Improved Detection Rates for Close Binaries Via Astrometric Observations of Gravitational Microlensing Events
arXiv:astro-ph/9901198 · doi:10.1086/307882
Abstract
In addition to constructing a Galactic matter mass function free from the bias induced by the hydrogen-burning limit, gravitational microlensing allows one to construct a mass function which is less affected by the problem of unresolved binaries (Gaudi & Gould). However, even with the method of microlensing, the photometric detection of binaries is limited to binary systems with relatively large separations of of their combined Einstein ring radius, and thus the mass function is still not totally free from the problem of unresolved binaries. In this paper, we show that by detecting distortions of the astrometric ellipse of a microlensing event with high precision instruments such as the {\it Space Interferometry Mission}, one can detect close binaries at a much higher rate than by the photometric method. We find that by astrometrically observing microlensing events, of binaries with separations of can be detected with the detection threshold of 3%. The proposed astrometric method is especially efficient at detecting very close binaries. With a detection threshold of 3% and a rate of 10%, one can astrometrically detect binaries with separations down to .
total 14 pages, including 5 Figures and no Table (For figure 1, please send a request mail to [email protected]), accepted to ApJ (Vol 525, 000), updated version
References in corpus (3)
Cited by in corpus (6)
- Measuring the Remnant Mass Function of the Galactic Bulge
- Gravitational Microlensing Near Caustics I: Folds
- Applications of Microlensing to Stellar Astrophysics
- Astrometric Properties of Gravitational Binary-Microlens Events and Their Applications
- On the Astrometric Behavior of Binary Microlensing Events
- Microlensing of strongly interacting binary systems