New mechanism for primordial black hole formation from the QCD axion
arXiv:2309.01739 · doi:10.1103/PhysRevD.109.123030
Abstract
We present a new mechanism for the primordial black hole (PBH) production within the QCD axion framework. We take the case where the Peccei-Quinn symmetry breaks during inflation, resulting in a string-wall network that re-enters horizon sufficiently late. Therefore, closed axion domain walls naturally arising in the network are sufficiently large to collapse into PBHs. Our numerical simulation shows that of the total wall area is in the form of closed walls. In addition, the relic abundance of dark matter is dominantly accounted for by free axions from the collapse of open walls bounded by strings. In this framework, the abundance of PBH within dark matter is calculated to be . This fraction remains unaffected by axion parameters or the re-entering horizon temperature, as it is determined by the fixed proportion of closed walls in the network, governed by the principles of percolation theory. The resultant PBHs uniformly share the same mass, which spans from about to solar mass, corresponding to the classical QCD axion mass window ~eV and the re-entering horizon temperature ~MeV. Intriguingly, PBHs in this mechanism can naturally account for the ultrashort-timescale gravitational microlensing events observed by the OGLE collaboration.
8 pages, 4 figures. Match the published version
References in corpus (14)
- Limits on the Macho Content of the Galactic Halo from the EROS-2 Survey of the Magellanic Clouds
- Constraints on Earth-mass primordial black holes from OGLE 5-year microlensing events
- No large population of unbound or wide-orbit Jupiter-mass planets
- The dark-matter axion mass
- Axion cosmology with long-lived domain walls
- Science with the TianQin observatory: Preliminary results on stellar-mass binary black holes
- Confronting the primordial black hole scenario with the gravitational-wave events detected by LIGO-Virgo
- How to simulate global cosmic strings with large string tension
- Probing planetary-mass primordial black holes with continuous gravitational waves
- The meso-inflationary QCD axion
- Gravitational Waves from an Inflation Triggered First-Order Phase Transition
- Searching for Black Holes in the Outer Solar System with LSST
- Opening up a window on the postinflationary QCD axion
- Tracing Astrophysical Black Hole Seeds and Primordial Black Holes with LISA-Taiji Network
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- Cosmological Consequences of Domain Walls Biased by Quantum Gravity
- Meso-inflationary Peccei-Quinn symmetry breaking with non-minimal coupling
- Gravitational Wave Mountains: current-carrying domain walls
- The Dark Side of the Moon: Listening to Scalar-Induced Gravitational Waves