English

MOA-2011-BLG-293Lb: First Microlensing Planet possibly in the Habitable Zone

Earth and Planetary Astrophysics 2015-06-17 v3

Abstract

We used Keck adaptive optics observations to identify the first planet discovered by microlensing to lie in or near the habitable zone, i.e., at projected separation r=1.1±0.1r_\perp=1.1\pm 0.1\,AU from its ML=0.86±0.06MM_{L}=0.86\pm 0.06\,M_\odot host, being the highest microlensing mass definitely identified. The planet has a mass mp=4.8±0.3MJupm_p = 4.8\pm 0.3\,M_{\rm Jup}, and could in principle have habitable moons. This is also the first planet to be identified as being in the Galactic bulge with good confidence: DL=7.72±0.44D_L=7.72\pm 0.44 kpc. The planet/host masses and distance were previously not known, but only estimated using Bayesian priors based on a Galactic model (Yee et al. 2012). These estimates had suggested that the planet might be a super-Jupiter orbiting an M dwarf, a very rare class of planets. We obtained high-resolution JHKJHK images using Keck adaptive optics to detect the lens and so test this hypothesis. We clearly detect light from a G dwarf at the position of the event, and exclude all interpretations other than that this is the lens with high confidence (95%), using a new astrometric technique. The calibrated magnitude of the planet host star is HL=19.16±0.13H_{L}=19.16\pm 0.13. We infer the following probabilities for the three possible orbital configurations of the gas giant planet: 53% to be in the habitable zone, 35% to be near the habitable zone, and 12% to be beyond the snow line, depending on the atmospherical conditions and the uncertainties on the semimajor axis.

Keywords

Cite

@article{arxiv.1310.3706,
  title  = {MOA-2011-BLG-293Lb: First Microlensing Planet possibly in the Habitable Zone},
  author = {V. Batista and J. -P. Beaulieu and A. Gould and D. P. Bennett and J. C Yee and A. Fukui and B. S. Gaudi and T. Sumi and A. Udalski},
  journal= {arXiv preprint arXiv:1310.3706},
  year   = {2015}
}

Comments

Accepted by ApJ, 21 pages, 4 figures

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