Limits on Stellar and Planetary Companions in Microlensing Event OGLE-1998-BUL-14
Abstract
We present the PLANET photometric data set for \ob14, a high magnification () event alerted by the OGLE collaboration toward the Galactic bulge in 1998. The PLANET data set consists a total of 461 I-band and 139 band points, the majority of which was taken over a three month period. The median sampling interval during this period is about 1 hour, and the scatter over the peak of the event is 1.5%. The excellent data quality and high maximum magnification of this event make it a prime candidate to search for the short duration, low amplitude perturbations that are signatures of a planetary companion orbiting the primary lens. The observed light curve for \ob14 is consistent with a single lens (no companion) within photometric uncertainties. We calculate the detection efficiency of the light curve to lensing companions as a function of the mass ratio and angular separation of the two components. We find that companions of mass ratio are ruled out at the 95% confidence level for projected separations between , where is the Einstein ring radius of the primary lens. Assuming that the primary is a G-dwarf with our detection efficiency for this event is for a companion with the mass and separation of Jupiter and for a companion with the mass and separation of Saturn. Our efficiencies for planets like those around Upsilon And and 14 Her are > 75%.
Keywords
Cite
@article{arxiv.astro-ph/9909325,
title = {Limits on Stellar and Planetary Companions in Microlensing Event OGLE-1998-BUL-14},
author = {M. D. Albrow and J. -P. Beaulieu and J. A. R. Caldwell and D. L. DePoy and M. Dominik and B. S. Gaudi and A. Gould and J. Greenhill and K. Hill and S. Kane and R. Martin and J. Menzies and R. M. Naber and R. W. Pogge and K. R. Pollard and P. D. Sackett and K. C. Sahu and P. Vermaak and R. Watson and A. Williams},
journal= {arXiv preprint arXiv:astro-ph/9909325},
year = {2009}
}
Comments
Data available at http://www.astro.rug.nl/~planet/planetpapers.html 20 pages, 10 figures. Minor changes. ApJ, accepted