Robust CMB polarisation mapmaking with a rotating half-wave plate
Wuhyun Sohn, Simon Biquard, Josquin Errard, Radek Stompor
astro-ph.IM, astro-ph.CO
Submitted: 2026-06-30
Comments: 19 pages, 8 figures
Code: https://github.com/CMBSciPol/furax
License: http://creativecommons.org/licenses/by-nc-sa/4.0/
The gist: We present a novel mapmaking method for obtaining unbiased estimates of CMB polarisation, tailored to modern CMB experiments with a rotating half-wave plate.
Terminology
Abstract
We present a novel mapmaking method for obtaining unbiased estimates of CMB polarisation, tailored to modern CMB experiments with a rotating half-wave plate. These experiments are exposed to strong unpolarised contaminant sources, such as atmospheric emission and ground pickup, which can be several orders of magnitude stronger than the sky signal. Our mapmaker mitigates these systematic effects by marginalising over all signals that vary slowly compared to the timescale of a polarimeter's angle rotation on the sky, while recovering high-fidelity polarisation maps. When the variability timescales of the unpolarised signals exceed a quarter of the half-wave plate rotation period, the method can produce maps with nearly optimal noise levels and minimal contamination. Furthermore, if the half-wave plate rotation period is sufficiently short relative to the beam-scale crossing time, the method efficiently mitigates the sky intensity-to-polarisation leakage. This mapmaker, named the Polarisation-Optimised Map-Making Estimator (POMME), is implemented within the open-source FURAX package and is ready for application to upcoming ground-based CMB surveys.
Sources
- Half-wave-plate non idealities propagated to component separated CMB B-modes
- Performance of a continuously rotating half-wave plate on the POLARBEAR telescope
- A Measurement of the Largest-Scale CMB E-mode Polarization with CLASS
- CMB Polarization Systematics Due to Beam Asymmetry: Impact on Inflationary Science
- Modeling and characterization of the SPIDER half-wave plate
- SANEPIC: A Map-Making Method for Timestream Data From Large Arrays
- MADmap: A Massively Parallel Maximum-Likelihood Cosmic Microwave Background Map-Maker
- MAPPRAISER: A massively parallel map-making framework for multi-kilo pixel CMB experiments
- Iterative destriping and photometric calibration for Planck-HFI, polarized, multi-detector map-making
- BICEP2 I: Detection Of B-mode Polarization at Degree Angular Scales
- A Measurement of the Cosmic Microwave Background B-Mode Polarization Power Spectrum at Sub-Degree Scales with POLARBEAR
- Measurements of E-Mode Polarization and Temperature-E-Mode Correlation in the Cosmic Microwave Background from 100 Square Degrees of SPTpol Data
- Making CMB temperature and polarization maps with Madam
- Furax: A Modular JAX Framework for Linear Operators in Astrophysical and Cosmological Data Analysis
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