All along the line of sight: a closer look at opening angles and absorption regions in the atmospheres of transiting exoplanets
arXiv:2111.11830 · doi:10.1093/mnras/stab3432
Abstract
Transmission spectra contain a wealth of information about the atmospheres of transiting exoplanets. However, large thermal and chemical gradients along the line of sight can lead to biased inferences in atmospheric retrievals. In order to determine how far from the limb plane the atmosphere still impacts the transmission spectrum, we derive a new formula to estimate the opening angle of a planet. This is the angle subtended by the atmospheric region that contributes to the observation along the line of sight, as seen from the planet centre. We benchmark our formula with a 3D Monte-Carlo radiative transfer code and we define an opening angle suitable for the interpretation of JWST observations, assuming a 10-ppm noise floor. We find that the opening angle is only a few degrees for planets cooler than ca. 500 Kelvins, while it can be as large as 25 degrees for (ultra-)hot Jupiters and 50 degrees for hot Neptunes. Compared to previous works, our more robust approach leads to smaller estimates for the opening angle across a wide range scale heights and planetary radii. Finally, we show that ultra-hot Jupiters have an opening angle that is smaller than the angle over which the planet rotates during the transit. This allows for time-resolved transmission spectroscopy observations that probe independent parts of the planetary limb during the first and second half of the transit.
10 pages, 10 figures, accepted for publication in MNRAS (fixed some references in updated version)
References in corpus (13)
- petitRADTRANS: a Python radiative transfer package for exoplanet characterization and retrieval
- Rayleigh scattering in the transit spectrum of HD 189733b
- Tau-REx I: A next generation retrieval code for exoplanetary atmospheres
- Ground-based detection of sodium in the transmission spectrum of exoplanet HD209458b
- The 2020 release of the ExoMol database: molecular line lists for exoplanet and other hot atmospheres
- A solar C/O and sub-solar metallicity in a hot Jupiter atmosphere
- Atmospheric Rossiter-McLaughlin effect and transmission spectroscopy of WASP-121b with ESPRESSO
- Effects of a fully 3D atmospheric structure on exoplanet transmission spectra: retrieval biases due to day-night temperature gradients
- Decomposing the Iron Cross-Correlation Signal of the Ultra-Hot Jupiter WASP-76b in Transmission using 3D Monte-Carlo Radiative Transfer
- Confirmation of Asymmetric Iron Absorption in WASP-76b with HARPS
- High-resolution Transmission Spectroscopy of MASCARA-2 b with EXPRES
- JWST Transit Spectra I: Exploring Potential Biases and Opportunities in Retrievals of Tidally-locked Hot Jupiters with Clouds and Hazes
- Chemical modeling of exoplanet atmospheres
Cited by in corpus (8)
- Photochemically-produced SO in the atmosphere of WASP-39b
- Spatially-resolving the terminator: Variation of Fe, temperature and winds in WASP-76 b across planetary limbs and orbital phase
- The GAPS Programme at TNG. XLI. The climate of KELT-9b revealed with a new approach to high spectral resolution phase curves
- Aura-3D: A Three-dimensional Atmospheric Retrieval Framework for Exoplanet Transmission Spectra
- Diagnosing limb asymmetries in hot and ultra-hot Jupiters with high-resolution transmission spectroscopy
- Transmission strings: a technique for spatially mapping exoplanet atmospheres around their terminators
- GJ 3090 b: one of the most favourable mini-Neptune for atmospheric characterisation
- Patchy nightside clouds on ultra-hot Jupiters: General Circulation Model simulations with radiatively active cloud tracers