Detection of Paschen absorption in the atmosphere of KELT-9 b: A new window into the atmospheres of ultra-hot Jupiters
arXiv:2209.01854 · doi:10.1051/0004-6361/202244416
Abstract
Hydrogen and helium transmission signals trace the upper atmospheres of hot gas-giant exoplanets, where the incoming stellar extreme ultraviolet and X-ray fluxes are deposited. Further, for the hottest stars, the near-ultraviolet excitation of hydrogen in the Balmer continuum may play a dominant role in controlling the atmospheric temperature and driving photoevaporation. KELT-9 b is the archetypal example of such an environment as it is the hottest gas-giant exoplanet known to date (T 4500 K) and orbits an A0V-type star. Studies of the upper atmosphere and escaping gas of this ultra-hot Jupiter have targeted the absorption in the Balmer series of hydrogen (n = 2 n 2). Unfortunately, the lowermost metastable helium state that causes the triplet absorption at 108.3 nm is not sufficiently populated for detection. Here, we present evidence of hydrogen absorption in the Paschen series in the transmission spectrum of KELT-9 b observed with CARMENES. Specifically, we focus on the strongest line covered by its NIR channel, Paschen- at 1282.16 nm (n = 3 n = 5). The observed absorption shows a contrast of (0.53 )%, a blueshift of 14.8 km/s, and a FWHM of 31.9 km/s. The observed blueshift in the absorption feature could be explained by day-to-night circulation within the gravitationally bound atmosphere or, alternatively, by Paschen- absorption originating in a tail of escaping gas moving toward the observer as a result of extreme atmospheric evaporation. This detection opens a new window for investigating the atmospheres of ultra-hot Jupiters, providing additional constraints of their temperature structure, mass-loss rates, and dynamics for future modeling of their scorching atmospheres.
7 pages, accepted for publication in A&A Letters
References in corpus (34)
- Molecfit: A general tool for telluric absorption correction. I. Method and application to ESO instruments
- Molecfit: A general tool for telluric absorption correction II. Quantitative evaluation on ESO-VLT X-Shooter spectra
- Nightside condensation of iron in an ultra-hot giant exoplanet
- 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
- The Atmospheric Circulation of Ultra-hot Jupiters
- Neutral Iron Emission Lines From The Day-side Of KELT-9b -- The GAPS Programme With HARPS-N At TNG XX
- High-resolution confirmation of an extended helium atmosphere around WASP-107b
- 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
- Decomposing the Iron Cross-Correlation Signal of the Ultra-Hot Jupiter WASP-76b in Transmission using 3D Monte-Carlo Radiative Transfer
- Mass loss rate and local thermodynamic state of KELT-9 b thermosphere from the hydrogen Balmer series
- An Atomic Spectral Survey of WASP-76b: Resolving Chemical Gradients and Asymmetries
- Confirmation of WASP-107b's extended Helium atmosphere with Keck II/NIRSPEC
- Modelling the He I triplet absorption at 10830 Angstroms in the atmosphere of HD 209458 b
- A He I upper atmosphere around the warm Neptune GJ 3470b
- 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
- Confirmation of Asymmetric Iron Absorption in WASP-76b with HARPS
- Detection of Fe and evidence for TiO in the dayside emission spectrum of WASP-33b
- Non-local thermodynamic equilibrium effects determine the upper atmospheric temperature structure of the ultra-hot Jupiter KELT-9b
- Into the Storm: Diving into the winds of the ultra hot Jupiter WASP-76 b with HARPS and ESPRESSO
- Rapid escape of ultra-hot exoplanet atmospheres driven by Hydrogen Balmer absorption
- Constraints on Metastable Helium in the Atmospheres of WASP-69b and WASP-52b with Ultra-Narrowband Photometry
- H and He I absorption in HAT-P-32 b observed with CARMENES -- Detection of Roche lobe overflow and mass loss
- A tentative detection of He I in the atmosphere of GJ 1214b
- Near-IR integral-field spectroscopy of the companion to GQ Lup
- Modelling the He I triplet absorption at 10830 Angstroms in the atmospheres of HD 189733 b and GJ 3470 b
- High-resolution detection of neutral oxygen and non-LTE effects in the atmosphere of KELT-9b
- The centre-to-limb variations of solar Fraunhofer lines imprinted upon lunar eclipse spectra - Implications for exoplanet transit observations
- Searching for the origin of the Ehrenreich effect in ultra-hot Jupiters: Evidence for strong C/O gradients in the atmosphere of WASP-76b?
- Silicon in the dayside atmospheres of two ultra-hot Jupiters
- Evidence of energy-, recombination-, and photon-limited escape regimes in giant planet H/He atmospheres
- Search for helium in the upper atmosphere of the hot Jupiter WASP-127 b using Gemini/Phoenix
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- An atlas of resolved spectral features in the transmission spectrum of WASP-189 b with MAROON-X
- Dynamics and Clouds in Planetary Atmospheres from Telescopic Observations
- The GAPS programme at TNG: TBD. Studies of atmospheric FeII winds in ultra-hot Jupiters KELT-9b and KELT-20b using HARPS-N spectrograph
- The GAPS programme at TNG LX Atmospheric characterisation of KELT-9 b via single-line analysis: Detection of six H I Balmer lines, Na I, Ca I, Ca II, Fe I, Fe II, Mg I, Ti II, Sc II, and Cr II
- Extreme winds on the emerging dayside of an ultrahot Jupiter
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