Limits on planetary-mass primordial black holes from the OGLE high-cadence survey of the Magellanic Clouds
arXiv:2410.06251 · doi:10.3847/2041-8213/ad8e68
Abstract
Observations of the Galactic bulge revealed an excess of short-timescale gravitational microlensing events that are generally attributed to a large population of free-floating or wide-orbit exoplanets. However, in recent years, some authors suggested that planetary-mass primordial black holes (PBHs) comprising a substantial fraction (1%-10%) of the dark matter in the Milky Way may be responsible for these events. If that was the case, a large number of short-timescale microlensing events should also be seen toward the Magellanic Clouds. Here, we report the results of a high-cadence survey of the Magellanic Clouds carried out from 2022 October through 2024 May as part of the Optical Gravitational Lensing Experiment. We observed almost 35 million source stars located in the central regions of the Large and Small Magellanic Clouds and found only one long-timescale microlensing event candidate. No short-timescale events were detected despite high sensitivity to such events. That allows us to infer the strongest available limits on the frequency of planetary-mass PBHs in dark matter. We find that PBHs and other compact objects with masses from (half of the Moon mass) to (planet/brown dwarf boundary) may comprise at most 1% of dark matter. That rules out the PBH origin hypothesis for the short-timescale events detected toward the Galactic bulge and indicates they are caused by the population of free-floating or wide-orbit planets.
accepted for publication in ApJ Letters
References in corpus (12)
- The Gaia mission
- Limits on the Macho Content of the Galactic Halo from the EROS-2 Survey of the Magellanic Clouds
- Constraints on Earth-mass primordial black holes from OGLE 5-year microlensing events
- No large population of unbound or wide-orbit Jupiter-mass planets
- The Planet Nine Hypothesis
- The total mass and dark halo properties of the Small Magellanic Cloud
- Primordial black holes and scalar induced gravitational waves from the model with a Gauss-Bonnet term
- Primordial black holes formation in the inflationary model with field-dependent kinetic term for quartic and natural potentials
- Synthesizing Exoplanet Demographics from Radial Velocity and Microlensing Surveys, I: Methodology
- Mechanism of primordial black holes production and secondary gravitational waves in -attractor Galileon inflationary scenario
- Primordial black holes formation and secondary gravitational waves in nonminimal derivative coupling inflation
- Compact objects in and beyond the Standard Model from non-perturbative vacuum scalarization