$δN$ formalism with gradient interactions

Fuente: arXiv
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Main Authors: Ahmadi, S. Mohammad, Ahmadi, Nahid
Format: Preprint
Published: 2026
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author Ahmadi, S. Mohammad
Ahmadi, Nahid
author_facet Ahmadi, S. Mohammad
Ahmadi, Nahid
contents The standard $δN$ formalism is a cornerstone technique for calculating nonlinear curvature perturbations on super-Hubble scales. However, its validity relies heavily on the separate universe assumption, in which spatial gradients are neglected. This approximation is known to break down in scenarios that are critical for primordial black hole formation, such as transitions to an ultra-slow-roll phase, where gradient interactions induce a significant non-conservation of the comoving curvature perturbation. In this paper, we introduce a framework that systematically incorporates gradient corrections into the $δN$ formalism at a desired order by adding an effective source term to the background Klein--Gordon equation. This approach allows for a fully nonlinear treatment of curvature perturbations at the end of inflation considering initial conditions at the time of horizon exit. By computing the equilateral non-Gaussianity parameter $f_{\mathrm{NL}}^{\mathrm{eq}}$, we demonstrate that our method captures essential physical features missed by the standard $δN$ approach, offering a simple yet rigorous pathway to determine the nonlinear evolution expected from full cosmological perturbation theory.
format Preprint
id arxiv_https___arxiv_org_abs_2602_00902
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle $δN$ formalism with gradient interactions
Ahmadi, S. Mohammad
Ahmadi, Nahid
General Relativity and Quantum Cosmology
High Energy Physics - Theory
The standard $δN$ formalism is a cornerstone technique for calculating nonlinear curvature perturbations on super-Hubble scales. However, its validity relies heavily on the separate universe assumption, in which spatial gradients are neglected. This approximation is known to break down in scenarios that are critical for primordial black hole formation, such as transitions to an ultra-slow-roll phase, where gradient interactions induce a significant non-conservation of the comoving curvature perturbation. In this paper, we introduce a framework that systematically incorporates gradient corrections into the $δN$ formalism at a desired order by adding an effective source term to the background Klein--Gordon equation. This approach allows for a fully nonlinear treatment of curvature perturbations at the end of inflation considering initial conditions at the time of horizon exit. By computing the equilateral non-Gaussianity parameter $f_{\mathrm{NL}}^{\mathrm{eq}}$, we demonstrate that our method captures essential physical features missed by the standard $δN$ approach, offering a simple yet rigorous pathway to determine the nonlinear evolution expected from full cosmological perturbation theory.
title $δN$ formalism with gradient interactions
topic General Relativity and Quantum Cosmology
High Energy Physics - Theory
url https://arxiv.org/abs/2602.00902