Reheating ACTs on Starobinsky and Higgs inflation
arXiv:2505.01129 · doi:10.1103/km3q-rm34
Abstract
In the recent sixth data release (DR6) of the Atacama Cosmology Telescope (ACT) collaboration, the value of for the scalar spectral index is reported, which excludes the Starobinsky and Higgs inflationary models at level. In this paper, we perform a Bayesian inference of the parameters of the Starobinsky or Higgs inflationary model with non-instantaneous reheating using the Markov chain Monte Carlo method. For the analysis, we use observational data on the cosmic microwave background collected by the Planck and ACT collaborations and on baryonic acoustic oscillations from the DESI collaboration. The reheating stage is modelled by a single parameter . Using the modified Boltzmann code CLASS and the cobaya software with the GetDist package, we perform a direct inference of the model parameter space and obtain their posterior distributions. Using the Kullback--Leibler divergence, we estimate the information gain from the data, yielding bits for the reheating parameter. Inclusion of the ACT DR6 data provides more information about the reheating stage compared to analysis without ACT data. We draw constraints on the reheating temperature and the average equation of state. While the former can vary within orders of magnitude, values in the credible interval indicate a sufficiently low reheating temperature; for the latter there is a clear preference for values greater than , which means that the conventional equations of state for dust and relativistic matter are excluded with more than level of significance. However, there still is a big part of parameter space where Starobinsky and Higgs inflationary models exhibit a high degree of consistency with the latest observational data, particularly from ACT DR6. Therefore, it is premature to reject these models.
10 pages, 4 figures, 4 tables
References in corpus (8)
- The Standard Model Higgs boson as the inflaton
- BICEP / Keck XIII: Improved Constraints on Primordial Gravitational Waves using Planck, WMAP, and BICEP/Keck Observations through the 2018 Observing Season
- Reheating in Inflationary Cosmology: Theory and Applications
- Nonperturbative Dynamics Of Reheating After Inflation: A Review
- Violent Preheating in Inflation with Nonminimal Coupling
- Scalaron the mighty: producing dark matter and baryon asymmetry at reheating
- Fractional attractors in light of the latest ACT observations
- BICEP/Keck Constraints on Attractor Models of Inflation and Reheating
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- Harrison-Zeldovich attractor: From Planck to ACT results
- Confronting Inflation and Reheating with Observations: Improved Predictions
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- Beyond the Starobinsky model after ACT
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- Leptogenesis and neutrino mass with one right-handed neutrino and Higgs inflaton
- Inflationary models in a minimally coupled gravity: Constraints from , BICEP/, and ACT
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