Robustness of Inflation to Inhomogeneous Initial Conditions
arXiv:1608.04408 · doi:10.1088/1475-7516/2017/09/025
Abstract
We consider the effects of inhomogeneous initial conditions in both the scalar field profile and the extrinsic curvature on different inflationary models. In particular, we compare the robustness of small field inflation to that of large field inflation, using numerical simulations with Einstein gravity in 3+1 dimensions. We find that small field inflation can fail in the presence of subdominant gradient energies, suggesting that it is much less robust to inhomogeneities than large field inflation, which withstands dominant gradient energies. However, we also show that small field inflation can be successful even if some regions of spacetime start out in the region of the potential that does not support inflation. In the large field case, we confirm previous results that inflation is robust if the inflaton occupies the inflationary part of the potential. Furthermore, we show that increasing initial scalar gradients will not form sufficiently massive inflation-ending black holes if the initial hypersurface is approximately flat. Finally, we consider the large field case with a varying extrinsic curvature K, such that some regions are initially collapsing. We find that this may again lead to local black holes, but overall the spacetime remains inflationary if the spacetime is open, which confirms previous theoretical studies.
14 pages, 14 figures, updated for journal version and amended sign convention for chi
References in corpus (10)
- How to move a black hole without excision: gauge conditions for the numerical evolution of a moving puncture
- The Measure Problem in Cosmology
- Measure and Probability in Cosmology
- On the measure problem in slow roll inflation and loop quantum cosmology
- Chaotic Inflation in Supergravity after Planck and BICEP2
- How Many -Folds Should We Expect from High-Scale Inflation?
- Back Reaction of Cosmological Perturbations and the Cosmological Constant Problem
- Unitary Evolution and Cosmological Fine-Tuning
- Inflating an Inhomogeneous Universe
- Constraining cosmological ultra-large scale structure using numerical relativity
Cited by in corpus (86)
- Black holes, gravitational waves and fundamental physics: a roadmap
- Trans-Planckian Censorship and Inflationary Cosmology
- GRChombo: An adaptable numerical relativity code for fundamental physics
- Inflation after Planck: Judgment Day
- Robustness of Inflation to Large Tensor Perturbations
- On the problem of initial conditions for inflation
- Inflationary Butterfly Effect: Non-perturbative Dynamics From Small-Scale Features
- Lessons for adaptive mesh refinement in numerical relativity
- The Effects of Potential Shape on Inhomogeneous Inflation
- Formation of Relativistic Axion Stars
- Nonsingular Ekpyrotic Cosmology with a Nearly Scale-Invariant Spectrum of Cosmological Perturbations and Gravitational Waves
- Primordial black hole formation with full numerical relativity
- Small Field Polynomial Inflation: Reheating, Radiative Stability and Lower Bound
- Radiation from Global Topological Strings using Adaptive Mesh Refinement: Methodology and Massless Modes
- Reheating after S-Brane Ekpyrosis
- Initial conditions for plateau inflation: a case study
- Quantum Incompleteness of Inflation
- 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
- The role of fluctuation-dissipation dynamics in setting initial conditions for inflation
- Quantum Circuit Complexity of Primordial Perturbations
- Chiral Nelson--Barr Models: Quality and Cosmology
- A Bumpy Start to a Smooth Ride: Onset of Inflation amid Backreaction from Inhomogeneities
- Swampland, Trans-Planckian Censorship and Fine-Tuning Problem for Inflation: Tunnelling Wavefunction to the Rescue
- Lattice Simulations of Inflation
- On the initial singularity and extendibility of flat quasi-de Sitter spacetimes
- A Finite Measure for the Initial Conditions of Inflation
- Starting inflation from inhomogeneous initial conditions with momentum
- Stability and the Gauge Problem in Non-Perturbative Cosmology
- Analog vacuum decay from vacuum initial conditions
- Initial conditions for inflation
- Running primordial perturbations: Inflationary Dynamics and Observational Constraints
- Quantization of inhomogeneous spacetimes with cosmological constant term
- Einselection, Equilibrium and Cosmology
- Cosmology using numerical relativity
- Solving the initial conditions problem for modified gravity theories
- Dynamics of inflation with mutually orthogonal vector fields in a closed universe
- A numerical relativity scheme for cosmological simulations
- Kerr-NUT-de Sitter as an Inhomogeneous Non-Singular Bouncing Cosmology
- Inhomogeneous Initial Data and Small-Field Inflation
- Robustness of inflation to kinetic inhomogeneities
- Stochastic inflation and primordial black holes
- Stability of a viable non-minimal bounce
- Primordial flat frame -- a new view on inflation
- Numerical Relativity as a New Tool for Fundamental Cosmology
- Expectations for Inflationary Observables: Simple or Natural?
- Cosmological initial data for numerical relativity
- Initial Conditions of Inflation in a Bianchi I Universe
- Stochastic inflation with gradient interactions
- Flows into inflation: An effective field theory approach
- Solving the Cosmological Entropy Issue with a Higgs Dilaton
- Evolution of black holes through a nonsingular cosmological bounce
- Stable contraction in Brans-Dicke cosmology
- New Anisotropic Exact Solution in Multifield Cosmology
- Asymptotic Behavior of Cosmologies with in 2+1 Dimensions
- Power-law Inflation Satisfies Penrose's Weyl Curvature Hypothesis
- Quantum Hubble horizon
- First investigation of void statistics in numerical relativity simulations
- Quantum potentiality in Inhomogeneous Cosmology
- Saving the universe with finite volume effects
- Structure formation and quasi-spherical collapse from initial curvature perturbations with numerical relativity simulations
- Gauge/frame invariant variables for the numerical relativity study of cosmological spacetimes
- A solution to the initial condition problems of inflation : NATON
- Quantitative classicality in cosmological interactions during inflation
- TwInflation
- Populating the landscape in an inhomogeneous universe
- Flows into de Sitter space from anisotropic initial conditions: An effective field theory approach
- Consistent Cosmic Bubble Embeddings
- On the difficulty of generating gravitational wave turbulence in the early universe
- A Relativistic Gas of Inflatons as an Initial State for Inflation
- Bubbles in a box: Eliminating edge nucleation in cold-atom simulators of vacuum decay
- Cosmological Zero Modes
- Nonlinear dynamics of flux compactification
- Stochastic Inflation in Numerical Relativity
- Accretion of a Symmetry Breaking Scalar Field by a Schwarzschild Black Hole
- Bunch-Davies initial conditions and non-perturbative inflationary dynamics in Numerical Relativity
- Topology of Cosmological Black Holes
- On the asymptotics of 3+1D cosmologies with bounded scalar potential and isometry group forming 2-dimensional orbits
- Probability of the Initial Conditions for Inflation and Slow Contraction
- A plausible solution to the problem of initial conditions for inflation
- Primordial gravitational waves and perturbations during an inhomogeneous inflation
- Insights into the highest natural scale: Finite naturalness challenges inflationary dynamics
- Finite inflation in curved space
- Inflation from inhomogeneous polarized Gowdy model
- Inflation in a Gaussian Random Landscape
- Nonlinear Lattice Framework for Inflation: Bridging stochastic inflation and the formalism