Finding Black Holes with Microlensing
arXiv:astro-ph/0203257 · doi:10.1086/343758
Abstract
The MACHO and OGLE collaborations have argued that the three longest duration bulge microlensing events are likely caused by nearby black holes, given the small velocities measured with microlensing parallax and nondetection of the lenses. However, these events may be due to lensing by more numerous lower mass stars at greater distances. We find a posteriori probabilities of 76%, 16%, and 4% that the three longest events are black holes, assuming a Salpeter initial mass function (IMF) and a 40 M cutoff for neutron star progenitors; the numbers depend strongly on the assumed mass function but favor a black hole for the longest event for most standard IMFs. The longest events (>600 days) have an a priori 26% probability of being black holes for a standard mass function. We propose a new technique for measuring the lens mass function using the mass distribution of long events measured with the Advanced Camera for Surveys on the Hubble Space Telescope, the Very Large Telescope Interferometer, the Space Interferometry Mission, or the Global Astrometric Interferometer for Astrophysics.
final version with additional significant corrections
References in corpus (6)
- The Initial Mass Function of Stars: Evidence for Uniformity in Variable Systems
- X-Rays from Isolated Black Holes in the Milky Way
- Optical Gravitational Lensing Experiment. OGLE-1999-BUL-32: the Longest Ever Microlensing Event -- Evidence for a Stellar Mass Black Hole?
- Astrometric Microlensing with the GAIA satellite
- Resolving gravitational microlensing events with long-baseline optical interferometry. Prospects for the ESO Very Large Telescope Interferometer
- Applications of Microlensing to Stellar Astrophysics
Cited by in corpus (37)
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- Systematic Analysis of 22 Microlensing Parallax Candidates
- An isolated mass gap black hole or neutron star detected with astrometric microlensing
- Gravitational Microlensing Events Due to Stellar Mass Black Holes
- Astrophysical Black Holes: A Compact Pedagogical Review
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- Predicting the binary black hole population of the Milky Way with cosmological simulations
- Hunting Black Holes with Gaia
- OGLE-2003-BLG-238: Microlensing Mass Estimate of an Isolated Star
- Populations of stellar mass Black holes from binary systems
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- Millimetre-wave Emission from an Intermediate-Mass Black Hole Candidate in the Milky Way
- Optical Depths and Timescale Distributions in Galactic Microlensing
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- The Role of Primordial Kicks on Black Hole Merger Rates
- Kerr black holes as retro-MACHOs
- Mining for Candidates of Galactic Stellar-mass Black Hole Binaries with LAMOST
- Detectablity of Black Hole Binaries with Gaia: Dependence on Binary Evolution Models
- Detecting isolated stellar-mass black holes by the Roman telescope
- VVV Survey Observations of a Microlensing Stellar Mass Black Hole Candidate in the Field of the Globular Cluster NGC 6553
- A Reanalysis of Public Galactic Bulge Gravitational Microlensing Events from OGLE-III and IV
- The Nature of Parallax Microlensing Events Towards the Galactic Bulge
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- On the Possibility of Stellar Lenses in the Black Hole Candidate Microlensing Events MACHO-96-BLG-5 and MACHO-98-BLG-6
- Detecting isolated stellar-mass black holes in the absence of microlensing parallax effect
- Astrometric Microlensing of Primordial Black Holes with Gaia
- The nearest discovered black hole is likely not in a triple configuration
- Atomic X-ray Spectroscopy of Accreting Black Holes
- The OGLE-II event sc5_2859 -- An example of disk-disk microlensing
- Matching microlensing events with X-ray sources
- Identification of stellar-mass black hole binaries and the validity of linear orbital motion approximation in microlensing
- The OGLE-II event sc5_2859 : a Classical Nova outburst?
- "Industrial-Scale" Black Hole Selection without a Satellite
- X-ray observations of the isolated black hole candidate OGLE-2011-BLG-0462 , and other collapsed objects discovered through gravitational microlensing