Converting the sub-Jovian desert of exoplanets to a savanna with TESS, PLATO and Ariel
arXiv:2304.05707 · doi:10.1093/mnras/stad978 10.1093/mnras/stad978 10.1093/mnras/stad978
Abstract
There is a lack of exoplanets with sizes similar to Neptune orbiting their host stars with periods days -- hence the name ``sub-Jovian/Neptune desert''. Recently, several exoplanets have been confirmed to reside in the desert transforming it into a ``savanna'' with several ``giraffe'' planets (such as LTT 9779 b and TOI-674 b). The most prominent scenarios put forward for the explanation of the formation of the desert are related to the stellar irradiation destroying the primary atmosphere of certain specific exoplanets. We aim to present three targets (LTT 9779 b, TOI-674 b and WASP-156 b) which, when observed at wide wavelength ranges in infrared (IR), could prove the presence of these processes, and therefore improve the theories of planetary formation/evolution. We simulate and analyse realistic light curves of the selected exoplanets with PLATO/NCAM and the three narrow-band filters of Ariel (VISPhot, FGS1 and FGS2) based on TESS observations of these targets. We improved the precision of the transit parameters of the three considered planets from the TESS data. We find that the combination of the three narrow-band filters of Ariel can yield inner precision of for the planetary radii. Data from the three telescopes together will span decades, allowing the monitoring of changes in the planetary atmosphere through radius measurements. The three selected ``giraffe'' planets can be golden targets for Ariel, whereby the loss of planetary mass due to stellar irradiation could be studied with high precision, multi-wavelength (spectro-)photometry.
Accepted for publication in MNRAS; 16 pages, 17 figures
References in corpus (27)
- The Transiting Exoplanet Survey Satellite
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- Gaia Data Release 1. Summary of the astrometric, photometric, and survey properties
- The CHEOPS mission
- The effect of stellar limb darkening values on the accuracy of the planet radii derived from photometric transit observations
- A remnant planetary core in the hot-Neptune desert
- The hot dayside and asymmetric transit of WASP-189b seen by CHEOPS
- An Ultra-Hot Neptune in the Neptune desert
- Analysis of a JWST NIRSpec Lab Time Series: Characterizing Systematics, Recovering Exoplanet Transit Spectroscopy, and Constraining a Noise Floor
- ARES I: WASP-76 b, A Tale of Two HST Spectra
- The PLATO field selection process I. Identification and content of the long-pointing fields
- MOST Spacebased Photometry of the Transiting Exoplanet System HD 189733: Precise Timing Measurements for Transits Across an Active Star
- ArielRad: the Ariel Radiometric Model
- Alfnoor: A Retrieval Simulation of the Ariel Target List
- TOI-674b: an oasis in the desert of exo-Neptunes transiting a nearby M dwarf
- Phase Curves of Hot Neptune LTT 9779b Suggest a High-Metallicity Atmosphere
- The PLATO Solar-like Light-curve Simulator: A tool to generate realistic stellar light-curves with instrumental effects representative of the PLATO mission
- Spitzer Reveals Evidence of Molecular Absorption in the Atmosphere of the Hot Neptune LTT 9979b
- The clockwork is moving on -- a combined analysis of TESS and Kepler measurements of Kepler-13Ab
- Transit timing variations of AU Microscopii b and c
- NGTS-5b: a highly inflated planet offering insights into the sub-Jovian desert
- NGTS-14Ab: a Neptune-sized transiting planet in the desert
- The sub-Jovian desert of exoplanets: parameter dependent boundaries and implications on planet formation
- Critical Analysis of TESS Transit Photometric Data: Improved Physical Properties for Five Exoplanets
- Sub-Jovian desert of exoplanets at its boundaries. Parameter dependence along the main sequence
- Gravity darkening and tidally perturbed stellar pulsation in the misaligned exoplanet system WASP-33
- HST PanCET program: Non-detection of atmospheric escape in the warm Saturn-sized planet WASP-29 b