Gemini/GMOS Transmission Spectroscopy of the Grazing Planet Candidate WD 1856+534 b

  • Xu 许 S
  • Diamond-Lowe H
  • MacDonald R
  • et al.
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Abstract

WD 1856+534 b is a Jupiter-sized, cool giant planet candidate transiting the white dwarf WD 1856+534 . Here, we report an optical transmission spectrum of WD 1856+534 b obtained from ten transits using the Gemini Multi-Object Spectrograph. This system is challenging to observe due to the faintness of the host star and the short transit duration. Nevertheless, our phase-folded white light curve reached a precision of 0.12%. WD 1856+534 b provides a unique transit configuration compared to other known exoplanets: the planet is 8× larger than its star and occults over half of the stellar disk during mid-transit. Consequently, many standard modeling assumptions do not hold. We introduce the concept of a “limb darkening corrected, time-averaged transmission spectrum” and propose that this is more suitable than ( R p , λ / R s ) 2 for comparisons to atmospheric models for planets with grazing transits. We also present a modified radiative transfer prescription. Though the transmission spectrum shows no prominent absorption features, it is sufficiently precise to constrain the mass of WD 1856+534 b to be >0.84 M J (to 2 σ confidence), assuming a clear atmosphere and a Jovian composition. High-altitude cloud decks can allow lower masses. WD 1856+534 b could have formed either as a result of common envelope evolution or migration under the Kozai–Lidov mechanism. Further studies of WD 1856+534 b, alongside new dedicated searches for substellar objects around white dwarfs, will shed further light on the mysteries of post-main-sequence planetary systems.

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APA

Xu 许, S. 偲艺, Diamond-Lowe, H., MacDonald, R. J., Vanderburg, A., Blouin, S., Dufour, P., … Lewis, N. K. (2021). Gemini/GMOS Transmission Spectroscopy of the Grazing Planet Candidate WD 1856+534 b. The Astronomical Journal, 162(6), 296. https://doi.org/10.3847/1538-3881/ac2d26

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