Oscillation in the inflaton potential: Exact numerical analysis and comparison with the recent and forthcoming CMB datasets

dc.contributor.authorAich, Moumita
dc.contributor.authorHazra, Dhiraj Kumar
dc.contributor.authorSriramkumar, L.
dc.contributor.authoret al.
dc.date.accessioned2012-03-05T08:45:09Z
dc.date.available2012-03-05T08:45:09Z
dc.date.issued2011-06-15
dc.description.abstractAmongst the multitude of inflationary models currently available, models that lead to features in the primordial scalar spectrum are drawing increasing attention, since certain features have been found to provide a better fit to the CMB data than the conventional, nearly scale invariant, primordial spectrum. In this work, we carry out an exact numerical analysis of two models that lead to oscillations over all scales in the scalar power spectrum. We consider the model described by a quadratic potential which is superposed by a sinusoidal modulation and the recently popular axion monodromy model. Since the oscillations continue even onto smaller scales, in addition to the WMAP data, we also compare the models with the small scale data from ACT. Though, both the models, broadly, result in oscillations in the spectrum, interestingly, we find that, while the monodromy model leads to a considerably better fit to the data in comparison to the standard power law spectrum, the quadratic potential superposed with a sinusoidal modulation does not improve the fit to a similar extent. We also carry out forecasting of the parameters using simulated Planck data for both the models. We show that the Planck mock data performs better in constraining the model parameters as compared to the presently available CMB datasets.en_US
dc.identifier.urihttp://hdl.handle.net/11007/395
dc.language.isoenen_US
dc.relation.ispartofseriesIUCAA preprients;14/2011
dc.subjectNumerical analysisen_US
dc.subjectWMAPen_US
dc.subjectCMBen_US
dc.titleOscillation in the inflaton potential: Exact numerical analysis and comparison with the recent and forthcoming CMB datasetsen_US
dc.typeArticleen_US

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