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arXiv:2606.14853·v2·Cosmology and Nongalactic Astrophysics

The limits of lattice inflation: a cautionary tale

Will Barker🇨🇿 · Benjamin Gladwyn🇬🇧 · Sebastian Zell🇩🇪

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Abstract

Cosmological lattice simulations have become important tools for studying non-perturbative dynamics in the early Universe. Many widely used codes, however, approximate the gravitational background by an exact Friedmann-Lemaître-Robertson-Walker (FLRW) spacetime and neglect metric perturbations. We show that, during inflation, this approximation prevents the freezing of superhorizon modes. During slow roll, the curvature power spectrum decays as , while the deviation becomes substantially stronger during ultra-slow roll. As a result, inflationary observables can be significantly distorted. In contrast, reheating studies appear to be considerably less sensitive to the omission of metric perturbations. We propose a practical criterion for assessing the validity of FLRW simulations based on the inclusion of first-order metric perturbations, and implement it in CosmoLattice.

Comments: 19 pages, 12 figures, 9 appendices; v2: improvements in response to community feedback, especially clarifying that small provides no criterion for the validity of the FLRW approximation

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