English

Scientific optimization of a ground-based CMB polarization experiment

Astrophysics 2008-11-26 v3

Abstract

We investigate the science goals achievable with the upcoming generation of ground-based Cosmic Microwave Background polarization experiments and calculate the optimal sky coverage for such an experiment including the effects of foregrounds. We find that with current technology an E-mode measurement will be sample-limited, while a B-mode measurement will be detector-noise-limited. We conclude that a 300 sq deg survey is an optimal compromise for a two-year experiment to measure both E and B-modes, and that ground-based polarization experiments can make an important contribution to B-mode surveys. Focusing on one particular experiment, QUaD, a proposed bolometric polarimeter operating from the South Pole, we find that a ground-based experiment can make a high significance measurement of the acoustic peaks in the E-mode spectrum, and will be able to detect the gravitational lensing signal in the B-mode spectrum. Such an experiment could also directly detect the gravitational wave component of the B-mode spectrum if the amplitude of the signal is close to current upper limits. We also investigate how a ground-based experiment can improve constraints on the cosmological parameters. We estimate that by combining two years of QUaD data with the four-year WMAP data, an optimized ground-based polarization experiment can improve constraints on cosmological parameters by a factor of two. If the foreground contamination can be reduced, the measurement of the tensor-to-scalar ratio can be improved by up to a factor of six over that obtainable from WMAP alone.

Keywords

Cite

@article{arxiv.astro-ph/0309610,
  title  = {Scientific optimization of a ground-based CMB polarization experiment},
  author = {M. Bowden and A. N. Taylor and K. M. Ganga and P. A. R. Ade and J. J. Bock and G. Cahill and J. E. Carlstrom and S. E. Church and W. K. Gear and J. R. Hinderks and W. Hu and B. G. Keating and J. Kovac and A . E. Lange and E. M. Leitch and O. E. Mallie and S. J. Melhuish and J. A. Murphy and L. Piccirillo and C. Pryke and B. A. Rusholme and C. O'Sullivan and K. Thompson},
  journal= {arXiv preprint arXiv:astro-ph/0309610},
  year   = {2008}
}

Comments

17 pages, 11 figures replaced with version accepted by MNRAS

R2 v1 2026-07-22T08:28:21.168Z