The reheating constraints to natural inflation in Horndeski gravity
arXiv:2112.07205 · doi:10.1140/epjc/s10052-022-10236-w
Abstract
For the subclass of Horndeski theory of gravity, we investigate the effects of reheating on the predictions of natural inflation. In the presence of derivative self-interaction of a scalar field and its kinetic coupling to the Einstein tensor, the gravitational friction to inflaton dynamics is enhanced. As a result, the tensor-to-scalar ratio is suppressed. We place the observational constraints on a natural inflation model and show that the model is now consistent with the observational data for some plausible range of the model parameter , mainly due to the suppressed tensor-to-scalar ratio. To be consistent with the data at the ( confidence) level, a slightly longer duration of inflation than usually assumed is preferred. Since the duration of inflation, for any specific inflaton potential, is related to reheating parameters, including the duration , temperature , and equation-of-state parameter during reheating, we imposed the effects of reheating to the inflationary predictions to put further constraints. The results show that the duration of inflation is affected by considerations of reheating, mainly by the and parameters. If reheating occurs instantaneously for which and , the duration of inflation is estimated to be , where the exact value is less sensitive to the model parameter compatible with the CMB data. The duration of inflation is longer (or shorter) than for the equation of state larger (or smaller) than 1/3 hence . The maximum temperature at the end of reheating is GeV, which corresponds to the instantaneous reheating. The low reheating temperature, as low as a few MeV, is also possible when is closer to .
11 pages, 3 figures
References in corpus (14)
- BICEP / Keck XIII: Improved Constraints on Primordial Gravitational Waves using Planck, WMAP, and BICEP/Keck Observations through the 2018 Observing Season
- Horndeski theory and beyond: a review
- Reheating in Inflationary Cosmology: Theory and Applications
- Reheating constraints to inflationary models
- Higgs G-inflation
- Inflation and the Scale Dependent Spectral Index: Prospects and Strategies
- UV-Protected Inflation
- Reheating temperature from the CMB
- Natural Inflation: Consistency with Cosmic Microwave Background Observations of Planck and BICEP2
- Natural Inflation: status after WMAP 3-year data
- Cosmological constraints on slow-roll inflation: an update
- Inflation at its Endpoint
- Primordial black holes and induced gravitational waves from inflation in the Horndeski theory of gravity
- Natural inflation with natural number of e-foldings