Formation of trapped vacuum bubbles during inflation, and consequences for PBH scenarios
arXiv:2306.09990 · doi:10.1088/1475-7516/2023/10/035
Abstract
A class of inflationary scenarios for primordial black hole (PBH) formation include a small barrier in the slope of the potential. There, the inflaton slows down, generating an enhancement of primordial perturbations. Moreover, the background solution overcomes the barrier at a very low speed, and large backward quantum fluctuations can prevent certain regions from overshooting the barrier. This leads to localized bubbles where the field remains trapped behind the barrier. In such models, therefore, we have two distinct channels for PBH production: the standard adiabatic density perturbation channel and the bubble channel. Here, we perform numerical simulations of bubble formation, addressing the issues of initial conditions, critical amplitude and bubble expansion. Further, we explore the scaling behaviour of the co-moving size of bubbles with the initial amplitude of the field fluctuation. We find that for small to moderate non-Gaussianity , the threshold for the formation of vacuum bubbles agrees with previous analytical estimates arXiv:1908.11357 to accuracy or so. We also show that the mass distribution for the two channels is different, leading to a slightly broader range of PBH masses. The bubble channel is subdominant for small , and becomes dominant for . We find that the mass of PBHs in the bubble channel is determined by an adiabatic overdensity surrounding the bubble at the end of inflation. Remarkably, the profile of this overdensity turns out to be of type-II. This represents a first clear example showing that overdensities of type-II can be dominant relative to the standard type-I. We also comment on exponential tails and on the fact that in models with local type non-Gaussianity (such as the one considered here), the occurrence of alternative channels can easily be inferred from unitarity considerations.
41 pages and 18 figures. v3: minor comments and references added. Accepted for publication in JCAP. v4: minor typographical typo in Eq.(2.21) corrected; results unchanged
References in corpus (23)
- Array Programming with NumPy
- Primordial Black Holes as Dark Matter
- Primordial Black Holes as Dark Matter: Recent Developments
- Primordial black hole dark matter from single field inflation
- Primordial Black Holes as Dark Matter Candidates
- Testing scenarios of primordial black holes being the seeds of supermassive black holes by ultracompact minihalos and CMB -distortions
- Separate Universes Do Not Constrain Primordial Black Hole Formation
- Logarithmic Duality of the Curvature Perturbation
- Probing non-Gaussianities with the high frequency tail of induced gravitational waves
- PBH formation from spherically symmetric hydrodynamical perturbations: a review
- Highly non-Gaussian tails and primordial black holes from single-field inflation
- An analytic approach to non-slow-roll inflation
- Squeezed bispectrum and one-loop corrections in transient constant-roll inflation
- Revisiting small-scale fluctuations in -attractor models of inflation
- On Primordial Black Holes and secondary gravitational waves generated from inflation with solo/multi-bumpy potential
- Primordial black hole formation by vacuum bubbles II
- Thermalization of large energy release in the early Universe
- Non-Gaussianity and Secondary Gravitational Waves from Primordial Black Holes Production in -attractor Inflation
- Effects of the shape of curvature peaks on the size of primordial black holes
- NANOGrav signal as mergers of Stupendously Large Primordial Black Holes
- Gradient expansion approach to nonlinear superhorizon perturbations II -- a single scalar field --
- -distortion around stupendously large primordial black holes
- Implications of GWTC-3 on primordial black holes from vacuum bubbles
Cited by in corpus (20)
- Inflationary Butterfly Effect: Non-perturbative Dynamics From Small-Scale Features
- Ultra-Slow-Roll Inflation on the Lattice I: Backreaction and Nonlinear Effects
- The Primordial Black Hole Abundance: The Broader, the Better
- Primordial black holes and induced gravitational waves from logarithmic non-Gaussianity
- Primordial black hole compaction function from stochastic fluctuations in ultra-slow-roll inflation
- Numerical simulation of type II primordial black hole formation
- Extended formalism: Nonspatially Flat Separate Universe Approach
- Primordial Black Holes and Induced Gravitational Waves from a Smooth Crossover beyond Standard Model
- Cosmological Consequences of Domain Walls Biased by Quantum Gravity
- Fundamental Physics and Cosmology with TianQin
- A new approach for simulating PBH formation from generic curvature fluctuations with the Misner-Sharp formalism
- Non-Gaussianities and Primordial Black Holes
- Inflationary relics from an Ultra-Slow-Roll plateau
- Numerical simulations of primordial black hole formation via delayed first-order phase transitions
- Eternal inflation near inflection points: a challenge to primordial black hole models
- Effect of stochastic kicks on primordial black hole abundance and mass via the compaction function
- Primordial black holes and scalar induced gravitational waves from sound speed resonance in non-minimal derivative coupling inflation model
- The Dark Side of the Moon: Listening to Scalar-Induced Gravitational Waves
- formalism: A new formulation for the probability density of the curvature perturbation
- Purely quadratic non-Gaussianity from tachyonic instability: Primordial black holes and scalar-induced gravitational waves