STOchastic LAttice Simulation of hybrid inflation
astro-ph.CO, gr-qc, hep-ph, hep-th
Submitted: 2026-03-05
Updated: 2026-08-03
Comments: 23 pages, 9 figures
Journal ref: JCAP 09 (2026) 061
DOI: 10.1088/1475-7516/2026/09/061
Code: https://github.com/STOchasticLAtticeSimulation/STOLAS_dist
License: http://creativecommons.org/licenses/by/4.0/
The gist: We investigate the spatial profile of the curvature perturbation generated in multi-waterfall hybrid inflation models, which are known to produce various topological defects.
Terminology
Abstract
We investigate the spatial profile of the curvature perturbation generated in multi-waterfall hybrid inflation models, which are known to produce various topological defects. Using the lattice simulation code STOchastic LAttice Simulation, based on the stochastic formalism of inflation, we analyse six cases by varying the number of waterfall fields n and the functional form of the inflaton potential (``Quadratic'' and ``Cubic'' cases). Our statistical analysis shows that the probability density functions (PDFs) and power spectra are broadly consistent with the so-called stochastic- δN algorithm. The ``Cubic'' case also exhibits a characteristic upper bound in the PDF, as discovered in our previous work, that suppresses formation while potentially affecting halo formation. Furthermore, we employ the Euler characteristic as a topological diagnostic tool to identify the structures of the waterfall fields as well as the curvature perturbation. We find that the topological defects, such as domain walls (n=1), cosmic strings (n=2), and monopoles (n=3), are reconnected during inflation into finer structures by the stochastic noise, making their correlation lengths much smaller than the Hubble scale at the critical point of the waterfall phase transition counterintuitively. The Euler characteristic also implies global structures of the curvature perturbation for n=1, though we do not conclude if they are due to the domain wall, because neither the strings (n=2) nor monopoles (n=3) leave such structures. The global structures of the curvature perturbation will provide a novel probe for the physics of the early universe.
Sources
- Planck 2018 results. X. Constraints on inflation
- Constraints on Primordial Black Holes
- The basics of primordial black hole formation and abundance estimation
- Observational Evidence for Primordial Black Holes: A Positivist Perspective
- Hybrid inflation along waterfall trajectories
- Contribution of the hybrid inflation waterfall to the primordial curvature perturbation
- On the waterfall behavior in hybrid inflation
- Non-Gaussianity from the hybrid potential
- Curvature perturbation spectra from waterfall transition, black hole constraints and non-Gaussianity
- Formation of primordial black holes from non-Gaussian perturbations produced in a waterfall transition
- The hybrid inflation waterfall and the primordial curvature perturbation
- Slow Roll during the Waterfall Regime: The Small Coupling Window for SUSY Hybrid Inflation
- Primordial Black Holes
- Density Perturbations in Hybrid Inflation Using a Free Field Theory Time-Delay Approach
- Massive Primordial Black Holes from Hybrid Inflation as Dark Matter and the seeds of Galaxies
- Generation of fluctuations during inflation: comparison of stochastic and field-theoretic approaches
- A new algorithm for calculating the curvature perturbations in stochastic inflation
- Non-perturbative approach for curvature perturbations in stochastic-$\delta N$ formalism
- Correlation Functions in Stochastic Inflation
- Can massive primordial black holes be produced in mild waterfall hybrid inflation?
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