Planck 2015 results. VI. LFI mapmaking
arXiv:1502.01585 · doi:10.1051/0004-6361/201525813
Abstract
This paper describes the mapmaking procedure applied to Planck LFI (Low Frequency Instrument) data. The mapmaking step takes as input the calibrated timelines and pointing information. The main products are sky maps of , and Stokes components. For the first time, we present polarization maps at LFI frequencies. The mapmaking algorithm is based on a destriping technique, enhanced with a noise prior. The Galactic region is masked to reduce errors arising from bandpass mismatch and high signal gradients. We apply horn-uniform radiometer weights to reduce effects of beam shape mismatch. The algorithm is the same as used for the 2013 release, apart from small changes in parameter settings. We validate the procedure through simulations. Special emphasis is put on the control of systematics, which is particularly important for accurate polarization analysis. We also produce low-resolution versions of the maps, and corresponding noise covariance matrices. These serve as input in later analysis steps and parameter estimation. The noise covariance matrices are validated through noise Monte Carlo simulations. The residual noise in the map products is characterized through analysis of half-ring maps, noise covariance matrices, and simulations.
References in corpus (21)
- Planck 2015 results. XXIV. Cosmology from Sunyaev-Zeldovich cluster counts
- Planck 2015 results. XIV. Dark energy and modified gravity
- Planck 2015 results. XXVII. The Second Planck Catalogue of Sunyaev-Zeldovich Sources
- Planck 2015 results. XV. Gravitational lensing
- Planck 2015 results. X. Diffuse component separation: Foreground maps
- Planck 2015 results. IX. Diffuse component separation: CMB maps
- Planck 2015 results. XXI. The integrated Sachs-Wolfe effect
- Planck 2015 results. XXII. A map of the thermal Sunyaev-Zeldovich effect
- Planck 2015 results. XIX. Constraints on primordial magnetic fields
- Planck 2015 results. XXVI. The Second Planck Catalogue of Compact Sources
- Planck 2015 results. XXIII. The thermal Sunyaev-Zeldovich effect--cosmic infrared background correlation
- Planck 2015 results. XXV. Diffuse low-frequency Galactic foregrounds
- Planck 2015 results. XXVIII. The Planck Catalogue of Galactic Cold Clumps
- Planck 2015 results. IV. Low Frequency Instrument beams and window functions
- Planck 2015 results. III. LFI systematic uncertainties
- Planck 2015 results. V. LFI calibration
- Planck 2015 results. XII. Full Focal Plane simulations
- Planck 2015 results. VII. HFI TOI and beam processing
- Making sky maps from Planck data
- Planck 2015 results. II. Low Frequency Instrument data processing
- Making Maps from Planck LFI 30GHz Data
Cited by in corpus (30)
- The Simons Observatory: Science goals and forecasts
- Planck 2015 results. XXIV. Cosmology from Sunyaev-Zeldovich cluster counts
- Planck 2018 results. IV. Diffuse component separation
- Planck 2015 results. XIV. Dark energy and modified gravity
- Planck 2015 results. XV. Gravitational lensing
- Planck 2015 results. X. Diffuse component separation: Foreground maps
- Planck 2015 results. IX. Diffuse component separation: CMB maps
- Planck 2015 results. XXI. The integrated Sachs-Wolfe effect
- Planck 2015 results. XXII. A map of the thermal Sunyaev-Zeldovich effect
- Planck 2015 results. XIX. Constraints on primordial magnetic fields
- Planck 2015 results. XXVI. The Second Planck Catalogue of Compact Sources
- The Atacama Cosmology Telescope: Component-separated maps of CMB temperature and the thermal Sunyaev-Zel'dovich effect
- Planck 2015 results. XXV. Diffuse low-frequency Galactic foregrounds
- Planck 2015 results. XXVIII. The Planck Catalogue of Galactic Cold Clumps
- Planck 2015 results. IV. Low Frequency Instrument beams and window functions
- Planck 2015 results. III. LFI systematic uncertainties
- Planck 2015 results. V. LFI calibration
- Planck 2015 results. XII. Full Focal Plane simulations
- Planck 2015 results. VII. HFI TOI and beam processing
- Planck intermediate results. XLVIII. Disentangling Galactic dust emission and cosmic infrared background anisotropies
- Planck 2015 results. II. Low Frequency Instrument data processing
- Constraints on the redshift evolution of astrophysical feedback with Sunyaev-Zeldovich effect cross-correlations
- Planck intermediate results. XLII. Large-scale Galactic magnetic fields
- Mitigating the optical depth degeneracy using the kinematic Sunyaev-Zel'dovich effect with CMB-S4
- Planck intermediate results. XLIX. Parity-violation constraints from polarization data
- Planck intermediate results. XLI. A map of lensing-induced B-modes
- Making maps of Cosmic Microwave Background polarization for B-mode studies: the POLARBEAR example
- Planck Observations of M33
- The PICASSO map-making code: application to a simulation of the QUIJOTE northern sky survey
- Receiver development for BICEP Array, a next-generation CMB polarimeter at the South Pole