Evidence for H Dissociation and Recombination Heat Transport in the Atmosphere of KELT-9b
arXiv:1910.01567 · doi:10.3847/2041-8213/ab5b09
Abstract
Phase curve observations provide an opportunity to study the full energy budgets of exoplanets by quantifying the amount of heat redistributed from their daysides to their nightsides. Theories explaining the properties of phase curves for hot Jupiters have focused on the balance between radiation and dynamics as the primary parameter controlling heat redistribution. However, recent phase curves have shown deviations from the trends that emerge from this theory, which has led to work on additional processes that may affect hot Jupiter energy budgets. One such process, molecular hydrogen dissociation and recombination, can enhance energy redistribution on ultra-hot Jupiters with temperatures above K. In order to study the impact of H dissociation on ultra-hot Jupiters, we present a phase curve of KELT-9b observed with the Spitzer Space Telescope at 4.5 m. KELT-9b is the hottest known transiting planet, with a 4.5-m dayside brightness temperature of K and a nightside temperature of K. We observe a phase curve amplitude of and a hot spot offset of degrees. The observed amplitude is too small to be explained by a simple balance between radiation and advection. General circulation models (GCMs) and an energy balance model that include the effects of H dissociation and recombination provide a better match to the data. The GCMs, however, predict a maximum hot spot offset of degrees, which disagrees with our observations at confidence. This discrepancy may be due to magnetic effects in the planet's highly ionized atmosphere.
References in corpus (14)
- A giant planet undergoing extreme ultraviolet irradiation by its hot massive-star host
- A spectral survey of an ultra-hot Jupiter: Detection of metals in the transmission spectrum of KELT-9 b
- Spitzer Phase Curve Constraints for WASP-43b at 3.6 and 4.5 microns
- New Analysis Indicates No Thermal Inversion in the Atmosphere of HD 209458b
- The Atmospheric Circulation of Ultra-hot Jupiters
- Self-luminous and irradiated exoplanetary atmospheres explored with HELIOS
- A global analysis of Spitzer and new HARPS data confirms the loneliness and metal-richness of GJ 436 b
- Magnetic Effects in Hot Jupiter Atmospheres
- Climate of an Ultra hot Jupiter: Spectroscopic phase curve of WASP-18b with HST/WFC3
- Effects of Bulk Composition on The Atmospheric Dynamics on Close-in Exoplanets
- Estimating the magnetic field strength in hot Jupiters
- Phase Offsets and the Energy Budgets of Hot Jupiters
- Shallow-water Magnetohydrodynamics for Westward Hotspots on Hot Jupiters
- Wavelength Does Not Equal Pressure: Vertical Contribution Functions and their Implications for Mapping Hot Jupiters
Cited by in corpus (59)
- Atmospheric Dynamics of Hot Giant Planets and Brown Dwarfs
- Hot Jupiters: Origins, Structure, Atmospheres
- TESS Transit Timing of Hundreds of Hot Jupiters
- Decomposing the Iron Cross-Correlation Signal of the Ultra-Hot Jupiter WASP-76b in Transmission using 3D Monte-Carlo Radiative Transfer
- Atmospheric Regimes and Trends on Exoplanets and Brown Dwarfs
- Mass loss rate and local thermodynamic state of KELT-9 b thermosphere from the hydrogen Balmer series
- Five key exoplanet questions answered via the analysis of 25 hot Jupiter atmospheres in eclipse
- Clouds in Three-Dimensional Models of Hot Jupiters Over a Wide Range of Temperatures I: Thermal Structures and Broadband Phase Curve Predictions
- ExoClock Project III: 450 new exoplanet ephemerides from ground and space observations
- A transition between the hot and the ultra-hot Jupiter atmospheres
- Non-local thermodynamic equilibrium effects determine the upper atmospheric temperature structure of the ultra-hot Jupiter KELT-9b
- No umbrella needed: Confronting the hypothesis of iron rain on WASP-76b with post-processed general circulation models
- A Comprehensive Reanalysis of 's 4.5 m Phase Curves, and the Phase Variations of the Ultra-hot Jupiters MASCARA-1b and KELT-16b
- Visible-light Phase Curves from the Second Year of the TESS Primary Mission
- Grid of Pseudo-2D Chemistry Models for Tidally-Locked Exoplanets. I. The Role of Vertical and Horizontal Mixing
