Starting inflation from inhomogeneous initial conditions with momentum
arXiv:2212.04479 · doi:10.1088/1475-7516/2023/10/046
Abstract
We investigate the circumstances under which cosmic inflation can arise from very inhomogeneous initial conditions using numerical relativity simulations. Previous studies have not considered cases with non-zero momentum density due to technical challenges with solving the coupled Einstein constraint equations. Here we address these, introducing and comparing several different ways of constructing cosmological initial conditions with inhomogeneous scalar field and time derivative profiles. We evolve such initial conditions with large inhomogeneities in both single- and two-field inflationary models. We study cases where the initial gradient and kinetic energy are much larger than the inflationary energy scale, and black holes can form, as well as cases where the initial scalar potential energy is comparable, as in scenarios where inflation occurs at nearly Planckian densities, finding large-field inflation to be generally robust. We consider examples of initial conditions where a large scalar field velocity towards non-inflationary values would prevent inflation from occurring in the homogeneous case, finding that the addition of large gradients in the scalar field can actually dilute this effect, with the increased expansion and non-vanishing restoring force leading to inflation.
28 pages,10 figures,changed to match JCAP version
References in corpus (16)
- BICEP / Keck XIII: Improved Constraints on Primordial Gravitational Waves using Planck, WMAP, and BICEP/Keck Observations through the 2018 Observing Season
- Ultrarelativistic black hole formation
- Evolution to a smooth universe in an ekpyrotic contracting phase with w > 1
- Hybrid -attractors, primordial black holes and gravitational wave backgrounds
- An Improved Gauge Driver for the Generalized Harmonic Einstein System
- Chaotic Inflation in Supergravity after Planck and BICEP2
- Hybrid cosmological attractors
- Conformal Thin-Sandwich Solver for Generic Initial Data
- The constraint equations for the Einstein-scalar field system on compact manifolds
- Non-uniqueness in conformal formulations of the Einstein constraints
- Inhomogeneous initial conditions for inflation: A wibbly-wobbly timey-wimey path to salvation
- CTTK: A new method to solve the initial data constraints in numerical relativity
- Inflating an Inhomogeneous Universe
- Cosmological initial data for numerical relativity
- Evolution of black holes through a nonsingular cosmological bounce
- A de Sitter no-hair theorem for 3+1d Cosmologies with isometry group forming 2-dimensional orbits
Cited by in corpus (8)
- On the initial singularity and extendibility of flat quasi-de Sitter spacetimes
- Generic initial data for binary boson stars
- Cosmology using numerical relativity
- Robustness of inflation to kinetic inhomogeneities
- Quantitative classicality in cosmological interactions during inflation
- Stochastic Inflation in Numerical Relativity
- Bunch-Davies initial conditions and non-perturbative inflationary dynamics in Numerical Relativity
- Probability of the Initial Conditions for Inflation and Slow Contraction