Hot Exoplanet Atmospheres Resolved with Transit Spectroscopy (HEARTS) V. Detection of sodium on the bloated super-Neptune WASP-166b

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Hauptverfasser: Seidel, J. V., Ehrenreich, D., Bourrier, V., Allart, R., Attia, M., Hoeijmakers, H. J., Lendl, M., Linder, E., Wyttenbach, A., Astudillo-Defru, N., Bayliss, D., Cegla, H. M., Heng, Kevin, Lavie, B., Lovis, C., Melo, C., Pepe, F., Santos, L. A. dos, Ségransan, D., Udry, S.
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Veröffentlicht: 2020
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author Seidel, J. V.
Ehrenreich, D.
Bourrier, V.
Allart, R.
Attia, M.
Hoeijmakers, H. J.
Lendl, M.
Linder, E.
Wyttenbach, A.
Astudillo-Defru, N.
Bayliss, D.
Cegla, H. M.
Heng, Kevin
Lavie, B.
Lovis, C.
Melo, C.
Pepe, F.
Santos, L. A. dos
Ségransan, D.
Udry, S.
author_facet Seidel, J. V.
Ehrenreich, D.
Bourrier, V.
Allart, R.
Attia, M.
Hoeijmakers, H. J.
Lendl, M.
Linder, E.
Wyttenbach, A.
Astudillo-Defru, N.
Bayliss, D.
Cegla, H. M.
Heng, Kevin
Lavie, B.
Lovis, C.
Melo, C.
Pepe, F.
Santos, L. A. dos
Ségransan, D.
Udry, S.
contents Planet formation processes or evolution mechanisms are surmised to be at the origin of the hot Neptune desert. Studying exoplanets currently living within or at the edge of this desert could allow disentangling the respective roles of formation and evolution. We present the HARPS transmission spectrum of the bloated super-Neptune WASP-166b, located at the outer rim of the Neptune desert. Neutral sodium is detected at the 3.4 $σ$ level ($0.455 \pm 0.135 %$), with a tentative indication of line broadening, which could be caused by winds blowing sodium farther into space, a possible manifestation of the bloated character of these highly irradiated worlds. We put this detection into context with previous work claiming a non-detection of sodium in the same observations and show that the high noise in the trace of the discarded stellar sodium lines was responsible for the non-detection. We highlight the impact of this low signal-to-noise remnant on detections for exoplanets similar to WASP-166b.
format Preprint
id arxiv_https___arxiv_org_abs_2007_01783
institution arXiv
publishDate 2020
record_format arxiv
spellingShingle Hot Exoplanet Atmospheres Resolved with Transit Spectroscopy (HEARTS) V. Detection of sodium on the bloated super-Neptune WASP-166b
Seidel, J. V.
Ehrenreich, D.
Bourrier, V.
Allart, R.
Attia, M.
Hoeijmakers, H. J.
Lendl, M.
Linder, E.
Wyttenbach, A.
Astudillo-Defru, N.
Bayliss, D.
Cegla, H. M.
Heng, Kevin
Lavie, B.
Lovis, C.
Melo, C.
Pepe, F.
Santos, L. A. dos
Ségransan, D.
Udry, S.
Earth and Planetary Astrophysics
Planet formation processes or evolution mechanisms are surmised to be at the origin of the hot Neptune desert. Studying exoplanets currently living within or at the edge of this desert could allow disentangling the respective roles of formation and evolution. We present the HARPS transmission spectrum of the bloated super-Neptune WASP-166b, located at the outer rim of the Neptune desert. Neutral sodium is detected at the 3.4 $σ$ level ($0.455 \pm 0.135 %$), with a tentative indication of line broadening, which could be caused by winds blowing sodium farther into space, a possible manifestation of the bloated character of these highly irradiated worlds. We put this detection into context with previous work claiming a non-detection of sodium in the same observations and show that the high noise in the trace of the discarded stellar sodium lines was responsible for the non-detection. We highlight the impact of this low signal-to-noise remnant on detections for exoplanets similar to WASP-166b.
title Hot Exoplanet Atmospheres Resolved with Transit Spectroscopy (HEARTS) V. Detection of sodium on the bloated super-Neptune WASP-166b
topic Earth and Planetary Astrophysics
url https://arxiv.org/abs/2007.01783