A new map-making algorithm for CMB polarisation experiments
arXiv:1503.03285 · doi:10.1093/mnras/stv1689
Abstract
With the temperature power spectrum of the cosmic microwave background (CMB) at least four orders of magnitude larger than the B-mode polarisation power spectrum, any instrumental imperfections that couple temperature to polarisation must be carefully controlled and/or removed. Here we present two new map-making algorithms that can create polarisation maps that are clean of temperature-to-polarisation leakage systematics due to differential gain and pointing between a detector pair. Where a half wave plate is used, we show that the spin-2 systematic due to differential ellipticity can also by removed using our algorithms. The algorithms require no prior knowledge of the imperfections or temperature sky to remove the temperature leakage. Instead, they calculate the systematic and polarisation maps in one step directly from the time ordered data (TOD). The first algorithm is designed to work with scan strategies that have a good range of crossing angles for each map pixel and the second for scan strategies that have a limited range of crossing angles. The first algorithm can also be used to identify if systematic errors that have a particular spin are present in a TOD. We demonstrate the use of both algorithms and the ability to identify systematics with simulations of TOD with realistic scan strategies and instrumental noise.
11 pages, 6 figures
References in corpus (6)
- A Joint Analysis of BICEP2/Keck Array and Planck Data
- CMB Polarization Systematics Due to Beam Asymmetry: Impact on Inflationary Science
- A Measurement of Gravitational Lensing of the Cosmic Microwave Background by Galaxy Clusters Using Data from the South Pole Telescope
- BICEP2 III: Instrumental Systematics
- Study of the Experimental Probe of Inflationary Cosmology (EPIC)-Intemediate Mission for NASA's Einstein Inflation Probe
- Measurements of E-Mode Polarization and Temperature-E-Mode Correlation in the Cosmic Microwave Background from 100 Square Degrees of SPTpol Data
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- Spin-based removal of instrumental systematics in 21cm intensity mapping surveys
- Fast map-based simulations of systematics in CMB surveys including effects of the scanning strategy
- Recent results and perspectives on cosmology and fundamental physics from microwave surveys