Atmospheric Waves Driving Variability and Cloud Modulation on a Planetary-mass Object

被引:3
作者
Plummer, Michael K. [1 ,2 ]
Wang, Ji [2 ]
Artigau, Etienne [3 ,4 ]
Doyon, Rene [4 ,5 ]
Suarez, Genaro [6 ]
机构
[1] US Air Force Acad, Dept Phys & Meteorol, 2354 Fairchild Dr, Air Force Acad, CO 80840 USA
[2] Ohio State Univ, Dept Astron, 140 West 18th Ave, Columbus, OH 43210 USA
[3] Univ Montreal, Dept Phys, IREX, Montreal, PQ H3C 3J7, Canada
[4] Univ Montreal, Observ Mont Megant, Montreal, PQ H3C 3J7, Canada
[5] Univ Montreal, Inst Trottier Rech Exoplanetes, Dept Phys, Montreal, PQ, Canada
[6] Amer Museum Nat Hist, Dept Astrophys, Cent Pk West 79th St, New York, NY 10024 USA
基金
美国国家科学基金会;
关键词
BROWN DWARFS; T-DWARFS; SIMP J013656.5+093347; LUHMAN; 16AB; HOT-SPOTS; CIRCULATION; DISCOVERY; TRANSITION; YOUNG; COMPANION;
D O I
10.3847/1538-4357/ad4f89
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Planetary-mass objects and brown dwarfs at the transition (T eff similar to 1300 K) from relatively red L dwarfs to bluer mid-T dwarfs show enhanced spectrophotometric variability. Multiepoch observations support atmospheric planetary-scale (Kelvin or Rossby) waves as the primary source of this variability; however, large spots associated with the precipitation of silicate and metal clouds have also been theorized and suggested by Doppler imaging. We applied both wave and spotted models to fit near-infrared (NIR), multiband (Y/J/H/K) photometry of SIMP J013656.5+093347 (hereafter SIMP0136) collected at the Canada-France-Hawaii Telescope using the Wide-field InfraRed Camera. SIMP0136 is a planetary-mass object (12.7 +/- 1.0 M J) at the L/T transition (T2 +/- 0.5) known to exhibit light-curve evolution over multiple rotational periods. We measure the maximum peak-to-peak variability of 6.17% +/- 0.46%, 6.45% +/- 0.33%, 6.51% +/- 0.42%, and 4.33% +/- 0.38% in the Y, J, H, and K bands, respectively, and find evidence that wave models are preferred for all four NIR bands. Furthermore, we determine that the spot size necessary to reproduce the observed variations is larger than the Rossby deformation radius and Rhines scale, which is unphysical. Through the correlation between light curves produced by the waves and associated color variability, we find evidence of planetary-scale, wave-induced cloud modulation and breakup, similar to Jupiter's atmosphere and supported by general circulation models. We also detect a 93.degrees 8 +/- 7.degrees 4 (12.7 sigma) phase shift between the H - K and J - H color time series, providing evidence for complex vertical cloud structure in SIMP0136's atmosphere.
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页数:17
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