English

Photochemically-produced SO$_2$ in the atmosphere of WASP-39b

Earth and Planetary Astrophysics 2023-05-24 v2 Solar and Stellar Astrophysics

Abstract

Photochemistry is a fundamental process of planetary atmospheres that regulates the atmospheric composition and stability. However, no unambiguous photochemical products have been detected in exoplanet atmospheres to date. Recent observations from the JWST Transiting Exoplanet Early Release Science Program found a spectral absorption feature at 4.05 μ\mum arising from SO2_2 in the atmosphere of WASP-39b. WASP-39b is a 1.27-Jupiter-radii, Saturn-mass (0.28 MJ_J) gas giant exoplanet orbiting a Sun-like star with an equilibrium temperature of \sim1100 K. The most plausible way of generating SO2_2 in such an atmosphere is through photochemical processes. Here we show that the SO2_2 distribution computed by a suite of photochemical models robustly explains the 4.05 μ\mum spectral feature identified by JWST transmission observations with NIRSpec PRISM (2.7σ\sigma) and G395H (4.5σ\sigma). SO2_2 is produced by successive oxidation of sulphur radicals freed when hydrogen sulphide (H2_2S) is destroyed. The sensitivity of the SO2_2 feature to the enrichment of the atmosphere by heavy elements (metallicity) suggests that it can be used as a tracer of atmospheric properties, with WASP-39b exhibiting an inferred metallicity of \sim10×\times solar. We further point out that SO2_2 also shows observable features at ultraviolet and thermal infrared wavelengths not available from the existing observations.

Keywords

Cite

@article{arxiv.2211.10490,
  title  = {Photochemically-produced SO$_2$ in the atmosphere of WASP-39b},
  author = {Shang-Min Tsai and Elspeth K. H. Lee and Diana Powell and Peter Gao and Xi Zhang and Julianne Moses and Eric Hébrard and Olivia Venot and Vivien Parmentier and Sean Jordan and Renyu Hu and Munazza K. Alam and Lili Alderson and Natalie M. Batalha and Jacob L. Bean and Björn Benneke and Carver J. Bierson and Ryan P. Brady and Ludmila Carone and Aarynn L. Carter and Katy L. Chubb and Julie Inglis and Jérémy Leconte and Mercedes Lopez-Morales and Yamila Miguel and Karan Molaverdikhani and Zafar Rustamkulov and David K. Sing and Kevin B. Stevenson and Hannah R Wakeford and Jeehyun Yang and Keshav Aggarwal and Robin Baeyens and Saugata Barat and Miguel de Val Borro and Tansu Daylan and Jonathan J. Fortney and Kevin France and Jayesh M Goyal and David Grant and James Kirk and Laura Kreidberg and Amy Louca and Sarah E. Moran and Sagnick Mukherjee and Evert Nasedkin and Kazumasa Ohno and Benjamin V. Rackham and Seth Redfield and Jake Taylor and Pascal Tremblin and Channon Visscher and Nicole L. Wallack and Luis Welbanks and Allison Youngblood and Eva-Maria Ahrer and Natasha E. Batalha and Patrick Behr and Zachory K. Berta-Thompson and Jasmina Blecic and S. L. Casewell and Ian J. M. Crossfield and Nicolas Crouzet and Patricio E. Cubillos and Leen Decin and Jean-Michel Désert and Adina D. Feinstein and Neale P. Gibson and Joseph Harrington and Kevin Heng and Thomas Henning and Eliza M. -R. Kempton and Jessica Krick and Pierre-Olivier Lagage and Monika Lendl and Michael Line and Joshua D. Lothringer and Megan Mansfield and N. J. Mayne and Thomas Mikal-Evans and Enric Palle and Everett Schlawin and Oliver Shorttle and Peter J. Wheatley and Sergei N. Yurchenko},
  journal= {arXiv preprint arXiv:2211.10490},
  year   = {2023}
}

Comments

39 pages, 14 figures, accepted to be published in Nature