English

Variability in a Young, L/T Transition Planetary-Mass Object

Earth and Planetary Astrophysics 2015-11-11 v1

Abstract

As part of our ongoing NTT SoFI survey for variability in young free-floating planets and low mass brown dwarfs, we detect significant variability in the young, free-floating planetary mass object PSO J318.5-22, likely due to rotational modulation of inhomogeneous cloud cover. A member of the 23±\pm3 Myr β\beta Pic moving group, PSO J318.5-22 has Teff_\mathrm{eff} = 116040+30^{+30}_{-40} K and a mass estimate of 8.3±\pm0.5 MJup_{Jup} for a 23±\pm3 Myr age. PSO J318.5-22 is intermediate in mass between 51 Eri b and β\beta Pic b, the two known exoplanet companions in the β\beta Pic moving group. With variability amplitudes from 7-10%\% in JS_{S} at two separate epochs over 3-5 hour observations, we constrain the rotational period of this object to >>5 hours. In KS_{S}, we marginally detect a variability trend of up to 3%\% over a 3 hour observation. This is the first detection of weather on an extrasolar planetary mass object. Among L dwarfs surveyed at high-photometric precision (<<3%\%) this is the highest amplitude variability detection. Given the low surface gravity of this object, the high amplitude preliminarily suggests that such objects may be more variable than their high mass counterparts, although observations of a larger sample is necessary to confirm this. Measuring similar variability for directly imaged planetary companions is possible with instruments such as SPHERE and GPI and will provide important constraints on formation. Measuring variability at multiple wavelengths can help constrain cloud structure.

Keywords

Cite

@article{arxiv.1510.07625,
  title  = {Variability in a Young, L/T Transition Planetary-Mass Object},
  author = {Beth A. Biller and Johanna Vos and Mariangela Bonavita and Esther Buenzli and Claire Baxter and Ian J. M. Crossfield and Katelyn Allers and Michael C. Liu and Mickaël Bonnefoy and Niall Deacon and Wolfgang Brandner and Joshua E. Schlieder and Trent Dupuy and Taisiya Kopytova and Elena Manjavacas and France Allard and Derek Homeier and Thomas Henning},
  journal= {arXiv preprint arXiv:1510.07625},
  year   = {2015}
}

Comments

6 pages, 4 figures, accepted to ApJ letters

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