Constraining spinning primordial black holes with global 21-cm signal
arXiv:2107.12358 · doi:10.1093/mnras/stab3754
Abstract
We study the upper projected bounds on the dark matter fraction in the form of the primordial black holes (PBHs) with a non-zero spin by using the absorption feature in the global 21-cm signal at redshift z ~ 17. The mass and spin are fundamental properties of a black hole, and they can substantially affect the evaporation rate of the black hole. The evaporating black hole can inject energy into the intergalactic medium and heat the gas. Subsequently, it can modify the absorption amplitude in the global 21-cm signal. Therefore, the absorption feature in the 21-cm signal can provide a robust bound on PBHs. We analyse the projected constraints on the dark matter fraction in the form of both spinning and non-spinning PBHs. The constraints are more stringent for spinning PBHs than non-spinning ones. We also compare these bounds with other observations and find the most stringent lower constraint on PBHs mass, which is allowed to constitute the entire dark matter to 6.7 x 10^17 g for extremal spinning PBHs.
Updated to match with the published version
References in corpus (17)
- GW170814: A Three-Detector Observation of Gravitational Waves from a Binary Black Hole Coalescence
- Primordial Black Holes as Dark Matter: Recent Developments
- Efficient Simulations of Early Structure Formation and Reionization
- The Effects of Dark Matter-Baryon Scattering on Redshifted 21 cm Signals
- Near future MeV telescopes can discover asteroid-mass primordial black hole dark matter
- Primordial black holes from scalar field evolution in the early universe
- Reionization - A probe for the stellar population and the physics of the early universe
- Precision Calculation of Dark Radiation from Spinning Primordial Black Holes and Early Matter Dominated Eras
- Radio background and IGM heating due to Pop III supernovae explosions
- Spins of primordial black holes formed in different cosmological scenarios
- Primordial black holes with mass g and reionization of the Universe
- Spins of primordial black holes formed in the radiation-dominated phase of the universe: first-order effect
- Maximum black-hole spin from quasi-circular binary mergers
- Bounds on abundance of primordial black hole and dark matter from EDGES 21-cm signal
- Constraining Mixed Dark-Matter Scenarios of WIMPs and Primordial Black Holes from CMB and 21-cm observations
- The abundance of primordial black holes from the global 21cm signal and extragalactic gamma-ray background
- Physics Beyond the Standard Model with BlackHawk v2.0
Cited by in corpus (6)
- 21-cm constraints on spinning primordial black holes
- Can Primordial Black Holes as all Dark Matter explain Fast Radio Bursts?
- Future Constraints on Primordial Black Holes from XGIS-THESEUS
- Cosmological 21cm line observations to test scenarios of super-Eddington accretion on to black holes being seeds of high-redshifted supermassive black holes
- Impact of radiation from primordial black holes on the 21-cm angular-power spectrum in the dark ages
- Physics Beyond the Standard Model with BlackHawk v2.0