Microlensing optical depth and event rate toward the Galactic bulge from 8 yr of OGLE-IV observations
arXiv:1906.02210 · doi:10.3847/1538-4365/ab426b
Abstract
The number and properties of observed gravitational microlensing events depend on the distribution and kinematics of stars and other compact objects along the line of sight. In particular, precise measurements of the microlensing optical depth and event rate toward the Galactic bulge enable strict tests of competing models of the Milky Way. Previous estimates, based on samples of up to a few hundred events, gave larger values than expected from the Galactic models and were difficult to reconcile with other constraints on the Galactic structure. Here we used long-term photometric observations of the Galactic bulge by the Optical Gravitational Lensing Experiment (OGLE) to select a homogeneous sample of 8000 gravitational microlensing events. We created the largest and most accurate microlensing optical depth and event rate maps of the Galactic bulge. The new maps ease the tension between the previous measurements and Galactic models. They are consistent with some earlier calculations based on bright stars and are systematically ~30% smaller than the other estimates based on "all-source" samples of microlensing events. The difference is caused by the careful estimation of the source star population. The new maps agree well with predictions based on the Besancon model of the Galaxy. Apart from testing the Milky Way models, our maps may have numerous other applications, such as the measurement of the initial mass function or constraining the dark matter content in the Milky Way center. The new maps will also inform the planning of future space-based microlensing experiments by revising the expected number of events.
49 pages, ApJS, in press
References in corpus (10)
- No large population of unbound or wide-orbit Jupiter-mass planets
- Constraining the thick disc formation scenario of the Milky Way
- OGLE-III Microlensing Events and the Structure of the Galactic Bulge
- MOA-II Galactic Microlensing Constraints: The Inner Milky Way has a Low Dark Matter Fraction and a Near Maximal Disk
- Microlensing constraints on the Galactic Bulge Initial Mass Function
- Blending in Gravitational Microlensing Experiments: Source Confusion And Related Systematics
- UKIRT microlensing surveys as a pathfinder for : The detection of five highly extinguished low- events
- The Initial Mass Function of the Inner Galaxy Measured From OGLE-III Microlensing Timescales
- The WFC3 Galactic Bulge Treasury Program: A First Look at Resolved Stellar Population Tools
- VVV Survey Microlensing Events in the Galactic Center Region
Cited by in corpus (64)
- An isolated mass gap black hole or neutron star detected with astrometric microlensing
- Predictions of the Nancy Grace Roman Space Telescope Galactic Exoplanet Survey II: Free-Floating Planet Detection Rates
- Gravitational microlensing by dark matter in extended structures
- Populations of stellar mass Black holes from binary systems
- Gaia Data Release 3: Cross-match of Gaia sources with variable objects from the literature
- PopSyCLE: A New Population Synthesis Code for Compact Object Microlensing Events
- Microlensing optical depth and event rate toward the Large Magellanic Cloud based on 20 years of OGLE observations
- A Parametric Galactic Model toward the Galactic Bulge Based on Gaia and Microlensing Data
- The observed mass distribution of Galactic black hole LMXBs is biased against massive black holes
- First semi-empirical test of the white dwarf mass-radius relationship using a single white dwarf via astrometric microlensing
- Gaia Data Release 3: Microlensing Events from All Over the Sky
- A free-floating or wide-orbit planet in the microlensing event OGLE-2019-BLG-0551
- Limits on planetary-mass primordial black holes from the OGLE high-cadence survey of the Magellanic Clouds
- The Enigmatic Brown Dwarf WISEA J153429.75-104303.3 (aka "The Accident")
- Microlensing optical depth and event rate in the OGLE-IV Galactic plane fields
- Euclid-Roman joint microlensing survey: early mass measurement, free floating planets and exomoons
