Early Release Science of the exoplanet WASP-39b with JWST NIRCam
Abstract
Measuring the metallicity and carbon-to-oxygen (C/O) ratio in exoplanet atmospheres is a fundamental step towards constraining the dominant chemical processes at work and, if in equilibrium, revealing planet formation histories. Transmission spectroscopy provides the necessary means by constraining the abundances of oxygen- and carbon-bearing species; however, this requires broad wavelength coverage, moderate spectral resolution, and high precision that, together, are not achievable with previous observatories. Now that JWST has commenced science operations, we are able to observe exoplanets at previously uncharted wavelengths and spectral resolutions. Here we report time-series observations of the transiting exoplanet WASP-39b using JWST's Near InfraRed Camera (NIRCam). The long-wavelength spectroscopic and short-wavelength photometric light curves span 2.0 - 4.0 m, exhibit minimal systematics, and reveal well-defined molecular absorption features in the planet's spectrum. Specifically, we detect gaseous HO in the atmosphere and place an upper limit on the abundance of CH. The otherwise prominent CO feature at 2.8 m is largely masked by HO. The best-fit chemical equilibrium models favour an atmospheric metallicity of 1-100 solar (i.e., an enrichment of elements heavier than helium relative to the Sun) and a sub-stellar carbon-to-oxygen (C/O) ratio. The inferred high metallicity and low C/O ratio may indicate significant accretion of solid materials during planet formation or disequilibrium processes in the upper atmosphere.
Keywords
Cite
@article{arxiv.2211.10489,
title = {Early Release Science of the exoplanet WASP-39b with JWST NIRCam},
author = {Eva-Maria Ahrer and Kevin B. Stevenson and Megan Mansfield and Sarah E. Moran and Jonathan Brande and Giuseppe Morello and Catriona A. Murray and Nikolay K. Nikolov and Dominique J. M. Petit dit de la Roche and Everett Schlawin and Peter J. Wheatley and Sebastian Zieba and Natasha E. Batalha and Mario Damiano and Jayesh M Goyal and Monika Lendl and Joshua D. Lothringer and Sagnick Mukherjee and Kazumasa Ohno and Natalie M. Batalha and Matthew P. Battley and Jacob L. Bean and Thomas G. Beatty and Björn Benneke and Zachory K. Berta-Thompson and Aarynn L. Carter and Patricio E. Cubillos and Tansu Daylan and Néstor Espinoza and Peter Gao and Neale P. Gibson and Samuel Gill and Joseph Harrington and Renyu Hu and Laura Kreidberg and Nikole K. Lewis and Michael R. Line and Mercedes López-Morales and Vivien Parmentier and Diana K. Powell and David K. Sing and Shang-Min Tsai and Hannah R Wakeford and Luis Welbanks and Munazza K. Alam and Lili Alderson and Natalie H. Allen and David R. Anderson and Joanna K. Barstow and Daniel Bayliss and Taylor J. Bell and Jasmina Blecic and Edward M. Bryant and Matthew R. Burleigh and Ludmila Carone and S. L. Casewell and Quentin Changeat and Katy L. Chubb and Ian J. M. Crossfield and Nicolas Crouzet and Leen Decin and Jean-Michel Désert and Adina D. Feinstein and Laura Flagg and Jonathan J. Fortney and John E. Gizis and Kevin Heng and Nicolas Iro and Eliza M. -R. Kempton and Sarah Kendrew and James Kirk and Heather A. Knutson and Thaddeus D. Komacek and Pierre-Olivier Lagage and Jérémy Leconte and Jacob Lustig-Yaeger and Ryan J. MacDonald and Luigi Mancini and E. M. May and N. J. Mayne and Yamila Miguel and Thomas Mikal-Evans and Karan Molaverdikhani and Enric Palle and Caroline Piaulet and Benjamin V. Rackham and Seth Redfield and Laura K. Rogers and Pierre-Alexis Roy and Zafar Rustamkulov and Evgenya L. Shkolnik and Kristin S. Sotzen and Jake Taylor and P. Tremblin and Gregory S. Tucker and Jake D. Turner and Miguel de Val-Borro and Olivia Venot and Xi Zhang},
journal= {arXiv preprint arXiv:2211.10489},
year = {2023}
}
Comments
35 pages, 13 figures, 3 tables, Nature, accepted