ESPRESSO reveals blueshifted neutral iron emission lines on the dayside of WASP-76 b
A. R. Costa Silva, O. D. S. Demangeon, N. C. Santos, D. Ehrenreich, C., Lovis, H. Chakraborty, M. Lendl, F. Pepe, S. Cristiani, R. Rebolo, M. R., Zapatero-Osorio, V. Adibekyan, Y. Alibert, R. Allart, C. Allende Prieto, T., Azevedo Silva, F. Borsa, V. Bourrier, E. Cristo

TL;DR
This study uses high-resolution emission spectroscopy to detect blueshifted neutral iron emission lines on the dayside of the ultra hot Jupiter WASP-76 b, confirming a thermal inversion layer and revealing atmospheric dynamics.
Contribution
First high-resolution optical emission spectra analysis of WASP-76 b confirming iron emission and thermal inversion, with insights into atmospheric dynamics and material movement.
Findings
Detected blueshifted Fe I emission at 6.0-sigma significance
Confirmed existence of a thermal inversion layer
Did not detect Fe II emission, suggesting upper atmospheric layers are more transparent
Abstract
Ultra hot Jupiters (gas giants, Teq>2000 K) are intriguing exoplanets due to their extreme atmospheres. Their torrid daysides can be characterised using ground-based high-resolution emission spectroscopy. We search for signatures of neutral and singly ionised iron (Fe I and Fe II) in the dayside of the ultra hot Jupiter WASP-76 b, as these species were detected via transmission spectroscopy in this exoplanet. Furthermore, we aim to confirm the existence of a thermal inversion layer, which has been reported in previous studies, and attempt to constrain its properties. We observed WASP-76 b on four epochs with ESPRESSO at the VLT, at orbital phases shortly before and after the secondary transit, when the dayside is in view. We present the first analysis of high-resolution optical emission spectra for this exoplanet. We compare the data to synthetic templates from petitRADTRANS, using…
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