Spitzer Microlens Measurement of a Massive Remnant in a Well-Separated Binary
arXiv:1508.06636 · doi:10.1088/0004-637X/814/2/111
Abstract
We report the detection and mass measurement of a binary lens OGLE-2015-BLG-1285La,b, with the more massive component having (80% probability). A main-sequence star in this mass range is ruled out by limits on blue light, meaning that a primary in this mass range must be a neutron star or black hole. The system has a projected separation and lies in the Galactic bulge. These measurements are based on the "microlens parallax" effect, i.e., comparing the microlensing light curve as seen from , which lay at projected from Earth, to the light curves from four ground-based surveys, three in the optical and one in the near infrared. Future adaptive optics imaging of the companion by 30m class telescopes will yield a much more accurate measurement of the primary mass. This discovery both opens the path and defines the challenges to detecting and characterizing black holes and neutron stars in wide binaries, with either dark or luminous companions. In particular, we discuss lessons that can be applied to future and K2 microlensing parallax observations.
ApJ. accepted, 34 pages, 7 figures, 2 tables
References in corpus (10)
- A New Algorithm For Difference Image Analysis
- Spitzer as Microlens Parallax Satellite: Mass Measurement for the OGLE-2014-BLG-0124L Planet and its Host Star
- First Space-Based Microlens Parallax Measurement: Spitzer Observations of OGLE-2005-SMC-001
- Extended-Source Effect and Chromaticity in Two-Point-Mass Microlensing
- Hexadecapole Approximation in Planetary Microlensing
- Pathway to the Galactic Distribution of Planets: Combined Spitzer and Ground-Based Microlens Parallax Measurements of 21 Single-Lens Events
- Criteria for Sample Selection to Maximize Planet Sensitivity and Yield from Space-Based Microlens Parallax Surveys
- First Space-based Microlens Parallax Measurement of an Isolated Star: Spitzer Observations of OGLE-2014-BLG-0939
- Spitzer as Microlens Parallax Satellite: Mass and Distance Measurements of Binary Lens System OGLE-2014-BLG-1050L
- Microlens Masses from 1-D Parallaxes and Heliocentric Proper Motions
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- On the Feasibility of Characterizing Free-floating Planets with Current and Future Space-based Microlensing Surveys
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- OGLE-2015-BLG-0196: Ground-based Gravitational Microlens Parallax Confirmed By Space-Based Observation
- Spitzer Opens New Path to Break Classic Degeneracy for Jupiter-Mass Microlensing Planet OGLE-2017-BLG-1140Lb
- OGLE-2016-BLG-1045: A Test of Cheap Space-Based Microlens Parallaxes
- Space-based Microlens Parallax Observation As a Way to Resolve the Severe Degeneracy between Microlens-parallax and Lens-orbital Effect
- Ground-based parallax confirmed by Spitzer: binary microlensing event MOA-2015-BLG-020
- Pixel Level Decorrelation in Service of the \textit{Spitzer} Microlens Parallax Survey
- KMT-2016-BLG-2052L: Microlensing Binary Composed of M Dwarfs Revealed from a Very Long Time-scale Event
- Gaia21blx: Complete resolution of a binary microlensing event in the Galactic disk