2MASS J13243553+6358281 Is an Early T-type Planetary-mass Object in the AB Doradus Moving Group

We present new radial velocity and trigonometric distance measurements indicating that the unusually red and photometrically variable T2 dwarf 2MASS J13243553+6358281 is a member of the young (∼150 Myr) AB Doradus moving group (ABDMG) based on its space velocity. We estimate its model-dependent mass...

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Veröffentlicht in:Astrophysical journal. Letters 2018-02, Vol.854 (2), p.L27
Hauptverfasser: Gagné, Jonathan, Allers, Katelyn N., Theissen, Christopher A., Faherty, Jacqueline K., Gagliuffi, Daniella Bardalez, Artigau, Étienne
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Sprache:eng
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Zusammenfassung:We present new radial velocity and trigonometric distance measurements indicating that the unusually red and photometrically variable T2 dwarf 2MASS J13243553+6358281 is a member of the young (∼150 Myr) AB Doradus moving group (ABDMG) based on its space velocity. We estimate its model-dependent mass in the range 11-12 MJup at the age of the ABDMG, and its trigonometric distance of 12.7 1.5 pc makes it one of the nearest known isolated planetary-mass objects. The unusually red continuum of 2MASS J13243553+6358281 in the near-infrared was previously suspected to be caused by an unresolved L + T brown dwarf binary, although it was never observed with high spatial resolution imaging. This new evidence of youth suggests that a low surface gravity may be sufficient to explain this peculiar feature. Using the new parallax we find that its absolute J-band magnitude is ∼0.4 mag fainter than equivalent-type field brown dwarfs, suggesting that the binary hypothesis is unlikely. The fundamental properties of 2MASS J13243553+6358281 follow the spectral type sequence of other known high-likelihood members of the ABDMG. The effective temperature of 2MASS J13243553+6358281 provides the first precise constraint on the L/T transition at a known young age and indicates that it happens at a temperature of ∼1150 K at ∼150 Myr, compared to ∼1250 K for field brown dwarfs.
ISSN:2041-8205
2041-8213
DOI:10.3847/2041-8213/aaacfd