Non-local thermodynamic equilibrium effects determine the upper atmospheric temperature structure of the ultra-hot Jupiter KELT-9b
arXiv:2106.11263 · doi:10.1051/0004-6361/202140813
Abstract
Several results indicate that the atmospheric temperature of the ultra-hot Jupiter KELT-9b in the main line formation region is a few thousand degrees higher than predicted by self-consistent models. We test whether non-local thermodynamic equilibrium (NLTE) effects are responsible for the presumably higher temperature. We employ the Cloudy NLTE radiative transfer code to self-consistently compute the upper atmospheric temperature-pressure (TP) profile of KELT-9b, assuming solar metallicity. The Cloudy NLTE TP profile is 2000 K hotter than that obtained with previous models assuming local thermodynamic equilibrium (LTE). In particular, in the 1-10 bar range the temperature increases from 4000 K to 8500 K, remaining roughly constant at lower pressures. We find that the high temperature in the upper atmosphere of KELT-9b is driven principally by NLTE effects modifying the Fe and Mg level populations, which strongly influence the atmospheric thermal balance. We employ Cloudy to compute LTE and NLTE synthetic transmission spectra on the basis of the TP profiles computed in LTE and NLTE, respectively, finding that the NLTE model generally produces stronger absorption lines than the LTE model (up to 30%), which is largest in the ultraviolet. We compare the NLTE synthetic transmission spectrum with the observed H and H line profiles obtaining an excellent match, thus supporting our results. The NLTE synthetic transmission spectrum can be used to guide future observations aiming at detecting features in the planet's transmission spectrum. Metals, such as Mg and Fe, and NLTE effects shape the upper atmospheric temperature structure of KELT-9b and thus affect the mass-loss rates derived from it. Finally, our results call for checking whether this is the case also of cooler planets.
Accepted for publication on A&A. The abstract has been shortened to fit the available space
References in corpus (35)
- The 2013 Release of Cloudy
- Atmospheric Retrieval for Super-Earths: Uniquely Constraining the Atmospheric Composition with Transmission Spectroscopy
- Rayleigh scattering in the transit spectrum of HD 189733b
- 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
- Near-UV Absorption, Chromospheric Activity, and Star-Planet Interactions in the WASP-12 system
- Detection of Fe I in the atmosphere of the ultra-hot Jupiter WASP-121b, and a new likelihood-based approach for Doppler-resolved spectroscopy
- Hot Exoplanet Atmospheres Resolved with Transit Spectroscopy (HEARTS) IV. A spectral inventory of atoms and molecules in the high-resolution transmission spectrum of WASP-121 b
- HELIOS-K 2.0 Opacity Calculator and Open-source Opacity Database for Exoplanetary Atmospheres
- Self-luminous and irradiated exoplanetary atmospheres explored with HELIOS
- Neutral Iron Emission Lines From The Day-side Of KELT-9b -- The GAPS Programme With HARPS-N At TNG XX
- Hot Exoplanet Atmospheres Resolved with Transit Spectroscopy (HEARTS) - II. A broadened sodium feature on the ultra-hot giant WASP-76b
- Ionized calcium in the atmospheres of two ultra-hot exoplanets WASP-33b and KELT-9b
- ESPRESSO high resolution transmission spectroscopy of WASP-76b
- On degeneracies in retrievals of exoplanetary transmission spectra
- Mass loss rate and local thermodynamic state of KELT-9 b thermosphere from the hydrogen Balmer series
- Detection of ionized calcium in the atmosphere of the ultra-hot Jupiter KELT-9b
- Evidence for H Dissociation and Recombination Heat Transport in the Atmosphere of KELT-9b
- ARES I: WASP-76 b, A Tale of Two HST Spectra
- A temperature inversion with atomic iron in the ultra-hot dayside atmosphere of WASP-189b
- The Influence of Host Star Spectral Type on Ultra-Hot Jupiter Atmospheres
- High-resolution Transmission Spectroscopy of MASCARA-2 b with EXPRES
- Detection of Fe\,{\sc i} Emission in the Day-side Spectrum of WASP-33b
- Rapid escape of ultra-hot exoplanet atmospheres driven by Hydrogen Balmer absorption
- Neutral Cr and V in the atmosphere of ultra hot jupiter WASP-121 b
- TPCI: The PLUTO-CLOUDY Interface
- Near-ultraviolet Transmission Spectroscopy of HD 209458b: Evidence of Ionized Iron Beyond the Planetary Roche Lobe
- Detection of the hydrogen Balmer lines in the ultra-hot Jupiter WASP-33b
- An analytical formalism accounting for clouds and other "surfaces" for exoplanet transmission spectroscopy
- Swift UVOT near-UV transit observations of WASP-121 b
- Stout: Cloudy's Atomic and Molecular Database
- The PHOENIX Exoplanet Retrieval Algorithm and Using H Opacity as a Probe in Ultra-hot Jupiters
- Stellar impact on disequilibrium chemistry and on observed spectra of hot Jupiter atmospheres
- Non-Local Thermodynamic Equilibrium Transmission Spectrum Modelling of HD209458b
- Observability of ultraviolet N I lines in the atmosphere of transiting Earth-like planets
Cited by in corpus (7)
- Detection of ionized calcium in the atmosphere of the ultra-hot Jupiter KELT-9b
- The atmosphere and architecture of WASP-189 b probed by its CHEOPS phase curve
- Detection of iron emission lines and a temperature inversion on the dayside of the ultra-hot Jupiter KELT-20b
- High-resolution detection of neutral oxygen and non-LTE effects in the atmosphere of KELT-9b
- Detection of CO emission lines in the dayside atmospheres of WASP-33b and WASP-189b with GIANO
- Detection of Ionized Calcium in the Atmosphere of the Ultra-Hot Jupiter WASP-76b
- Silicon in the dayside atmospheres of two ultra-hot Jupiters