Simulated forecasts for primordial B-mode searches in ground-based experiments
Abstract
Detecting the imprint of inflationary gravitational waves on the -mode polarization of the Cosmic Microwave Background (CMB) is one of the main science cases for current and next-generation CMB experiments. In this work we explore some of the challenges that ground-based facilities will have to face in order to carry out this measurement in the presence of Galactic foregrounds and correlated atmospheric noise. We present forecasts for Stage-3 (S3) and planned Stage-4 (S4) experiments based on the analysis of simulated sky maps using a map-based Bayesian foreground cleaning method. Our results thus consistently propagate the uncertainties on foreground parameters such as spatially-varying spectral indices, as well as the bias on the measured tensor-to-scalar ratio caused by an incorrect modelling of the foregrounds. We find that S3 and S4-like experiments should be able to put constraints on of the order and respectively, assuming instrumental systematic effects are under control. We further study deviations from the fiducial foreground model, finding that, while the effects of a second polarized dust component would be minimal on both S3 and S4, a 2\% polarized anomalous dust emission (AME) component would be clearly detectable by Stage-4 experiments.
Cite
@article{arxiv.1608.00551,
title = {Simulated forecasts for primordial B-mode searches in ground-based experiments},
author = {David Alonso and Joanna Dunkley and Sigurd Naess and Ben Thorne},
journal= {arXiv preprint arXiv:1608.00551},
year = {2017}
}
Comments
19 pages, 11 figures