Regaining the FORS: optical ground-based transmission spectroscopy of the exoplanet WASP-19b with VLT+FORS2
arXiv:1503.04155 · doi:10.1051/0004-6361/201525822
Abstract
In the past few years, the study of exoplanets has evolved from being pure discovery, then being more exploratory in nature and finally becoming very quantitative. In particular, transmission spectroscopy now allows the study of exoplanetary atmospheres. Such studies rely heavily on space-based or large ground-based facilities, because one needs to perform time-resolved, high signal-to-noise spectroscopy. The very recent exchange of the prisms of the FORS2 atmospheric diffraction corrector on ESO's Very Large Telescope should allow us to reach higher data quality than was ever possible before. With FORS2, we have obtained the first optical ground-based transmission spectrum of WASP-19b, with 20 nm resolution in the 550--830 nm range. For this planet, the data set represents the highest resolution transmission spectrum obtained to date. We detect large deviations from planetary atmospheric models in the transmission spectrum redwards of 790 nm, indicating either additional sources of opacity not included in the current atmospheric models for WASP-19b or additional, unexplored sources of systematics. Nonetheless, this work shows the new potential of FORS2 for studying the atmospheres of exoplanets in greater detail than has been possible so far.
7 pages, 9 figures, 3 tables. Accepted for publication in A&A
References in corpus (8)
- The effect of red noise on planetary transit detection
- Hubble Space Telescope times-series photometry of the planetary transit of HD189733: no moon, no rings, starspots
- The effect of stellar limb darkening values on the accuracy of the planet radii derived from photometric transit observations
- High accuracy transit photometry of the planet OGLE-TR-113b with a new deconvolution-based method
- Theoretical Transit Spectra for GJ 1214b and Other "Super-Earths"
- Highlights in the Study of Exoplanet Atmospheres
- A cool starspot or a second transiting planet in the TrES-1 system?
- A photometric study of the hot exoplanet WASP-19b
Cited by in corpus (18)
- Detection of titanium oxide in the atmosphere of a hot Jupiter
- VLT FORS2 comparative transmission spectroscopy: Detection of Na in the atmosphere of WASP-39b from the ground
- VLT/FORS2 comparative transmission spectroscopy II: confirmation of a cloud-deck and Rayleigh scattering in WASP-31b, but no potassium?
- Influence of Stellar Flares on the Chemical Composition of Exoplanets and Spectra
- Transmission spectroscopy of the inflated exoplanet WASP-52b, and evidence for a bright region on the stellar surface
- ExoClock project II: A large-scale integrated study with 180 updated exoplanet ephemerides
- Potassium detection in the clear atmosphere of a hot-Jupiter: FORS2 transmission spectroscopy of WASP-17b
- Phase Curve of the Hot Jupiter WASP-19b
- Ground-Based Transmission Spectroscopy with FORS2: A featureless optical transmission spectrum and detection of HO for the ultra-hot Jupiter WASP-103b
- Probing the atmosphere of a sub-Jovian planet orbiting a cool dwarf
- Transmission spectroscopy with VLT FORS2: a featureless spectrum for the low-density transiting exoplanet WASP-88b
- Evidence of apsidal motion and a possible co-moving companion star detected in the WASP-19 system
- Atmospheric Characterization via Broadband Color Filters on the PLAnetary Transits and Oscillations of stars (PLATO) Mission
- A precise blue-optical transmission spectrum from the ground: Evidence for haze in the atmosphere of WASP-74b
- Regaining the FORS: making optical ground-based transmission spectroscopy of exoplanets with VLT+FORS2 possible again
- TESS Unveils the Full Phase Curve of WASP-19b
- Unsupervised Method for Correlated Noise Removal for Multi-wavelength Exoplanet Transit Observations
- Estimation of Exoplanetary Planet-to-Star Radius Ratio with Homomorphic Processing