- Prediction of Planet Yields by the PRime-focus Infrared Microlensing Experiment Microlensing Survey
- KMT-2021-BLG-0171Lb and KMT-2021-BLG-1689Lb: Two Microlensing Planets in the KMTNet High-cadence Fields with Followup Observations
- No Large Dependence of Planet Frequency on Galactocentric Distance
- The Impact of Initial-Final Mass Relations on Black Hole Microlensing
- Predictions of Gaia's prize microlensing events are flawed
- A microlensing search of 700 million VVV light curves
- A Reanalysis of Public Galactic Bulge Gravitational Microlensing Events from OGLE-III and IV
- Discovering Strongly-lensed QSOs From Unresolved Light Curves
- Dark lenses through the dust: parallax microlensing events in the VVV
- KMT-2018-BLG-1025Lb: microlensing super-Earth planet orbiting a low-mass star
- The Demographics of Wide-Separation Planets
- MaBlS-2: high-precision microlensing modelling for the large-scale survey era
- Disentangling the Black Hole Mass Spectrum with Photometric Microlensing Surveys
- Microlensing optical depth, event rate, and limits on compact objects in dark matter based on 20 yr of OGLE observations of the Small Magellanic Cloud
- Observing the Galactic Underworld: Predicting photometry and astrometry from compact remnant microlensing events
- Probing the Milky Way stellar and brown dwarf initial mass function with modern microlensing observations
- Systematic Reanalysis of KMTNet Microlensing Events, Paper II: Two New Planets in Giant-Source Events
- The Prime Focus Infrared Microlensing Experiment (PRIME): First Results
- Dark lens candidates from Gaia Data Release 3
- Gravitational microlensing events from the first year of the northern Galactic plane survey by the Zwicky Transient Facility
- 60 Microlensing Events from the Three Years of Zwicky Transient Facility Phase One
- Microlensed Radio Emission from Exoplanets
- KMT-2016-BLG-1836Lb: A Super-Jovian Planet From A High-Cadence Microlensing Field
- Infrared-Radio-follow-up Observations for Detection of the Magnetic Radio Emission of Extra-Solar Planets: A New Window to Detect Exoplanets
- Precision measurement of a brown dwarf mass in a binary system in the microlensing event OGLE-2019-BLG-0033/MOA-2019-BLG-035
- Microlensing of radially pulsating stars
- High-precision astrometry with VVV -- II. A near-infrared extension of Gaia into the Galactic plane
- MOA-2019-BLG-008Lb: a new microlensing detection of an object at the planet/brown dwarf boundary
- Gravitational Microlensing Event Statistics for the Zwicky Transient Facility
- Non-radially pulsating stars as microlensing sources
- Dark Classification Matters: Searching for Primordial Black Holes with LSST
- Identifying low-amplitude pulsating stars through microlensing observations
- Detecting the inner regions of discs around sources of microlensing with Roman Space Telescope
- Gravitational Lensing of Core Collapse Supernova Gravitational Wave Signals
- HST pre-imaging of a free-floating planet candidate microlensing event
- The density profile of Milky Way dark matter halo constrained from the OGLE microlensing sky map
- Constraining the environment of compact binary mergers with self-lensing signatures
- The impact of the free-floating planet (FFP) mass function on the event rate for the accurate microlensing parallax determination: application to Euclid and Roman parallax observation
- Dimming Starlight with Dark Compact Objects
- Prospects for Reconstructing the Free-floating Planet Mass Function at the Population Level with the Nancy Grace Roman Space Telescope
- Variation of the stellar color in high-magnification and caustic-crossing microlensing events
- Galactic microlensing by acoustic Schwarzschild black holes
- Measuring the stellar atmosphere parameters using follow-up polarimetry microlensing observations
- Life in the dark: Potential urability of moons of rogue planets
- Constraining Black Hole Natal Kicks with Astrometric Microlensing
- A Minute-Cadence Deep Bulge Survey: First Data Release of DREAMS
- Blending from binarity in microlensing searches toward the Large Magellanic Cloud
- Microlensing Events in the Galactic Plane Using the Zwicky Transient Facility