Stochastic inflation with gradient interactions
arXiv:2509.05124 · doi:10.1088/1475-7516/2025/12/024
Abstract
Stochastic inflation rests on the separate-universe approximation, i.e. the ability to describe long-wavelength fluctuations in an inflating universe as homogeneous perturbations of its background dynamics. Although this approximation is valid in most cases, it has been recently pointed out that it breaks down during transition periods between attractor and non-attractor phases. Such transitions are ubiquitous in single-field models giving rise to enhanced perturbations at small scales, that are required to form primordial black holes. The current inability to apply the stochastic-inflation program in such models is therefore one of the main obstacles to investigating the role of backreaction in primordial-black-hole scenarios. In this work, we show how gradient interactions can be incorporated in stochastic inflation, via a set of Langevin equations of higher dimension. We apply our formalism to a few cases of interest, including one with a sharp transition. In all cases, in the classical limit we show that gradient corrections as predicted from cosmological perturbation theory are properly recovered. We uncover the existence of a "pullback" effect by which the tails of the first-passage-time distributions are dampened by gradient interactions. We finally discuss the role of backreaction in the presence of gradient interactions.
39 pages plus appendices (total 52 pages), 11 figures, matches published version in JCAP
References in corpus (79)
- New cosmological constraints on primordial black holes
- The Effective Field Theory of Inflation
- A general proof of the conservation of the curvature perturbation
- The inflationary prediction for primordial non-gaussianity
- Microlensing constraints on primordial black holes with the Subaru/HSC Andromeda observation
- Primordial black holes from single field models of inflation
- Massive Primordial Black Holes from Hybrid Inflation as Dark Matter and the seeds of Galaxies
- Horizon crossing and inflation with large η
- Primordial black hole dark matter from single field inflation
- Steepest growth of the power spectrum and primordial black holes
- Primordial Black Holes as Generators of Cosmic Structures
- Femtolensing by Dark Matter Revisited
- Correlation Functions in Stochastic Inflation
- Revisiting constraints on asteroid-mass primordial black holes as dark matter candidates
- Enhancement of superhorizon scale inflationary curvature perturbations
- The Separate Universe Approach and the Evolution of Nonlinear Superhorizon Cosmological Perturbations
- Generation of fluctuations during inflation: comparison of stochastic and field-theoretic approaches
- Seeding primordial black holes in multifield inflation
- Quantum diffusion during inflation and primordial black holes
- The exponential tail of inflationary fluctuations: consequences for primordial black holes
- Primordial Black Holes from Inflation and Quantum Diffusion
- Conserved cosmological perturbations
- PBHs and secondary GWs from ultra slow roll and punctuated inflation
- Ultra slow-roll inflation demystified
- Primordial seeds of supermassive black holes
- Stochastic growth of quantum fluctuations during slow-roll inflation
- On the divergences of inflationary superhorizon perturbations
- Accelerating early massive galaxy formation with primordial black holes
- Revisiting non-Gaussianity from non-attractor inflation models
- Non-Gaussian tail of the curvature perturbation in stochastic ultra-slow-roll inflation: implications for primordial black hole production
- Anatomy of single-field inflationary models for primordial black holes
- Robustness of Inflation to Inhomogeneous Initial Conditions
- Non-perturbative non-Gaussianity and primordial black holes
- Turning in the landscape: a new mechanism for generating Primordial Black Holes
- Ultra-slow-roll inflation with quantum diffusion
- Logarithmic Duality of the Curvature Perturbation
- Curvature perturbation at the local extremum of the inflaton's potential
- Dissecting the growth of the power spectrum for primordial black holes
- Stochastic inflation in phase space: Is slow roll a stochastic attractor?
- Stochastic inflation beyond slow roll
- Probing Primordial Features with the Stochastic Gravitational Wave Background
- A new algorithm for calculating the curvature perturbations in stochastic inflation
- Implications of stochastic effects for primordial black hole production in ultra-slow-roll inflation
- Supermassive black holes from primordial black hole seeds
- Highly non-Gaussian tails and primordial black holes from single-field inflation
- On the slope of curvature power spectrum in non-attractor inflation
- An analytic approach to non-slow-roll inflation
- The attractive behaviour of ultra-slow-roll inflation
- Non-perturbative approach for curvature perturbations in stochastic- formalism
- Did JWST observe imprints of axion miniclusters or primordial black holes?
- Power spectrum in stochastic inflation
- The rapid-turn inflationary attractor
- Primordial black holes from stochastic tunnelling
- Primordial Black Hole Formation in Starobinsky's Linear Potential Model
- Statistics of coarse-grained cosmological fields in stochastic inflation
- Inflationary Butterfly Effect: Non-perturbative Dynamics From Small-Scale Features
- Stochastic Effects in Hybrid Inflation
- The separate-universe approach and sudden transitions during inflation
- Gradient expansion approach to nonlinear superhorizon perturbations II -- a single scalar field --
- Ultra-Slow-Roll Inflation on the Lattice I: Backreaction and Nonlinear Effects
- Clustering of primordial black holes from quantum diffusion during inflation
- Highly asymmetric probability distribution from a finite-width upward step during inflation
- Hamiltonian formalism for cosmological perturbations: the separate-universe approach
- Uphill inflation
- Stochastic non-attractor inflation
- Primordial black hole compaction function from stochastic fluctuations in ultra-slow-roll inflation
- Stochastic Inflation in General Relativity
- STOLAS: STOchastic LAttice Simulation of cosmic inflation
- Smooth vs instant inflationary transitions: steepest growth re-examined and primordial black holes
- Quantum diffusion and large primordial perturbations from inflation
- Extended formalism: Nonspatially Flat Separate Universe Approach
- Constant roll and non-Gaussian tail in light of logarithmic duality
- Computing First-Passage Times with the Functional Renormalisation Group
- Stochastic origin of primordial fluctuations in the Sky
- Hamiltonian formalism for cosmological perturbations: fixing the gauge
- Dip and non-linearity in the curvature perturbation from inflation with a transient non-slow-roll stage
- On the Hamilton-Jacobi approach to inflation beyond slow roll
- Primordial black holes from a curvaton: the role of bimodal distributions
- The validity of separate-universe approach in transient ultra-slow-roll inflation
Cited by in corpus (5)
- Stochastic Inflation in Numerical Relativity
- formalism with gradient interactions
- Deviations from Gaussian White Noise in Stochastic Inflation
- Nonlinear Lattice Framework for Inflation: Bridging stochastic inflation and the formalism
- Effect of stochastic kicks on primordial black hole abundance and mass via the compaction function