ESPRESSO reveals blueshifted neutral iron emission lines on the dayside of WASP-76 b

Fuente: arXiv
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Hauptverfasser: Silva, A. R. Costa, Demangeon, O. D. S., Santos, N. C., Ehrenreich, D., Lovis, C., Chakraborty, H., Lendl, M., Pepe, F., Cristiani, S., Rebolo, R., Zapatero-Osorio, M. R., Adibekyan, V., Alibert, Y., Allart, R., Prieto, C. Allende, Silva, T. Azevedo, Borsa, F., Bourrier, V., Cristo, E., Di Marcantonio, P., Esparza-Borges, E., Figueira, P., Hernández, J. I. González, Herrero-Cisneros, E., Curto, G. Lo, Martins, C. J. A. P., Mehner, A., Nunes, N. J., Palle, E., Pelletier, S., Seidel, J. V., Silva, A. M., Sousa, S. G., Sozzetti, A., Steiner, M., Mascareño, A. Suárez, Udry, S.
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Veröffentlicht: 2024
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author Silva, A. R. Costa
Demangeon, O. D. S.
Santos, N. C.
Ehrenreich, D.
Lovis, C.
Chakraborty, H.
Lendl, M.
Pepe, F.
Cristiani, S.
Rebolo, R.
Zapatero-Osorio, M. R.
Adibekyan, V.
Alibert, Y.
Allart, R.
Prieto, C. Allende
Silva, T. Azevedo
Borsa, F.
Bourrier, V.
Cristo, E.
Di Marcantonio, P.
Esparza-Borges, E.
Figueira, P.
Hernández, J. I. González
Herrero-Cisneros, E.
Curto, G. Lo
Martins, C. J. A. P.
Mehner, A.
Nunes, N. J.
Palle, E.
Pelletier, S.
Seidel, J. V.
Silva, A. M.
Sousa, S. G.
Sozzetti, A.
Steiner, M.
Mascareño, A. Suárez
Udry, S.
author_facet Silva, A. R. Costa
Demangeon, O. D. S.
Santos, N. C.
Ehrenreich, D.
Lovis, C.
Chakraborty, H.
Lendl, M.
Pepe, F.
Cristiani, S.
Rebolo, R.
Zapatero-Osorio, M. R.
Adibekyan, V.
Alibert, Y.
Allart, R.
Prieto, C. Allende
Silva, T. Azevedo
Borsa, F.
Bourrier, V.
Cristo, E.
Di Marcantonio, P.
Esparza-Borges, E.
Figueira, P.
Hernández, J. I. González
Herrero-Cisneros, E.
Curto, G. Lo
Martins, C. J. A. P.
Mehner, A.
Nunes, N. J.
Palle, E.
Pelletier, S.
Seidel, J. V.
Silva, A. M.
Sousa, S. G.
Sozzetti, A.
Steiner, M.
Mascareño, A. Suárez
Udry, S.
contents 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 cross-correlation function techniques. We detect a blueshifted (-4.7+-0.3 km/s) Fe I emission signature on the dayside of WASP-76 b at 6.0-sigma. The signal is detected independently both before and after the eclipse, and blueshifted in both cases. The presence of iron emission features confirms the existence of a thermal inversion layer. Fe II was not detected, possibly because this species is located in the upper layers of the atmosphere, which are more optically thin. Thus the Fe II signature on the dayside of WASP-76 b is too weak to be detected with emission spectroscopy. We propose that the blueshifted Fe I signature is created by material rising from the hot spot to the upper layers of the atmosphere, and discuss possible scenarios related to the position of the hotspot. This work unveils some of the dynamic processes ongoing on the dayside of WASP-76 b through the analysis of the Fe I signature from its atmosphere, and complements previous knowledge obtained from transmission studies.
format Preprint
id arxiv_https___arxiv_org_abs_2409_13519
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle ESPRESSO reveals blueshifted neutral iron emission lines on the dayside of WASP-76 b
Silva, A. R. Costa
Demangeon, O. D. S.
Santos, N. C.
Ehrenreich, D.
Lovis, C.
Chakraborty, H.
Lendl, M.
Pepe, F.
Cristiani, S.
Rebolo, R.
Zapatero-Osorio, M. R.
Adibekyan, V.
Alibert, Y.
Allart, R.
Prieto, C. Allende
Silva, T. Azevedo
Borsa, F.
Bourrier, V.
Cristo, E.
Di Marcantonio, P.
Esparza-Borges, E.
Figueira, P.
Hernández, J. I. González
Herrero-Cisneros, E.
Curto, G. Lo
Martins, C. J. A. P.
Mehner, A.
Nunes, N. J.
Palle, E.
Pelletier, S.
Seidel, J. V.
Silva, A. M.
Sousa, S. G.
Sozzetti, A.
Steiner, M.
Mascareño, A. Suárez
Udry, S.
Earth and Planetary Astrophysics
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 cross-correlation function techniques. We detect a blueshifted (-4.7+-0.3 km/s) Fe I emission signature on the dayside of WASP-76 b at 6.0-sigma. The signal is detected independently both before and after the eclipse, and blueshifted in both cases. The presence of iron emission features confirms the existence of a thermal inversion layer. Fe II was not detected, possibly because this species is located in the upper layers of the atmosphere, which are more optically thin. Thus the Fe II signature on the dayside of WASP-76 b is too weak to be detected with emission spectroscopy. We propose that the blueshifted Fe I signature is created by material rising from the hot spot to the upper layers of the atmosphere, and discuss possible scenarios related to the position of the hotspot. This work unveils some of the dynamic processes ongoing on the dayside of WASP-76 b through the analysis of the Fe I signature from its atmosphere, and complements previous knowledge obtained from transmission studies.
title ESPRESSO reveals blueshifted neutral iron emission lines on the dayside of WASP-76 b
topic Earth and Planetary Astrophysics
url https://arxiv.org/abs/2409.13519