Optical Gravitational Lensing Experiment. OGLE-1999-BUL-19: The First Multi-Peak Parallax Event
arXiv:astro-ph/0206503 · doi:10.1046/j.1365-8711.2002.05811.x
Abstract
We describe a highly unusual microlensing event, OGLE-1999-BUL-19, which exhibits multiple peaks in its light curve. The Einstein radius crossing time for this event is approximately one year, which is unusually long. We show that the motion of the Earth induces these multiple peaks in the light curve, since the relative transverse velocity of the lens projected into the observer plane is very small (v = 12.5 km/s). This is the lowest velocity so far published and we believe that this is the first multiple-peak parallax event ever observed. We also believe that this event may be exhibiting slight binary-source signatures in addition to these parallax-induced multiple peaks. With spectroscopic observations it is possible to test this `parallax plus binary-source' hypothesis and (if this hypothesis turns out to be correct) to simultaneously fit both models and obtain a measurement of the lens mass. Furthermore, spectroscopic observations could also supply information regarding the lens properties, possibly providing another avenue for determining the lens mass. We found that most of the I-band blending is probably caused by light from the lens or a binary companion to the source. However, in the V-band, there appears to be a second blended source 0.35" away from the lensed source. HST observations will be very useful for understanding the nature of the blends. We also suggest that a radial velocity survey of all parallax events will be very useful for further constraining the lensing kinematics and understanding the origins of these events and the excess of long events toward the bulge.
36 pages, 7 figures. Accepted for publication in MNRAS
References in corpus (8)
- 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?
- Resolving gravitational microlensing events with long-baseline optical interferometry. Prospects for the ESO Very Large Telescope Interferometer
- Optical Gravitational Lensing Experiment. OGLE 2000-BUL-43: A Spectacular Ongoing Parallax Microlensing Event. Difference Image Analysis
- Resolving Microlens Blends Using Image Subtraction
- MACHO 96-LMC-2: Lensing of a Binary Source in the LMC and Constraints on the Lensing Object
- Parallax Microlensing Events in the OGLE II Database Toward the Galactic Bulge
- The Effect of a Binary Source Companion on the Astrometric Microlensing Behavior
Cited by in corpus (21)
- Black Hole, Neutron Star and White Dwarf Candidates from Microlensing with OGLE-III
- Systematic Analysis of 22 Microlensing Parallax Candidates
- Acceleration and Parallax Effects in Gravitational Microlensing
- The Anomaly in the Candidate Microlensing Event PA-99-N2
- PopSyCLE: A New Population Synthesis Code for Compact Object Microlensing Events
- Blending in Gravitational Microlensing Experiments: Source Confusion And Related Systematics
- Potential Direct Single-Star Mass Measurement
- The Many Possible Interpretations of Microlensing Event OGLE-2002-BLG-055
- A Reanalysis of Public Galactic Bulge Gravitational Microlensing Events from OGLE-III and IV
- Rapidly Rotating Lenses: Repeating features in the lightcurves of short period binary microlenses
- The Nature of Parallax Microlensing Events Towards the Galactic Bulge
- OGLE-2016-BLG-1045: A Test of Cheap Space-Based Microlens Parallaxes
- Dark lenses through the dust: parallax microlensing events in the VVV
- Finite source effect on the polarization degree induced by a single microlens
- Ultraviolet Mg II emission from fast neutral ejecta around Eta Carinae
- The OGLE-II event sc5_2859 -- An example of disk-disk microlensing
- Measuring transverse velocities in gravitationally lensed extragalactic systems using an annual parallax effect
- MOA-2022-BLG-249Lb: Nearby microlensing super-Earth planet detected from high-cadence surveys
- The Importance of Binary Gravitational Microlensing Events Through High-Magnification Channel
- The OGLE-II event sc5_2859 : a Classical Nova outburst?
- Constraining Lens Masses in Moderately to Highly Magnified Microlensing Events from Gaia