Excursion-set for Primordial Black Holes I: white noise and moving barrier
arXiv:2603.04185 · doi:10.1103/clgf-sqv8
Abstract
In the excursion-set formalism, the mass distribution of primordial black holes (PBHs) is derived from the first-passage time of a random walk describing the density contrast as the coarse-graining scale varies. We address two recent concerns that have been raised about this approach. First, it was argued that the random walks are subject to colored (i.e. correlated over time) noise, making the first-passage-time problem cumbersome. We show that this arises from an incorrect separation of drift and noise when sampling on the Hubble-crossing surface: if Fourier modes are uncorrelated, the noise is strictly white. Moreover, sampling along the Hubble-crossing surface precludes using the density dispersion as a time variable, explaining some pathologies. Sampling instead on a synchronous surface removes both issues. This requires solving a first-passage-time problem with a moving barrier, for which we provide an efficient numerical framework. Second, it was suggested that cloud-in-cloud (i.e. that large black holes may engulf smaller ones) is irrelevant for PBHs and that the excursion set is therefore not needed. While valid for widely separated scales, this statement fails for broad power spectra with enhanced continua of modes. We further show that Press-Schechter estimates neglecting boundary evolution can break down even without cloud-in-cloud effects.
18 pages, 10 figures, matches published version
References in corpus (33)
- The NANOGrav 15-year Data Set: Search for Signals from New Physics
- NANOGrav Hints to Primordial Black Holes as Dark Matter
- Primordial black hole formation in the radiative era: investigation of the critical nature of the collapse
- Calculating the mass spectrum of primordial black holes
- The Threshold for Primordial Black Hole Formation: a Simple Analytic Prescription
- Gravitational Waves Induced by Scalar Perturbations with a Lognormal Peak
- Primordial seeds of supermassive black holes
- First passage time statistics of Brownian motion with purely time dependent drift and diffusion
- Non-Gaussian tail of the curvature perturbation in stochastic ultra-slow-roll inflation: implications for primordial black hole production
- Non-perturbative non-Gaussianity and primordial black holes
- The Formation Probability of Primordial Black Holes
- PBH formation from spherically symmetric hydrodynamical perturbations: a review
- Supermassive black holes from primordial black hole seeds
- Testing Stochastic Gravitational Wave Signals from Primordial Black Holes with Optical Telescopes
- Power spectrum in stochastic inflation
- Primordial Black Hole Formation in Starobinsky's Linear Potential Model
- Statistics of coarse-grained cosmological fields in stochastic inflation
- Primordial black holes from metric preheating: mass fraction in the excursion-set approach
- Clustering of primordial black holes from quantum diffusion during inflation
- The Primordial Black Hole Abundance: The Broader, the Better
- Primordial black holes and induced gravitational waves from logarithmic non-Gaussianity
- Possible evidence of QCD axion stars in HSC and OGLE microlensing events
- Press-Schechter primordial black hole mass functions and their observational constraints
- Primordial black hole compaction function from stochastic fluctuations in ultra-slow-roll inflation
- Dark Matter Simulations with Primordial Black Holes in the Early Universe
- Stochastic inflation beyond slow roll: noise modelling and importance sampling
- Primordial Black Hole Formation from Power Spectrum with Finite-width
- Small-scale clustering of Primordial Black Holes: cloud-in-cloud and exclusion effects
- Unexpected shape of the primordial black hole mass function
- Threshold for PBH formation in the type-II region and its analytical estimation
- A new approach for simulating PBH formation from generic curvature fluctuations with the Misner-Sharp formalism
- Stochastic origin of primordial fluctuations in the Sky
- Primordial black holes with mass ratio-modulated initial clustering: merger suppression and projected constraints