English

Observational Evidence for the Effect of Amplification Bias in Gravitational Microlensing Experiments

Astrophysics 2009-10-30 v1

Abstract

Recently Alard\markcite{alard1996} proposed to detect the shift of a star's image centroid, δx\delta x, as a method to identify the lensed source among blended stars. Goldberg & Wo\'zniak\markcite{goldberg1997} actually applied this method to the OGLE-1 database and found that 7 out of 15 events showed significant centroid shifts of δx0.2\delta x \gtrsim 0.2 arcsec. The amount of centroid shift has been estimated theoretically by Goldberg.\markcite{goldberg1997} However, he treated the problem in general and did not apply it to a particular survey or field, and thus based his estimates on simple toy model luminosity functions (i.e., power laws). In this paper, we construct the expected distribution of δx\delta x for Galactic bulge events by using the precise stellar LF observed by Holtzman et al.\markcite{holtzman1998} using HST. Their LF is complete up to MI9.0M_I\sim 9.0 (MV12M_V\sim 12), corresponding to faint M-type stars. In our analysis we find that regular blending cannot produce a large fraction of events with measurable centroid shifts. By contrast, a significant fraction of events would have measurable centroid shifts if they are affected by amplification-bias blending. Therefore, Goldberg & Wo\'zniak's measurements of large centroid shifts for a large fraction of microlensing events confirms the prediction of Han and Alard that a large fraction of Galactic bulge events are affected by amplification-bias blending.

Keywords

Cite

@article{arxiv.astro-ph/9804272,
  title  = {Observational Evidence for the Effect of Amplification Bias in Gravitational Microlensing Experiments},
  author = {Cheongho Han and Youngjin Jeong},
  journal= {arXiv preprint arXiv:astro-ph/9804272},
  year   = {2009}
}

Comments

total 15 pages, including 6 figures, and no Table, submitted to ApJ on Apr 26 1998, email [email protected]