Disentangling the Black Hole Mass Spectrum with Photometric Microlensing Surveys
arXiv:2310.03943 · doi:10.3847/1538-4357/ad09bf
Abstract
From the formation mechanisms of stars and compact objects to nuclear physics, modern astronomy frequently leverages surveys to understand populations of objects to answer fundamental questions. The population of dark and isolated compact objects in the Galaxy contains critical information related to many of these topics, but is only practically accessible via gravitational microlensing. However, photometric microlensing observables are degenerate for different types of lenses, and one can seldom classify an event as involving either a compact object or stellar lens on its own. To address this difficulty, we apply a Bayesian framework that treats lens type probabilistically and jointly with a lens population model. This method allows lens population characteristics to be inferred despite intrinsic uncertainty in the lens-class of any single event. We investigate this method's effectiveness on a simulated ground-based photometric survey in the context of characterizing a hypothetical population of primordial black holes (PBHs) with an average mass of . On simulated data, our method outperforms current black hole (BH) lens identification pipelines and characterizes different subpopulations of lenses while jointly constraining the PBH contribution to dark matter to \%. Key to robust inference, our method can marginalize over population model uncertainty. We find the lower mass cutoff for stellar origin BHs, a key observable in understanding the BH mass gap, particularly difficult to infer in our simulations. This work lays the foundation for cutting-edge PBH abundance constraints to be extracted from current photometric microlensing surveys.
31 pages, 18 figures, submitted to AAS
References in corpus (42)
- Array Programming with NumPy
- The Gaia mission
- First M87 Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole
- X-ray Properties of Black-Hole Binaries
- First Sagittarius A* Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole in the Center of the Milky Way
- GWTC-3: Compact Binary Coalescences Observed by LIGO and Virgo During the Second Part of the Third Observing Run
- Primordial Black Holes as Dark Matter
- Limits on the Macho Content of the Galactic Halo from the EROS-2 Survey of the Magellanic Clouds
- No large population of unbound or wide-orbit Jupiter-mass planets
- The Initial-Final Mass Relation: Direct Constraints at the Low Mass End
- One Channel to Rule Them All? Constraining the Origins of Binary Black Holes using Multiple Formation Pathways
- Inferring the eccentricity distribution
- A Sun-like star orbiting a black hole
- Microlensing and dynamical constraints on primordial black hole dark matter with an extended mass function
- Searching for a subpopulation of primordial black holes in LIGO/Virgo gravitational-wave data
- A red giant orbiting a black hole
- OGLE-IV: Fourth Phase of the Optical Gravitational Lensing Experiment
- Primordial seeds of supermassive black holes
- An isolated mass gap black hole or neutron star detected with astrometric microlensing
- Improved gravitational-wave constraints on higher-order curvature theories of gravity
- Relativistic deflection of background starlight measures the mass of a nearby white dwarf star
- Observational evidence for cosmological coupling of black holes and its implications for an astrophysical source of dark energy
- A non-interacting Galactic black hole candidate in a binary system with a main-sequence star
- Cover Your Basis: Comprehensive Data-Driven Characterization of the Binary Black Hole Population
- Very Massive Stars in the Local Universe
- A Search for Stellar-Mass Black Holes via Astrometric Microlensing
- PopSyCLE: A New Population Synthesis Code for Compact Object Microlensing Events
- YSE-PZ: A Transient Survey Management Platform that Empowers the Human-in-the-Loop
- Are Parametrized Tests of General Relativity with Gravitational Waves Robust to Unknown Higher Post-Newtonian Order Effects?
- On the Application of Bayesian Leave-One-Out Cross-Validation to Exoplanet Atmospheric Analysis
- A new direction for dark matter research: intermediate mass compact halo objects
- The OGLE View of Microlensing towards the Magellanic Clouds. II. OGLE-II SMC data
- First semi-empirical test of the white dwarf mass-radius relationship using a single white dwarf via astrometric microlensing
- Microlensing constraints on the mass of single stars from HST astrometric measurements
- The Missing Link Between Black Holes in High-Mass X-ray Binaries and Gravitational-Wave Sources: Observational Selection Effects
- Parameter degeneracies and (un)predictability of gravitational microlensing events
- Detecting isolated stellar-mass black holes by the Roman telescope
- The Impact of Initial-Final Mass Relations on Black Hole Microlensing
- A microlensing search of 700 million VVV light curves
- Lens parameters for Gaia18cbf -- a long gravitational microlensing event in the Galactic plane
- LSST Survey Strategy in the Galactic Plane and Magellanic Clouds
- Reanalyses of Anomalous Gravitational Microlensing Events in the OGLE-III Early Warning System Database with Combined Data