- The GAPS Programme at TNG. XLI. The climate of KELT-9b revealed with a new approach to high spectral resolution phase curves
- KELT-9 b's Asymmetric TESS Transit Caused by Rapid Stellar Rotation and Spin-Orbit Misalignment
- High-resolution transmission spectroscopy study of ultra-hot Jupiters HAT-P-57b, KELT-17b, KELT-21b, KELT-7b, MASCARA-1b, and WASP-189b
- Detection of the hydrogen Balmer lines in the ultra-hot Jupiter WASP-33b
- TOI-2109b: An Ultrahot Gas Giant on a 16 hr Orbit
- Confirmation of Iron Emission Lines and Non-detection of TiO on the Dayside of KELT-9b with MAROON-X
- Spi-OPS: Spitzer and CHEOPS confirm the near-polar orbit of MASCARA-1 b and reveal a hint of dayside reflection
- Detection of iron emission lines and a temperature inversion on the dayside of the ultra-hot Jupiter KELT-20b
- The Hubble WFC3 Emission Spectrum of the Extremely-Hot Jupiter, KELT-9b
- Modelling the atmosphere of lava planet K2-141b: implications for low and high resolution spectroscopy
- Introducing a New Spitzer Master BLISS Map to Remove the Instrument-Systematic -- Phase-Curve-Parameter Degeneracy, as Demonstrated by a Reanalysis of the 4.5 WASP-43b Phase Curve
- Phase Curve of the Hot Jupiter WASP-19b
- A data-driven approach to constraining the atmospheric temperature structure of KELT-9b
- Phase Curves of Hot Neptune LTT 9779b Suggest a High-Metallicity Atmosphere
- A New Analysis of 8 Spitzer Phase Curves and Hot Jupiter Population Trends: Qatar-1b, Qatar-2b, WASP-52b, WASP-34b, and WASP-140b
- Pseudo-2D Modelling of Heat Redistribution Through H Thermal Dissociation/Recombination: Consequences for Ultra-Hot Jupiters
- Variable and super-sonic winds in the atmosphere of an ultra-hot giant planet
- Examining the orbital decay targets KELT-9 b, KELT-16 b and WASP-4 b, and the transit-timing variations of HD 97658 b
- Diagnosing limb asymmetries in hot and ultra-hot Jupiters with high-resolution transmission spectroscopy
- The stable climate of KELT-9b
- Understanding the atmospheric properties and chemical composition of the ultra-hot Jupiter HAT-P-7b II. Mapping the effects of gas kinetics
- A survey of exoplanet phase curves with Ariel
- Detection of Paschen absorption in the atmosphere of KELT-9 b: A new window into the atmospheres of ultra-hot Jupiters
- A New Method For Studying Exoplanet Atmospheres Using Planetary Infrared Excess
- The effect of interior heat flux on the atmospheric circulation of hot and ultra-hot Jupiters
- Magnetic induction processes in Hot Jupiters, application to KELT-9b
- Dynamics and Clouds in Planetary Atmospheres from Telescopic Observations
- Smaller than expected bright-spot offsets in Spitzer phase curves of the hot Jupiter Qatar-1b
- High-resolution Emission Spectroscopy of the Ultrahot Jupiter KELT-9b: Little Variation in Day- and Nightside Emission Line Contrasts
- Spitzer thermal phase curve of WASP-121 b
- A strong H- opacity signal in the near-infrared emission spectrum of the ultra-hot Jupiter KELT-9b
- Thermal Phase Curves of XO-3b: an Eccentric Hot Jupiter at the Deuterium Burning Limit
- The atmospheric composition of the ultra-hot Jupiter WASP-178 b observed with ESPRESSO
- Physically-motivated basis functions for temperature maps of exoplanets
- The effect of cloudy atmospheres on the thermal evolution of warm giant planets from an interior modelling perspective
- Multi-epoch detections of the extended atmosphere and transmission spectra of KELT-9b with a 1.5 m telescope
- Refractory and Volatile Species in the UV-to-IR Transmission Spectrum of Ultra-hot Jupiter WASP-178b with HST and JWST
- Extreme winds on the emerging dayside of an ultrahot Jupiter
- Lessons from Hubble and Spitzer: 1D Self-Consistent Model Grids for 19 Hot Jupiter Emission Spectra
- The CHEOPS view on the climate of WASP-3 b
- Spitzer phase curve observations and circulation models of the inflated ultra-hot Jupiter WASP-76b
- Effects of the internal temperature on vertical mixing and on cloud structures in Ultra Hot Jupiters
- Patchy nightside clouds on ultra-hot Jupiters: General Circulation Model simulations with radiatively active cloud tracers
- TESS phase curve of ultra-hot Jupiter WASP-189 b