Parallax Microlensing Events in the OGLE II Database Toward the Galactic Bulge
arXiv:astro-ph/0108214 · doi:10.1046/j.1365-8711.2002.05427.x
Abstract
We present a systematic search for parallax microlensing events among a total of 512 microlensing candidates in the OGLE II database for the 1997-1999 seasons. We fit each microlensing candidate with both the standard microlensing model and also a parallax model that accounts for the Earth's motion around the Sun. We then search for the parallax signature by comparing the chi^2 of the standard and parallax models. For the events which show a significant improvement, we further use the `duration' of the event and the signal-to-noise ratio as criteria to separate true parallax events from other noisy microlensing events. We have discovered one convincing new candidate, sc33_4505, and seven other marginal cases. The convincing candidate (sc33_4505) is caused by a slow-moving, and likely low-mass, object, similar to other known parallax events. We found that irregular sampling and gaps between observing seasons hamper the recovery of parallax events. We have also searched for long-duration events that do not show parallax signatures. The lack of parallax effects in a microlensing event puts a lower-limit on the Einstein radius projected onto the observer plane, which in turn imposes a lower limit on the lens mass divided by the relative lens-source parallax. Most of the constraints are however quite weak.
10 pages, 10 figures, submitted to MNRAS
References in corpus (3)
- Real-Time Difference Imaging Analysis of MOA Galactic Bulge Observations During 2000
- Optical Gravitational Lensing Experiment. OGLE-1999-BUL-32: the Longest Ever Microlensing Event -- Evidence for a Stellar Mass Black Hole?
- Optical Gravitational Lensing Experiment. OGLE 2000-BUL-43: A Spectacular Ongoing Parallax Microlensing Event. Difference Image Analysis
Cited by in corpus (21)
- A Cold Neptune-Mass Planet OGLE-2007-BLG-368Lb: Cold Neptunes Are Common
- Gravitational Microlensing Events Due to Stellar Mass Black Holes
- Acceleration and Parallax Effects in Gravitational Microlensing
- Characterization of Gravitational Microlensing Planetary Host Stars
- Discovery and Mass Measurements of a Cold, 10-Earth Mass Planet and Its Host Star
- Astrophysical Applications of Gravitational Microlensing
- Microlensing optical depth toward the Galactic Bulge using bright sources from OGLE-II
- MOA 2003-BLG-37: A Bulge Jerk-Parallax Microlens Degeneracy
- The First Neptune Analog or Super-Earth with Neptune-like Orbit: MOA-2013-BLG-605Lb
- Potential Direct Single-Star Mass Measurement
- Mass measurement of a single unseen star and planetary detection efficiency for OGLE 2007-BLG-050
- Optical Gravitational Lensing Experiment. OGLE-1999-BUL-19: The First Multi-Peak Parallax Event
- Detection of Extrasolar Planets by Gravitational Microlensing
- Discovery of a Gas giant Planet in Microlensing Event OGLE-2014-BLG-1760
- Microlens Parallaxes of Binary Lenses Measured from a Satellite
- Rapidly Rotating Lenses: Repeating features in the lightcurves of short period binary microlenses
- The Nature of Parallax Microlensing Events Towards the Galactic Bulge
- Direct Lens Imaging of Galactic Bulge Microlensing Events
- Planetary Microlensing: From Prediction to Discovery
- Measuring transverse velocities in gravitationally lensed extragalactic systems using an annual parallax effect
- Constraining the Location of Microlensing Objects towards the LMC through Parallax Measurement in EAGLE Observations