Primordial black holes from cusp collapse on cosmic strings
arXiv:2006.16249
Abstract
Primordial black holes (PBHs) are of fundamental interest in cosmology and astrophysics, and have received much attention as a dark matter candidate and as a potential source of gravitational waves. One possible PBH formation mechanism is the gravitational collapse of cosmic strings. Thus far, the entirety of the literature on PBH production from cosmic strings has focused on the collapse of (quasi)circular cosmic string loops, which make up only a tiny fraction of the cosmic loop population. We demonstrate here a novel PBH formation mechanism: the collapse of a small segment of cosmic string in the neighbourhood of a cusp. Using the hoop conjecture, we show that collapse is inevitable whenever a cusp appears on a macroscopically-large loop, forming a PBH whose rest mass is smaller than the mass of the loop by a factor of the dimensionless string tension squared, . Since cusps are generic features of cosmic string loops, and do not rely on finely-tuned loop configurations like circular collapse, this implies that cosmic strings produce PBHs in far greater numbers than has previously been recognised. The resulting PBHs are highly spinning and boosted to ultrarelativistic velocities; they populate a unique region of the BH mass-spin parameter space, and are therefore a "smoking gun" observational signature of cosmic strings. We derive new constraints on from the evaporation of cusp-collapse PBHs, and update existing constraints on from gravitational-wave searches.
20 pages, 9 figures; corrections made to the PBH mass spectrum and associated GW constraints, main results unaffected
References in corpus (15)
- Advanced Virgo: a 2nd generation interferometric gravitational wave detector
- Primordial Black Holes as Dark Matter
- Gravitational wave searches for ultralight bosons with LIGO and LISA
- Gravitational wave stochastic background from cosmic (super)strings
- Gravitational-Wave Stochastic Background from Kinks and Cusps on Cosmic Strings
- Stochastic gravitational wave background from smoothed cosmic string loops
- On the final spin from the coalescence of two black holes
- The high-energy collision of two black holes
- Gravitational wave bursts from cosmic (super)strings: Quantitative analysis and constraints
- Stochastic Gravitational-Wave Background due to Primordial Binary Black Hole Mergers
- Primordial black holes from inflaton and spectator field perturbations in a matter-dominated era
- Primordial black holes as biased tracers
- Stochastic Gravitational Wave Background from Light Cosmic Strings
- Ultrarelativistic black hole formation
- Gravitational back reaction on piecewise linear cosmic string loops