OGLE-2016-BLG-1266: A Probable Brown-Dwarf/Planet Binary at the Deuterium Fusion Limit
arXiv:1802.09563 · doi:10.3847/1538-4357/aabf3f
Abstract
We report the discovery, via the microlensing method, of a new very-low-mass binary system. By combining measurements from Earth and from the Spitzer telescope in Earth-trailing orbit, we are able to measure the microlensing parallax of the event, and find that the lens likely consists of an + super-Jupiter / brown-dwarf pair. The binary is located at a distance of kpc in the Galactic Plane, and the components have a projected separation of AU. Two alternative solutions with much lower likelihoods are also discussed, an 8- and 6- model and a 90- and 70- model. Although disfavored at the 3- and 5- levels, these alternatives cannot be rejected entirely. We show how the more-massive of these models could be tested with future direct imaging.
23 pages, 7 figures, submitted to AAS Journals
References in corpus (26)
- The Galaxy in Context: Structural, Kinematic and Integrated Properties
- No large population of unbound or wide-orbit Jupiter-mass planets
- Planets around evolved intermediate-mass stars. I. Two substellar companions in the open clusters NGC 2423 and NGC 4349
- Individual Dynamical Masses of Ultracool Dwarfs
- MOA-cam3: a wide-field mosaic CCD camera for a gravitational microlensing survey in New Zealand
- Evidence of an Upper Bound on the Masses of Planets and its Implications for Giant Planet Formation
- Korea Microlensing Telescope Network Microlensing Events from 2015: Event-Finding Algorithm, Vetting, and Photometry
- Extended-Source Effect and Chromaticity in Two-Point-Mass Microlensing
- Hexadecapole Approximation in Planetary Microlensing
- Pathway to the Galactic Distribution of Planets: Combined Spitzer and Ground-Based Microlens Parallax Measurements of 21 Single-Lens Events
- Criteria for Sample Selection to Maximize Planet Sensitivity and Yield from Space-Based Microlens Parallax Surveys
- An Earth-mass Planet in a 1-AU Orbit around an Ultracool Dwarf
- A Neptune-mass Free-floating Planet Candidate Discovered by Microlensing Surveys
- BANYAN. IX. The Initial Mass Function and Planetary-Mass Object Space Density of the TW Hya Association
- Spectroscopy of brown dwarf candidates in IC 348 and the determination of its substellar IMF down to planetary masses
- The Young L Dwarf 2MASS J11193254-1137466 is a Planetary-Mass Binary
- Mass Measurements of Isolated Objects from Space-based Microlensing
- Is the Galactic bulge devoid of planets?
- OGLE-2015-BLG-1482L: the first isolated low-mass microlens in the Galactic bulge
- Microlensing by Kuiper, Oort, and Free-Floating Planets
- OGLE-2016-BLG-0168 Binary Microlensing Event: Prediction and Confirmation of the Micorlens Parallax Effect from Space-based Observation
- OGLE-2016-BLG-1469L: Microlensing Binary Composed of Brown Dwarfs
- Microlensing Parallax for Observers in Heliocentric Motion
- OGLE-2013-BLG-0578L: Microlensing Binary Composed of A Brown Dwarf And An M Dwarf
- OGLE-2014-BLG-1112LB: A Microlensing Brown Dwarf Detected Through the Channel of a Gravitational Binary-Lens Event
- Microlensing Observations Rapid Search for Exoplanets: MORSE code for GPUs
Cited by in corpus (8)
- Parallax of OGLE-2018-BLG-0596: A Low-mass-ratio Planet around an M-dwarf
- MOA-bin-29b : A Microlensing Gas Giant Planet Orbiting a Low-mass Host Star
- Two Jupiter-Mass Planets Discovered by the KMTNet Survey in 2017
- Spitzer Microlensing of MOA-2016-BLG-231L : A Counter-Rotating Brown Dwarf Binary in the Galactic Disk
- Pixel Level Decorrelation in Service of the \textit{Spitzer} Microlens Parallax Survey
- Precision measurement of a brown dwarf mass in a binary system in the microlensing event OGLE-2019-BLG-0033/MOA-2019-BLG-035
- OGLE-2017-BLG-1038: A Possible Brown-dwarf Binary Revealed by Spitzer Microlensing Parallax
- KMT-2021-BLG-1150Lb: Microlensing planet detected through a densely covered planetary-caustic signal