Determining the Physical Lens Parameters of the Binary Gravitational Microlensing Event MOA-2009-BLG-016
arXiv:1006.1396 · doi:10.1088/0004-637X/717/1/435
Abstract
We report the result of the analysis of the light curve of the microlensing event MOA-2009-BLG-016. The light curve is characterized by a short-duration anomaly near the peak and an overall asymmetry. We find that the peak anomaly is due to a binary companion to the primary lens and the asymmetry of the light curve is explained by the parallax effect caused by the acceleration of the observer over the course of the event due to the orbital motion of the Earth around the Sun. In addition, we detect evidence for the effect of the finite size of the source near the peak of the event, which allows us to measure the angular Einstein radius of the lens system. The Einstein radius combined with the microlens parallax allows us to determine the total mass of the lens and the distance to the lens. We identify three distinct classes of degenerate solutions for the binary lens parameters, where two are manifestations of the previously identified degeneracies of close/wide binaries and positive/negative impact parameters, while the third class is caused by the symmetric cycloid shape of the caustic. We find that, for the best-fit solution, the estimated mass of the lower-mass component of the binary is (0.04 +- 0.01) M_sun, implying a brown-dwarf companion. However, there exists a solution that is worse only by Δχ^2 ~ 3 for which the mass of the secondary is above the hydrogen-burning limit. Unfortunately, resolving these two degenerate solutions will be difficult as the relative lens-source proper motions for both are similar and small (~ 1 mas/yr) and thus the lens will remain blended with the source for the next several decades.
7 pages, 2 tables, and 5 figures
References in corpus (15)
- The angular size of dwarf stars and subgiants - Surface brightness relations calibrated by interferometry
- Discovery of a Jupiter/Saturn Analog with Gravitational Microlensing
- A Jovian-mass Planet in Microlensing Event OGLE-2005-BLG-071
- A Low-Mass Planet with a Possible Sub-Stellar-Mass Host in Microlensing Event MOA-2007-BLG-192
- OGLE-2005-BLG-071Lb, the Most Massive M-Dwarf Planetary Companion?
- Modelling the Galactic bar using OGLE-II Red Clump Giant Stars
- Microlensing Event MOA-2007-BLG-400: Exhuming the Buried Signature of a Cool, Jovian-Mass Planet
- The Extreme Microlensing Event OGLE-2007-BLG-224: Terrestrial Parallax Observation of a Thick-Disk Brown Dwarf
- Identification of the OGLE-2003-BLG-235/MOA-2003-BLG-53 Planetary Host Star
- OGLE-2003-BLG-238: Microlensing Mass Estimate of an Isolated Star
- Extreme Magnification Microlensing Event OGLE-2008-BLG-279: Strong Limits on Planetary Companions to the Lens Star
- Full characterization of binary-lens event OGLE-2002-BLG-069 from PLANET observations
- The Mass of the MACHO-LMC-5 Lens Star
- Potential Direct Single-Star Mass Measurement
- Mass measurement of a single unseen star and planetary detection efficiency for OGLE 2007-BLG-050
Cited by in corpus (5)
- Astrophysical Applications of Gravitational Microlensing
- MOA-2006-BLG-074: recognizing xallarap contaminants in planetary microlensing
- KMT-2019-BLG-0797: binary-lensing event occurring on a binary stellar system
- OGLE-2009-BLG-023/MOA-2009-BLG-028: Characterization of a Binary Microlensing Event Based on Survey Data
- Determining neutron star masses with weak microlensing