Inflation Wars: A New Hope
Abstract
We explore a class of primordial power spectra that can fit the observed anisotropies in the cosmic microwave background well and that predicts a value for the Hubble parameter consistent with the local measurement of km/s/Mpc. This class of primordial power spectrum consists of a continuous deformation between the best-fit power law primordial power spectrum and the primordial power spectrum derived from the modified Richardson-Lucy deconvolution algorithm applied to the s of best-fit power law primordial power spectrum. We find that linear interpolation half-way between the power law and modified Richardson-Lucy power spectra fits the Planck data better than the best-fit CDM by . In effect, this class of deformations of the primordial power spectra offer a new dimension which is correlated with the Hubble parameter. This correlation causes the best-fit value for to shift and the uncertainty to expand to km/s/Mpc. When considering the Planck dataset combined with the Cepheid measurement, the best-fit becomes km/s/Mpc. We also compute a Bayes factor of in favor of the deformation model.
Cite
@article{arxiv.2006.12710,
title = {Inflation Wars: A New Hope},
author = {Ryan E. Keeley and Arman Shafieloo and Dhiraj Kumar Hazra and Tarun Souradeep},
journal= {arXiv preprint arXiv:2006.12710},
year = {2020}
}
Comments
6 pages, 4 figures