Coexistence Test of Primordial Black Holes and Particle Dark Matter from Diffractive Lensing
arXiv:2311.17829 · doi:10.1103/PhysRevLett.133.101002
Abstract
If dark matter (DM) consists of primordial black holes (PBHs) and particles simultaneously, PBHs are generically embedded within particle DM halos. Such ``dressed PBHs'' (dPBHs) are subject to modified constraints compared to PBHs and can contribute to significant DM abundance in the mass range . We show that diffractive lensing of chirping gravitational waves (GWs) from binary mergers can not only discover, but can also identify dPBH lenses and discriminate them from bare PBHs on the event-by-event basis, with potential to definitively establish the coexistence of subdominant PBHs and particle DM.
14 pages, 7 figures; minor modifications, version accepted for publication in Physical Review Letters
References in corpus (36)
- Primordial Black Holes as a dark matter candidate
- Cosmic microwave background limits on accreting primordial black holes
- Effect of Primordial Black Holes on the Cosmic Microwave Background and Cosmological Parameter Estimates
- Gravitational Wave signatures of inflationary models from Primordial Black Hole Dark Matter
- Searching for a subpopulation of primordial black holes in LIGO/Virgo gravitational-wave data
- Gravitational waves as a probe of dark matter mini-spikes
- Disks, spikes, and clouds: distinguishing environmental effects on BBH gravitational waveforms
- Science-Driven Tunable Design of Cosmic Explorer Detectors
- Measuring the dark matter environments of black hole binaries with gravitational waves
- Black hole formation and slow-roll inflation
- Low Mass Black Holes from Dark Core Collapse
- Probing Dark Low-mass Halos and Primordial Black Holes with Frequency-dependent Gravitational Lensing Dispersions of Gravitational Waves
- PBH formation from overdensities in delayed vacuum transitions
- Gravitational wave lensing as a probe of halo properties and dark matter
- Test for the Origin of Solar Mass Black Holes
- Constraints on compact dark matter from gravitational wave microlensing
- Constraining Primordial Black Holes with Dwarf Galaxy Heating
- Lensing of gravitational waves as a probe of compact dark matter
- In-depth analysis of the clustering of dark matter particles around primordial black holes I: density profiles
- Measuring dark matter spikes around primordial black holes with Einstein Telescope and Cosmic Explorer
- First-order phase transition and fate of false vacuum remnants
- Small-scale shear: Peeling off diffuse subhalos with gravitational waves
- Old Phase Remnants in First Order Phase Transitions
- Weakly Lensed Gravitational Waves: Probing Cosmic Structures with Wave-Optics Features
- Interstellar Gas Heating by Primordial Black Holes
- Radio signatures from encounters between Neutron Stars and QCD-Axion Minihalos around Primordial Black Holes
- Gravitational microlensing by dressed primordial black holes
- Establishing the Non-Primordial Origin of Black Hole-Neutron Star Mergers
- Revealing Dark Matter Dress of Primordial Black Holes by Cosmological Lensing
- Shining Primordial Black Holes
- GW200105 and GW200115 are compatible with a scenario of primordial black hole binary coalescences
- Signatures of a High Temperature QCD Transition in the Early Universe
- Gravitational wave microlensing by dressed primordial black holes
- Constraints on compact dark matter from lensing of gravitational waves for the third-generation gravitational wave detector
- Impacts of Jets and Winds From Primordial Black Holes
- Solar Diffraction of LIGO-Band Gravitational Waves
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- GLoW: novel methods for wave-optics phenomena in gravitational lensing
- Multi-messenger Gravitational Lensing
- Gravitational wave lensing: probing Fuzzy Dark Matter with LISA
- Modulations of Gravitational Waves due to Non-static Gravitational Lenses
- Accelerated inference of microlensed gravitational waves with machine learning
- Primordial Black Hole Mergers as Probes of Dark Matter in Galactic Center
- Gravitational Lensing of Gravitational Waves from Astrophysical Sources: Theory, Detection, and Applications
- Unified Gas Heating Constraints on Extended Dark Matter Compact Objects
- Primordial black holes as cosmic accelerators of light dark matter: Novel direct detection constraints
- Across the Universe: GW231123 as a magnified and diffracted black hole merger