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    LBT transmission spectroscopy of HAT-P-12b

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    Author
    Yan, F.
    Espinoza, N.
    Molaverdikhani, K.
    Henning, Th.
    Mancini, L.
    Mallonn, M.
    Rackham, B. V.
    Apai, D.
    Jordán, A.
    Mollière, P.
    Chen, G.
    Carone, L.
    Reiners, A.
    Show allShow less
    Affiliation
    Univ Arizona, Dept Astron Steward Observ
    Univ Arizona, Lunar & Planetary Lab
    Issue Date
    2020-10-08
    Keywords
    planets and satellites: atmospheres
    techniques: spectroscopic
    stars: atmospheres
    planets and satellites: individual: HAT-P-12b
    
    Metadata
    Show full item record
    Publisher
    EDP SCIENCES S A
    Citation
    Yan, F., Espinoza, N., Molaverdikhani, K., Henning, T., Mancini, L., Mallonn, M., ... & Reiners, A. (2020). LBT transmission spectroscopy of HAT-P-12b: Confirmation of a cloudy atmosphere with no significant alkali features. Astronomy & Astrophysics, 642, A98.
    Journal
    ASTRONOMY & ASTROPHYSICS
    Rights
    © ESO 2020.
    Collection Information
    This item from the UA Faculty Publications collection is made available by the University of Arizona with support from the University of Arizona Libraries. If you have questions, please contact us at repository@u.library.arizona.edu.
    Abstract
    The hot sub-Saturn-mass exoplanet HAT-P-12b is an ideal target for transmission spectroscopy because of its inflated radius. We observed one transit of the planet with the multi-object double spectrograph (MODS) on the Large Binocular Telescope (LBT) with the binocular mode and obtained an atmosphere transmission spectrum with a wavelength coverage of similar to 0.4-0.9 mu m. The spectrum is relatively flat and does not show any significant sodium or potassium absorption features. Our result is consistent with the revised Hubble Space Telescope (HST) transmission spectrum of a previous work, except that the HST result indicates a tentative detection of potassium. The potassium discrepancy could be the result of statistical fluctuation of the HST dataset. We fit the planetary transmission spectrum with an extensive grid of cloudy models and confirm the presence of high-altitude clouds in the planetary atmosphere. The fit was performed on the combined LBT and HST spectrum, which has an overall wavelength range of 0.4-1.6 mu m. The LBT/MODS spectrograph has unique advantages in transmission spectroscopy observations because it can cover a wide wavelength range with a single exposure and acquire two sets of independent spectra simultaneously.
    ISSN
    0004-6361
    EISSN
    1432-0746
    DOI
    10.1051/0004-6361/201937265
    Version
    Final published version
    ae974a485f413a2113503eed53cd6c53
    10.1051/0004-6361/201937265
    Scopus Count
    Collections
    UA Faculty Publications

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