The Mass of the MACHO-LMC-5 Lens Star
arXiv:astro-ph/0405124 · doi:10.1086/423614
Abstract
We combine the available astrometric and photometric data for the 1993 microlensing event MACHO-LMC-5 to measure the mass of the lens, M=0.097 +/- 0.016 Msun. This is the most precise direct mass measurement of a single star other than the Sun. In principle, the measurement error could be reduced as low as 10% by improving the trig parallax measurement using, for example, the Space Interferometry Mission. Further improvements might be possible by rereducing the original photometric lightcurve using image subtraction or by obtaining new, higher-precision baseline photometry of the source. We show that the current data strongly limit scenarios in which the lens is a dark (i.e., brown-dwarf) companion to the observed M dwarf rather than being the M dwarf itself. These results set the stage for a confrontation between mass estimates of the M dwarf obtained from spectroscopic and photometric measurements and a mass measurement derived directly from the star's gravitational influence. This would be the first such confrontation for any isolated star other than the Sun.
20 pages inc 3 fig, submitted to ApJ
References in corpus (3)
Cited by in corpus (38)
- A Low-Mass Planet with a Possible Sub-Stellar-Mass Host in Microlensing Event MOA-2007-BLG-192
- Binary microlensing event OGLE-2009-BLG-020 gives a verifiable mass, distance and orbit predictions
- Planetary Detection Efficiency of the Magnification 3000 Microlensing Event OGLE-2004-BLG-343
- The Extreme Microlensing Event OGLE-2007-BLG-224: Terrestrial Parallax Observation of a Thick-Disk Brown Dwarf
- Spitzer as Microlens Parallax Satellite: Mass Measurement for the OGLE-2014-BLG-0124L Planet and its Host Star
- Black Hole, Neutron Star and White Dwarf Candidates from Microlensing with OGLE-III
- Systematic Analysis of 22 Microlensing Parallax Candidates
- Taking the Measure of the Universe: Precision Astrometry with SIM PlanetQuest
- First Space-Based Microlens Parallax Measurement: Spitzer Observations of OGLE-2005-SMC-001
- Characterization of Gravitational Microlensing Planetary Host Stars
- OGLE-2003-BLG-238: Microlensing Mass Estimate of an Isolated Star
- WFIRST Exoplanet Mass Measurement Method Finds a Planetary Mass of for OGLE-2012-BLG-0950Lb
- Large Magellanic Cloud Microlensing Optical Depth with Imperfect Event Selection
- Potential Direct Single-Star Mass Measurement
- Microlensing towards the LMC: self lensing for OGLE-II and OGLE-III
- The first direct detection of a gravitational micro-lens toward the Galactic bulge
- Prediction of Astrometric Microlensing Events during the Gaia Mission
- Orbits for eighteen visual binaries and two double-line spectroscopic binaries observed with HRCAM on the CTIO SOAR 4m telescope, using a new Bayesian orbit code based on Markov Chain Monte Carlo
- Mass measurement of a single unseen star and planetary detection efficiency for OGLE 2007-BLG-050
- Searching for intermediate-mass black holes in globular clusters with gravitational microlensing
- MOA-2007-BLG-400 A Super-Jupiter Mass Planet Orbiting a Galactic BulgeK-dwarf Revealed by Keck Adaptive Optics Imaging
- Microlens Masses from 1-D Parallaxes and Heliocentric Proper Motions
- Short-duration lensing events: II. Expectations and Protocols
- Discovery of a Very Bright, Nearby Gravitational Microlensing Event
- The First Planetary Microlensing Event with Two Microlensed Source Stars
- Detection of Extrasolar Planets by Gravitational Microlensing
- Candidate Gravitational Microlensing Events for Future Direct Lens Imaging
- Bayesian Approach for Determining Microlens System Properties with High-Angular-Resolution Follow-up Imaging
- Short-duration lensing events: I. wide-orbit planets? free-floating low-mass objects? or high-velocity stars?
- Photometric Confirmation of MACHO Large Magellanic Cloud Microlensing Events
- The Nature of Parallax Microlensing Events Towards the Galactic Bulge
- Extent of pollution in planet-bearing stars
- OGLE-2017-BLG-0537: Microlensing Event with a Resolvable Lens in years from High-resolution Follow-up Observations
- Microlensing of Circumstellar Disks
- Determining the Physical Lens Parameters of the Binary Gravitational Microlensing Event MOA-2009-BLG-016
- OGLE-2009-BLG-023/MOA-2009-BLG-028: Characterization of a Binary Microlensing Event Based on Survey Data
- Probing MACHOs Toward the Galactic Bulge
- MOA-2020-BLG-208Lb: Cool Sub-Saturn Planet Within Predicted Desert