Scientific optimization of a ground-based CMB polarization experiment
arXiv:astro-ph/0309610 · doi:10.1111/j.1365-2966.2004.07506.x
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.
17 pages, 11 figures replaced with version accepted by MNRAS
References in corpus (17)
- First Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Determination of Cosmological Parameters
- First Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Foreground Emission
- Wilkinson Microwave Anisotropy Probe (WMAP) First Year Observations: TE Polarization
- Detection of Polarization in the Cosmic Microwave Background using DASI
- First Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Parameter Estimation Methodology
- A limit on the detectability of the energy scale of inflation
- Dark Synergy: Gravitational Lensing and the CMB
- Separation of Gravitational-Wave and Cosmic-Shear Contributions to Cosmic Microwave Background Polarization
- Determining Neutrino Mass from the CMB Alone
- The Cosmic Microwave Background Anisotropy Power Spectrum measured by Archeops
- Analysis of CMB polarization on an incomplete sky
- All-sky astrophysical component separation with Fast Independent Component Analysis (FastICA)
- Constraining slow-roll inflation with WMAP and 2dF
- Towards a model of full-sky Galactic synchrotron intensity and linear polarisation: a re-analysis of the Parkes data
- Zeldovich flow on cosmic vacuum background: new exact nonlinear analytical solution
- Detectability of Microwave Background Polarization
- Cosmic Microwave Background Polarisation: foreground contrast and component separation
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- Considerations in optimizing CMB polarization experiments to constrain inflationary physics
- Cassiopeia A: dust factory revealed via submillimetre polarimetry
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- Weak Lensing of the CMB: Sampling Errors on B-Modes
- Separating E and B types of polarization on an incomplete sky
- Single-field inflation constraints from CMB and SDSS data
- Eyes Wide Open - Optimising Cosmological Surveys in a Crowded Market
- Impact of reionization on CMB polarization tests of slow-roll inflation
- CMB Temperature Polarization Correlation and Primordial Gravitational Waves
- Separating polarized cosmological and galactic emissions for CMB B-mode polarization experiments
- The Cosmic Microwave Background and Inflation Parameters
- A Beginner's Guide to the Theory of CMB Temperature and Polarization Power Spectra in the Line-of-Sight Formalism
- Detecting relic gravitational waves in the CMB: Comparison of different methods
- CMB Polarization due to Scattering in Clusters
- Stable indications of relic gravitational waves in Wilkinson Microwave Anisotropy Probe data and forecasts for the Planck mission
- Detecting Relic Gravitational Waves in the CMB: Comparison of Planck and Ground-based Experiments
- An efficient phase-shifting scheme for bolometric additive interferometry
- Constraints on the Tensor-to-Scalar ratio for non-power-law models
- Cross-Correlation Studies with CMB Polarization Maps
- Gravitational waves from galaxy encounters
- Optimizing interferometer experiments for CMB B mode measurement
- Fast map-based simulations of systematics in CMB surveys including effects of the scanning strategy
- A Consistency Relation for the CMB B-mode Polarization in the Squeezed Limit
- Modeling Integrated Properties and the Polarization of the Sunyaev-Zeldovich Effect