Expectations for Inflationary Observables: Simple or Natural?
arXiv:1709.01192 · doi:10.1088/1475-7516/2017/12/032
Abstract
We describe the general inflationary dynamics that can arise with a single, canonically coupled field where the inflaton potential is a 4-th order polynomial. This scenario yields a wide range of combinations of the empirical spectral observables, , and . However, not all combinations are possible and next-generation cosmological experiments have the ability to rule out all inflationary scenarios based on this potential. Further, we construct inflationary priors for this potential based on physically motivated choices for its free parameters. These can be used to determine the degree of tuning associated with different combinations of , and and will facilitate treatments of the inflationary model selection problem. Finally, we comment on the implications of these results for the naturalness of the overall inflationary paradigm. We argue that ruling out all simple potentials would not necessarily imply that the inflationary paradigm itself was unnatural, but that this eventuality would increase the importance of building inflationary scenarios in the context of broader paradigms of ultra-high energy physics.
28 pages, 12 figures; references added
References in corpus (14)
- The NumPy array: a structure for efficient numerical computation
- Monodromy in the CMB: Gravity Waves and String Inflation
- Gauge invariant MSSM inflaton
- A Delicate Universe
- Inflation and the Scale Dependent Spectral Index: Prospects and Strategies
- Ultra slow-roll inflation demystified
- Bayesian Analysis of Inflation: Parameter Estimation for Single Field Models
- Accidental Inflation in String Theory
- MCMC analysis of WMAP3 and SDSS data points to broken symmetry inflaton potentials and provides a lower bound on the tensor to scalar ratio
- Attraction towards an inflection point inflation
- MultiModeCode: An efficient numerical solver for multifield inflation
- Inflection-point Higgs Inflation
- Constraining Inflation
- Fine-tuning criteria for inflation and the search for primordial gravitational waves