Cosmological parameter estimation and the spectral index from inflation |
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Authors: | Edmund J. Copeland,Ian J. Grivell,& Andrew R. Liddle |
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Affiliation: | Centre for Theoretical Physics, University of Sussex, Falmer, Brighton BN1 9QH,;Astronomy Centre, University of Sussex, Falmer, Brighton BN1 9QH |
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Abstract: | Accurate estimation of cosmological parameters from microwave background anisotropies requires high-accuracy understanding of the cosmological model. Normally, a power-law spectrum of density perturbations is assumed, in which case the spectral index n can be measured to around ± 0.004 using microwave anisotropy satellites such as MAP Planck . However, inflationary models generically predict that the spectral index n of the density perturbation spectrum will be scale-dependent. We carry out a detailed investigation of the measurability of this scale dependence by Planck , including the influence of polarization on the parameter estimation. We also estimate the increase in the uncertainty in all other parameters if the scale dependence has to be included. This increase applies even if the scale dependence is too small to be measured, unless it is assumed absent. We study the implications for inflation models, beginning with a brief examination of the generic slow-roll inflation situation, and then move to a detailed examination of a recently devised hybrid inflation model for which the scale dependence of n may be observable. |
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Keywords: | cosmology: theory |
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