Electromagnetic probes of primordial black holes as dark matter
arXiv:1903.04424
Abstract
The LIGO discoveries have rekindled suggestions that primordial black holes (BHs) may constitute part to all of the dark matter (DM) in the Universe. Such suggestions came from 1) the observed merger rate of the BHs, 2) their unusual masses, 3) their low/zero spins, and 4) also from the independently uncovered cosmic infrared background (CIB) fluctuations signal of high amplitude and coherence with unresolved cosmic X-ray background (CXB). Here we summarize the prospects to resolve this important issue with electromagnetic observations using the instruments and tools expected in the 2020's. These prospects appear promising to make significant, and potentially critical, advances. We demonstrate that in the next decade, new space- and ground-borne electromagnetic instruments, combined with concurrent theoretical efforts, should shed critical light on the long-considered link between primordial BHs and DM. Specifically the new data and methodologies under this program will involve: I) Probing with high precision the spatial spectrum of source-subtracted CIB with Euclid and WFIRST, and its coherence with unresolved cosmic X-ray background using eROSITA and Athena, II) Advanced searches for microlensing of Galactic stars by the intervening Galactic Halo BHs with OGLE, Gaia, LSST and WFIRST, III) Supernovae (SNe) lensing in the upcoming surveys with WFIRST, LSST and also potentially with Euclid and JWST, IV) Advanced theoretical work to understand the details of PBH accretion and evolution and their influence on cosmic microwave background (CMB) anisotropies in light of the next generation CMB experiments, V) Better new samples and theoretical understanding involving stability and properties of ultra faint dwarf galaxies, pulsar timing, and cosmological quasar lensing.
Science whitepaper submitted to the Astro2020 Decadal Survey
References in corpus (14)
- Primordial Black Holes as Dark Matter
- Wide-Field InfrarRed Survey Telescope-Astrophysics Focused Telescope Assets WFIRST-AFTA 2015 Report
- Cosmic microwave background limits on accreting primordial black holes
- Effect of Primordial Black Holes on the Cosmic Microwave Background and Cosmological Parameter Estimates
- CMB bounds on disk-accreting massive Primordial Black Holes
- Stochastic gravitational waves associated with the formation of primordial black holes
- Microlensing and dynamical constraints on primordial black hole dark matter with an extended mass function
- Testing scenarios of primordial black holes being the seeds of supermassive black holes by ultracompact minihalos and CMB -distortions
- Stochastic Gravitational-Wave Background due to Primordial Binary Black Hole Mergers
- Low-Latency Gravitational Wave Alerts for Multi-Messenger Astronomy During the Second Advanced LIGO and Virgo Observing Run
- Extending the supernova Hubble diagram to z~1.5 with the Euclid space mission
- Detecting the Stochastic Gravitational Wave Background from Primordial Black Hole Formation
- Probing large scale coherence between Spitzer IR and Chandra X-ray source-subtracted cosmic backgrounds
- Probing the cross-power of unresolved cosmic infrared and X-ray backgrounds with upcoming space missions
Cited by in corpus (6)
- PBH formation from spherically symmetric hydrodynamical perturbations: a review
- Effects of the shape of curvature peaks on the size of primordial black holes
- 21-cm constraints on spinning primordial black holes
- Cosmological advection flows in the presence of primordial black holes as dark matter and formation of first sources
- The Impact of the Mass Spectrum of Lenses in Quasar Microlensing Studies. Constraints on a Mixed Population of Primordial Black Holes and Stars
- Hot primordial regions with anomalous hydrogenless chemical composition