English

Early Release Science of the exoplanet WASP-39b with JWST NIRSpec PRISM

Earth and Planetary Astrophysics 2023-03-15 v1 Instrumentation and Methods for Astrophysics Solar and Stellar Astrophysics

Abstract

Transmission spectroscopy of exoplanets has revealed signatures of water vapor, aerosols, and alkali metals in a few dozen exoplanet atmospheres. However, these previous inferences with the Hubble and Spitzer Space Telescopes were hindered by the observations' relatively narrow wavelength range and spectral resolving power, which precluded the unambiguous identification of other chemical species-in particular the primary carbon-bearing molecules. Here we report a broad-wavelength 0.5-5.5 μ\mum atmospheric transmission spectrum of WASP-39 b, a 1200 K, roughly Saturn-mass, Jupiter-radius exoplanet, measured with JWST NIRSpec's PRISM mode as part of the JWST Transiting Exoplanet Community Early Release Science Team program. We robustly detect multiple chemical species at high significance, including Na (19σ\sigma), H2_2O (33σ\sigma), CO2_2 (28σ\sigma), and CO (7σ\sigma). The non-detection of CH4_4, combined with a strong CO2_2 feature, favours atmospheric models with a super-solar atmospheric metallicity. An unanticipated absorption feature at 4μ\mum is best explained by SO2_2 (2.7σ\sigma), which could be a tracer of atmospheric photochemistry. These observations demonstrate JWST's sensitivity to a rich diversity of exoplanet compositions and chemical processes.

Keywords

Cite

@article{arxiv.2211.10487,
  title  = {Early Release Science of the exoplanet WASP-39b with JWST NIRSpec PRISM},
  author = {Z. Rustamkulov and D. K. Sing and S. Mukherjee and E. M. May and J. Kirk and E. Schlawin and M. R. Line and C. Piaulet and A. L. Carter and N. E. Batalha and J. M. Goyal and M. López-Morales and J. D. Lothringer and R. J. MacDonald and S. E. Moran and K. B. Stevenson and H. R. Wakeford and N. Espinoza and J. L. Bean and N. M. Batalha and B. Benneke and Z. K. Berta-Thompson and I. J. M. Crossfield and P. Gao and L. Kreidberg and D. K. Powell and P. E. Cubillos and N. P. Gibson and J. Leconte and K. Molaverdikhani and N. K. Nikolov and V. Parmentier and P. Roy and J. Taylor and J. D. Turner and P. J. Wheatley and K. Aggarwal and E. Ahrer and M. K. Alam and L. Alderson and N. H. Allen and A. Banerjee and S. Barat and D. Barrado and J. K. Barstow and T. J. Bell and J. Blecic and J. Brande and S. Casewell and Q. Changeat and K. L. Chubb and N. Crouzet and T. Daylan and L. Decin and J. Désert and T. Mikal-Evans and A. D. Feinstein and L. Flagg and J. J. Fortney and J. Harrington and K. Heng and Y. Hong and R. Hu and N. Iro and T. Kataria and E. M. -R. Kempton and J. Krick and M. Lendl and J. Lillo-Box and A. Louca and J. Lustig-Yaeger and L. Mancini and M. Mansfield and N. J. Mayne and Y. Miguel and G. Morello and K. Ohno and E. Palle and D. J. M. Petit dit de la Roche and B. V. Rackham and M. Radica and L. Ramos-Rosado and S. Redfield and L. K. Rogers and E. L. Shkolnik and J. Southworth and J. Teske and P. Tremblin and G. S. Tucker and O. Venot and W. C. Waalkes and L. Welbanks and X. Zhang and S. Zieba},
  journal= {arXiv preprint arXiv:2211.10487},
  year   = {2023}
}

Comments

41 pages, 4 main figures, 10 extended data figures, 4 tables. Under review in Nature