Published November 2014 | Version Published + Submitted
Journal Article Open

Planck 2013 results. VIII. HFI photometric calibration and mapmaking

Abstract

This paper describes the methods used to produce photometrically calibrated maps from the Planck High Frequency Instrument (HFI) cleaned, time-ordered information. HFI observes the sky over a broad range of frequencies, from 100 to 857  GHz. To obtain the best calibration accuracy over such a large range, two different photometric calibration schemes have to be used. The 545 and 857 GHz data are calibrated by comparing flux-density measurements of Uranus and Neptune with models of their atmospheric emission. The lower frequencies (below 353  GHz) are calibrated using the solar dipole. A component of this anisotropy is time-variable, owing to the orbital motion of the satellite in the solar system. Photometric calibration is thus tightly linked to mapmaking, which also addresses low-frequency noise removal. By comparing observations taken more than one year apart in the same configuration, we have identified apparent gain variations with time. These variations are induced by non-linearities in the read-out electronics chain. We have developed an effective correction to limit their effect on calibration. We present several methods to estimate the precision of the photometric calibration. We distinguish relative uncertainties (between detectors, or between frequencies) and absolute uncertainties. Absolute uncertainties lie in the range from 0.54% to 10% from 100 to 857  GHz. We describe the pipeline used to produce the maps from the HFI timelines, based on the photometric calibration parameters, and the scheme used to set the zero level of the maps a posteriori. We also discuss the cross-calibration between HFI and the SPIRE instrument on board Herschel. Finally we summarize the basic characteristics of the set of HFI maps included in the 2013 Planck data release.

Additional Information

© 2014 ESO. Article published by EDP Sciences. Received 21 March 2013; Accepted 8 March 2014; Published online 29 October 2014. The development of Planck has been supported by: ESA; CNES and CNRS/INSU-IN2P3-INP (France); ASI, CNR, and INAF (Italy); NASA and DoE (USA); STFC and UKSA (UK); CSIC, MICINN and JA (Spain); Tekes, AoF and CSC (Finland); DLR and MPG (Germany); CSA (Canada); DTU Space (Denmark); SER/SSO (Switzerland); RCN (Norway); SFI (Ireland); FCT/MCTES (Portugal); and PRACE (EU). A description of the Planck Collaboration and a list of its members with the technical or scientific activities they have been involved into, can be found at http://www.rssd.esa.int/index.php?project=PLANCK&page=PlanckCollaboration.

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Submitted - 1303.5069.pdf

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Additional details

Identifiers

Eprint ID
96851
Resolver ID
CaltechAUTHORS:20190701-075622398

Related works

Funding

European Space Agency (ESA)
Centre National d'Études Spatiales (CNES)
Centre National de la Recherche Scientifique (CNRS)
Institut National des Sciences de l'Univers (INSU)
Agenzia Spaziale Italiana (ASI)
Consiglio Nazionale delle Ricerche (CNR)
Istituto Nazionale di Astrofisica (INAF)
NASA
Department of Energy (DOE)
Science and Technology Facilities Council (STFC)
United Kingdom Space Agency (UKSA)
Consejo Superior de Investigaciones Científicas (CSIC)
Ministerio de Economía, Industria y Competitividad (MINECO)
Junta de Andalucía
Spanish Supercomputing Network (RES)
Finnish Ministry of Employment and the Economy
Academy of Finland
Finnish IT Center for Science (CSC)
Deutsches Zentrum für Luft- und Raumfahrt (DLR)
Max Planck Society
Canadian Space Agency (CSA)
DTU Space (Denmark)
State Secretariat for Education and Research (Switzerland)
Swiss Space Office (SSO)
Research Council of Norway
Science Foundation, Ireland
Fundação para a Ciência e a Tecnologia (FCT)
Ministério da Ciência, Tecnologia e Ensino Superior (MCTES)
Partnership for Advanced Computing in Europe (PRACE)

Dates

Created
2019-07-02
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Updated
2023-03-15
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