Primordial black hole dark matter from single field inflation
arXiv:1709.05565 · doi:10.1103/PhysRevD.97.023501
Abstract
We propose a model of inflation capable of generating a population of light black holes (about - solar masses) that might account for a significant fraction of the dark matter in the Universe. The effective potential of the model features an approximate inflection point arising from two-loop order logarithmic corrections in well-motivated and perturbative particle physics examples. This feature decelerates the inflaton before the end of inflation, enhancing the primordial spectrum of scalar fluctuations and triggering efficient black hole production with a peaked mass distribution. At larger field values, inflation occurs thanks to a generic small coupling between the inflaton and the curvature of spacetime. We compute accurately the peak mass and abundance of the primordial black holes using the Press-Schechter and Mukhanov-Sasaki formalisms, showing that the slow-roll approximation fails to reproduce the correct results by orders of magnitude. We study as well a qualitatively similar implementation of the idea, where the approximate inflection point is due to competing terms in a generic polynomial potential. In both models, requiring a significant part of the dark matter abundance to be in the form of black holes implies a small blue scalar tilt with a sizable negative running and a tensor spectrum that may be detected by the next-generation probes of the cosmic microwave background. We also comment on previous works on the topic.
minor changes, references added, to appear in PRD
References in corpus (18)
- Primordial Black Holes as Dark Matter
- Limits on the Macho Content of the Galactic Halo from the EROS-2 Survey of the Magellanic Clouds
- Cosmic microwave background limits on accreting primordial black holes
- Effect of Primordial Black Holes on the Cosmic Microwave Background and Cosmological Parameter Estimates
- Power-counting and the Validity of the Classical Approximation During Inflation
- Primordial Black Holes and Slow-Roll Violation
- CMB bounds on disk-accreting massive Primordial Black Holes
- Gravitational Wave signatures of inflationary models from Primordial Black Hole Dark Matter
- Primordial black hole formation in the radiative era: investigation of the critical nature of the collapse
- Higgs inflation at the critical point
- Calculating the mass spectrum of primordial black holes
- Higgs inflation still alive
- The end of the MACHO era- revisited: new limits on MACHO masses from halo wide binaries
- Ultra slow-roll inflation demystified
- Observable Spectra of Induced Gravitational Waves from Inflation
- Limits on the Mass and Abundance of Primordial Black Holes from Quasar Gravitational Microlensing
- MCMC analysis of WMAP3 and SDSS data points to broken symmetry inflaton potentials and provides a lower bound on the tensor to scalar ratio
- Large tensor-to-scalar ratio and running of the scalar spectral index with Instep Inflation