A model-independent fit to Planck and BICEP2 data
arXiv:1405.7188 · doi:10.1103/PhysRevD.90.063007
Abstract
Inflation is the leading theory to describe elegantly the initial conditions that led to structure formation in our universe. In this paper, we present a novel phenomenological fit to the Planck, WMAP polarisation (WP) and the BICEP2 datasets using an alternative parameterisation. Instead of starting from inflationary potentials and computing the inflationary observables, we use a phenomenological parameterisation due to Mukhanov, describing inflation by an effective equation-of-state, in terms of the number of e-folds and two phenomenological parameters and . Within such a parametrisation, which captures the different inflationary models in a model-independent way, the values of the scalar spectral index , its running and the tensor-to-scalar ratio are predicted, given a set of parameters . We perform a Markov Chain Monte Carlo analysis of these parameters, and we show that the combined analysis of Planck and WP data favours the Starobinsky and Higgs inflation scenarios. Assuming that the BICEP2 signal is not entirely due to foregrounds, the addition of this last data set prefers instead the chaotic models. The constraint we get from Planck and WP data alone on the derived tensor-to-scalar ratio is at ~CL, value which is consistent with the one quoted from the BICEP2 collaboration analysis, , after foreground subtraction. This is not necessarily at odds with the tension found between Planck and BICEP2 measurements when analysing data in terms of the usual and parameters, given that the parameterisation used here includes, implicitly, a running spectral index.
7 pages and 5 figures
References in corpus (14)
- The Standard Model Higgs boson as the inflaton
- Reheating constraints to inflationary models
- Relic Neutrinos, thermal axions and cosmology in early 2014
- The Imaginary Starobinsky Model
- Natural Chaotic Inflation and UV Sensitivity
- Light sterile neutrinos after BICEP-2
- Cosmological constraints on neutrinos after BICEP2
- or Not : Testing the Simplest Inflationary Potential
- Suppressing the impact of a high tensor-to-scalar ratio on the temperature anisotropies
- Is Higgs Inflation Dead?
- Blue Gravity Waves from BICEP2 ?
- How much can we learn about the physics of inflation?
- Compensation for large tensor modes with iso-curvature perturbations in CMB anisotropies
- Distinguishing between Extra Natural Inflation and Natural Inflation after BICEP2
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- BICEP's acceleration
- False vacuum energy dominated inflation with large and the importance of
- Inflationary attractors from nonminimal coupling
- Inflationary attractors from a non-canonical kinetic term