Disorder in the Early Universe
arXiv:1409.6698 · doi:10.1088/1475-7516/2015/03/020
Abstract
Little is known about the microscopic physics that gave rise to inflation in our universe. There are many reasons to wonder if the underlying description requires a careful arrangement of ingredients or if inflation was the result of an essentially random process. At a technical level, randomness in the microphysics of inflation is closely related to disorder in solids. We develop the formalism of disorder for inflation and investigate the observational consequences of quenched disorder. We find that a common prediction is the presence of additional noise in the power spectrum or bispectrum. At a phenomenological level, these results can be recast in terms of a modulating field, allowing us to write the quadratic maximum likelihood estimator for this noise. Preliminary constraints on disorder can be derived from existing analyses but significant improvements should be possible with a dedicated treatment.
29 pages; v2: typos fixed, minor changes, references added
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Cited by in corpus (5)
- Disorder Averaging and its UV (Dis)Contents
- Multifield Stochastic Particle Production: Beyond a Maximum Entropy Ansatz
- Statistical coupling constants from hidden sector entanglement
- Stochastic Particle Production in a de Sitter Background
- Non-Uniqueness of Classical Inflationary Trajectories on a High-Dimensional Landscape