MIT Libraries logoDSpace@MIT

MIT
View Item 
  • DSpace@MIT Home
  • MIT Open Access Articles
  • MIT Open Access Articles
  • View Item
  • DSpace@MIT Home
  • MIT Open Access Articles
  • MIT Open Access Articles
  • View Item
JavaScript is disabled for your browser. Some features of this site may not work without it.

The First Near-infrared Transmission Spectrum of HIP 41378 f, A Low-mass Temperate Jovian World in a Multiplanet System

Author(s)
Alam, Munazza K; Kirk, James; Dressing, Courtney D; López-Morales, Mercedes; Ohno, Kazumasa; Gao, Peter; Akinsanmi, Babatunde; Santerne, Alexandre; Grouffal, Salomé; Adibekyan, Vardan; Barros, Susana CC; Buchhave, Lars A; Crossfield, Ian JM; Dai, Fei; Deleuil, Magali; Giacalone, Steven; Lillo-Box, Jorge; Marley, Mark; Mayo, Andrew W; Mortier, Annelies; Santos, Nuno C; Sousa, Sérgio G; Turtelboom, Emma V; Wheatley, Peter J; Vanderburg, Andrew M; ... Show more Show less
Thumbnail
DownloadPublished version (887.0Kb)
Publisher with Creative Commons License

Publisher with Creative Commons License

Creative Commons Attribution

Terms of use
Creative Commons Attribution 4.0 International License https://creativecommons.org/licenses/by/4.0
Metadata
Show full item record
Abstract
<jats:title>Abstract</jats:title> <jats:p>We present a near-infrared transmission spectrum of the long-period (<jats:italic>P</jats:italic> = 542 days), temperate (<jats:italic>T</jats:italic> <jats:sub>eq</jats:sub> = 294 K) giant planet HIP 41378 f obtained with the Wide-Field Camera 3 instrument aboard the Hubble Space Telescope (HST). With a measured mass of 12 ± 3 <jats:italic>M</jats:italic> <jats:sub>⊕</jats:sub> and a radius of 9.2 ± 0.1 <jats:italic>R</jats:italic> <jats:sub>⊕</jats:sub>, HIP 41378 f has an extremely low bulk density (0.09 ± 0.02 g cm<jats:sup>−3</jats:sup>). We measure the transit depth with a median precision of 84 ppm in 30 spectrophotometric channels with uniformly sized widths of 0.018 <jats:italic>μ</jats:italic>m. Within this level of precision, the spectrum shows no evidence of absorption from gaseous molecular features between 1.1 and 1.7 <jats:italic>μ</jats:italic>m. Comparing the observed transmission spectrum to a suite of 1D radiative-convective-thermochemical-equilibrium forward models, we rule out clear, low-metallicity atmospheres and find that the data prefer high-metallicity atmospheres or models with an additional opacity source, such as high-altitude hazes and/or circumplanetary rings. We explore the ringed scenario for HIP 41378 f further by jointly fitting the K2 and HST light curves to constrain the properties of putative rings. We also assess the possibility of distinguishing between hazy, ringed, and high-metallicity scenarios at longer wavelengths with the James Webb Space Telescope. HIP 41378 f provides a rare opportunity to probe the atmospheric composition of a cool giant planet spanning the gap in temperature, orbital separation, and stellar irradiation between the solar system giants, directly imaged planets, and the highly irradiated hot Jupiters traditionally studied via transit spectroscopy.</jats:p>
Date issued
2022-03-01
URI
https://hdl.handle.net/1721.1/142263
Department
Massachusetts Institute of Technology. Department of Physics; MIT Kavli Institute for Astrophysics and Space Research
Journal
The Astrophysical Journal Letters
Publisher
American Astronomical Society
Citation
Alam, Munazza K, Kirk, James, Dressing, Courtney D, López-Morales, Mercedes, Ohno, Kazumasa et al. 2022. "The First Near-infrared Transmission Spectrum of HIP 41378 f, A Low-mass Temperate Jovian World in a Multiplanet System." The Astrophysical Journal Letters, 927 (1).
Version: Final published version

Collections
  • MIT Open Access Articles

Browse

All of DSpaceCommunities & CollectionsBy Issue DateAuthorsTitlesSubjectsThis CollectionBy Issue DateAuthorsTitlesSubjects

My Account

Login

Statistics

OA StatisticsStatistics by CountryStatistics by Department
MIT Libraries
PrivacyPermissionsAccessibilityContact us
MIT
Content created by the MIT Libraries, CC BY-NC unless otherwise noted. Notify us about copyright concerns.