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CRIRES+ detection of H2O and CO in the transmission spectra of WASP-107 b

Wehrhahn, Ansgar (författare)
Uppsala universitet,Observationell astrofysik
Boldt-Christmas, Linn (författare)
Uppsala universitet,Observationell astrofysik
Rains, Adam D. (författare)
Uppsala universitet,Institutionen för fysik och astronomi
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Piskunov, Nikolai, professor, 1957- (författare)
Uppsala universitet,Observationell astrofysik
Nortmann, Lisa (författare)
Institut für Astrophysik, Georg-August-Universität
Lesjak, Fabio (författare)
Institut für Astrophysik, Georg-August-Universität
Czesla, Stefan (författare)
Thüringer Landessternwarte Tautenburg
Heiter, Ulrike (författare)
Uppsala universitet,Observationell astrofysik
Yan, Fei (författare)
Department of Astronomy, University of Science and Technology of China
Rengel, Maria (författare)
Max-Planck-Institut für Sonnensystemforschung
Kochukhov, Oleg (författare)
Uppsala universitet,Observationell astrofysik
Hatzes, Artie (författare)
Thüringer Landessternwarte Tautenburg
Reiners, Ansgar (författare)
Institut für Astrophysik, Georg-August-Universität
Seeman, Ulf (författare)
European Southern Observatory
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 (creator_code:org_t)
2022
Engelska 9 s.
  • Annan publikation (övrigt vetenskapligt/konstnärligt)
Abstract Ämnesord
Stäng  
  • WASP-107 b is a warm super-Neptune with a large extended atmosphere orbiting a bright K dwarf of solar composition. The planet's size and the brightness of its stellar host make it highly amenable to atmospheric characterisation, with previous detections of both He and H2O. We observe it here for the first time in high-resolution spectroscopy in the K-band. To obtain a transmission spectrum of the exoplanet atmosphere, we observe a transit event of WASP-107 b for a total of 5.4 hours (2.7 hours in transit) in the K-band with an average SNR = 64 for each exposure using the high-resolution infrared CRIRES+ spectrograph on the Very Large Telescope on Cerro Paranal, Chile. We aim to demonstrate the capabilities of this new instrument for exoplanet characterisation by searching for the presence of molecular features of key chemical species in the atmosphere with spectral lines detectable in this band, such as CO, CO2, H2O, and CH4. The search for particular chemical species is conducted by using the cross-correlation method on the observed spectra. The transit spectroscopy observations are first cleaned from the stellar and telluric features using the SYSREM algorithm, and the remaining spectral information is then compared to a model transmission spectrum. The model transmission spectrum is obtained using the petitRADTRANS code based on expectations for a warm Neptune-class planet and the observed orbital parameters. We report the detection of H2O in the atmosphere of WASP-107 b with 4.71 sigma significance, as well as a detection of CO at 3.46 sigma. The velocities of these detections show signs of atmospheric weather patterns, such as day-to-night-side temperature gradients. We do not detect the presence of CO2 or CH4. Our results confirm the chemical composition of the WASP-107 b's atmosphere and pave the way for efficient atmospheric studies of other planets of the same class. They show that the newly upgraded high-resolution spectrograph CRIRES+ is suitable for exoplanet transit observations. All detections and non-detections are in agreement with previous transmission studies of WASP-107 b based on low-resolution spectroscopy.

Ämnesord

NATURVETENSKAP  -- Fysik -- Astronomi, astrofysik och kosmologi (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences -- Astronomy, Astrophysics and Cosmology (hsv//eng)

Nyckelord

planets and satellites: atmospheres
techniques: spectroscopic
planets and satellites: individuals: WASP-107b
Astronomy
Astronomi

Publikations- och innehållstyp

vet (ämneskategori)
ovr (ämneskategori)

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