b
- Evidence for disequilibrium chemistry from vertical mixing in hot Jupiter atmospheres. A comprehensive survey of transiting close-in gas giant exoplanets with warm-Spitzer/IRAC
- Detection of the hydrogen Balmer lines in the ultra-hot Jupiter WASP-33b
- Detection of iron emission lines and a temperature inversion on the dayside of the ultra-hot Jupiter KELT-20b
- Mineral cloud and hydrocarbon haze particles in the atmosphere of the hot Jupiter JWST target WASP-43b
- Atmospheric characterization of the ultra-hot Jupiter WASP-33b: Detection of Ti and V emission lines and retrieval of a broadened line profile
- Detection of CO emission lines in the dayside atmospheres of WASP-33b and WASP-189b with GIANO
- The Impact of Mixing Treatments on Cloud Modelling in 3D Simulations of Hot Jupiters
- A survey of sodium absorption in ten giant exoplanets with high-resolution transmission spectroscopy
- A New Analysis of 8 Spitzer Phase Curves and Hot Jupiter Population Trends: Qatar-1b, Qatar-2b, WASP-52b, WASP-34b, and WASP-140b
- Silicon in the dayside atmospheres of two ultra-hot Jupiters
- An Unusual Transmission Spectrum for the Sub-Saturn KELT-11b Suggestive of a Sub-Solar Water Abundance
- Optical to near-infrared transmission spectrum of the warm sub-Saturn HAT-P-12b
- A 1.46-2.48 m Spectroscopic Atlas of a T6 Dwarf (1060 K) Atmosphere with IGRINS: First Detections of HS and H, and Verification of HO, CH, and NH Line Lists
- Mineral snowflakes on exoplanets and brown dwarfs: Effects of micro-porosity, size distributions, and particle shape
- Ground-Based Transmission Spectroscopy with FORS2: A featureless optical transmission spectrum and detection of HO for the ultra-hot Jupiter WASP-103b
- Convolutional neural networks as an alternative to Bayesian retrievals
- How Does Thermal Scattering Shape the Infrared Spectra of Cloudy Exoplanets? A Theoretical Framework and Consequences for Atmospheric Retrievals in the JWST era
- Clouds form on the hot Saturn JWST ERO target WASP-96b
- Understanding the atmospheric properties and chemical composition of the ultra-hot Jupiter HAT-P-7b II. Mapping the effects of gas kinetics
- Lightning and charge processes in brown dwarf and exoplanet atmospheres
- Understanding the atmospheric properties and chemical composition of the ultra-hot Jupiter HAT-P-7b: III. Changing ionisation and the emergence of an ionosphere
- High-resolution Emission Spectroscopy of the Ultrahot Jupiter KELT-9b: Little Variation in Day- and Nightside Emission Line Contrasts
- Mineral Snowflakes on Exoplanets and Brown Dwarfs: Coagulation and Fragmentation of Cloud Particles with {\sc HyLandS}
- The GAPS programme at TNG: TBD. Studies of atmospheric FeII winds in ultra-hot Jupiters KELT-9b and KELT-20b using HARPS-N spectrograph
- Clouds and Hazes in GJ 1214b's Metal-Rich Atmosphere
- Why heterogeneous cloud particles matter: Iron-bearing species and cloud particle morphology affects exoplanet transmission spectra
- Evidence of Radius Inflation in Radiative GCM Models of WASP-76b due to the Advection of Potential Temperature
- Dark skies of the slightly eccentric WASP-18 b from its optical-to-infrared dayside emission
- The model for cloudy substellar atmospheres: A grid of self-consistent substellar atmosphere models with microphysical cloud formation
- Under the magnifying glass: A combined 3D model applied to cloudy warm Saturn type exoplanets around M-dwarfs
- Impact of hot exozodiacal dust on the polarimetric analysis of close-in exoplanets
- Tracing bulk elemental ratios in exoplanetary atmospheres with TiO chemistry
- Inhomogeneous magnetic coupling in exoplanets: the stop & go of WASP-18 b's atmospheric flows
- The CHEOPS view on the climate of WASP-3 b
- Magnetohydrodynamic simulation assessment of a potential near-ultraviolet early ingress in WASP-189b
- Revisiting the atmosphere of HAT-P-70b with CARMENES high-resolution transmission spectroscopy
- CARMENES detection of the CaII infrared triplet and possible evidence of HeI in the atmosphere of WASP-76b
- The breaking of cold traps and onset of titanium in ultra-hot Jupiter atmospheres: WASP-189b in context
- TOI-1518b: A Misaligned Ultra-hot Jupiter with Iron in its Atmosphere