Exploring cosmic origins with CORE:B-mode component separation

dc.contributor.author Hannu Kurki-Suonio
dc.contributor.author Mario Zannoni
dc.contributor.author V. Lindholm
dc.contributor.author M. Tomasi
dc.contributor.author Carole Tucker
dc.contributor.author François R. Bouchet
dc.contributor.author Sebastian Grandis
dc.contributor.author Diego Molinari
dc.contributor.author Gianluca Polenta
dc.contributor.author Giampaolo Pisano
dc.contributor.author Clive Dickinson
dc.contributor.author Sebastien Clesse
dc.contributor.author Anthony Lasenby
dc.contributor.author Miguel Quartin
dc.contributor.author Bruno Maffei
dc.contributor.author Giuseppe D'Alessandro
dc.contributor.author Fabio Finelli
dc.contributor.author Massimiliano Lattanzi
dc.contributor.author Gemma Luzzi
dc.contributor.author Jens Chluba
dc.contributor.author Alessio Notari
dc.contributor.author A. Tartari
dc.contributor.author A. Pollo
dc.contributor.author Zhen-Yi Cai
dc.contributor.author I. Colantoni
dc.contributor.author Jose M. Diego
dc.contributor.author Vincent Vennin
dc.contributor.author Alessandro Coppolecchia
dc.contributor.author Carlo Burigana
dc.contributor.author Martina Gerbino
dc.contributor.author Mario Ballardini
dc.contributor.author Martin Kunz
dc.contributor.author C. Hervias-Caimapo
dc.contributor.author Jussi Valiviita
dc.contributor.author C. S. Carvalho
dc.contributor.author E. Di Valentino
dc.contributor.author Carlos Martins
dc.contributor.author M. Bonato
dc.contributor.author Nicola Vittorio
dc.contributor.author R. Fernandez-Cobos
dc.contributor.author Peter A. R. Ade
dc.contributor.author Mathieu Remazeilles
dc.contributor.author Alessandro Paiella
dc.contributor.author Tiziana Trombetti
dc.contributor.author M. López-Caniego
dc.contributor.author P. Vielva
dc.contributor.author Anthony Challinor
dc.contributor.author Daniela Paoletti
dc.contributor.author E. Hivon
dc.contributor.author Will Handley
dc.contributor.author Matthew Hills
dc.contributor.author Mario Zannoni
dc.contributor.author Julien Lesgourgues
dc.contributor.author J. Borrill
dc.contributor.author Diego Molinari
dc.contributor.author Anna Bonaldi
dc.contributor.author D. McCarthy
dc.contributor.author B. Van Tent
dc.contributor.author M. Ashdown
dc.contributor.author Josquin Errard
dc.contributor.author R. Allison
dc.contributor.author Ana Achúcarro
dc.contributor.author M. Bucher
dc.contributor.author Jacques Delabrouille
dc.contributor.author E. Martínez-González
dc.contributor.author Karl Young
dc.contributor.author Martin Crook
dc.contributor.author R. Banerji
dc.contributor.author Michele Liguori
dc.contributor.author F. Boulanger
dc.contributor.author Ingunn Kathrine Wehus
dc.contributor.author Carlo Baccigalupi
dc.contributor.author Antony Lewis
dc.contributor.author Simone Ferraro
dc.contributor.author S. Hagstotz
dc.contributor.author Francesco Forastieri
dc.contributor.author Alessandro Buzzelli
dc.contributor.author Shaul Hanany
dc.contributor.author James G. Bartlett
dc.contributor.author Laura Salvati
dc.contributor.author M. Roman
dc.contributor.author Luca Lamagna
dc.contributor.author Martino Calvo
dc.contributor.author N. Trappe
dc.contributor.author G. de Gasperis
dc.contributor.author A. J. Banday
dc.contributor.author Silvia Masi
dc.contributor.author Stephen M. Feeney
dc.contributor.author Thomas D. Kitching
dc.contributor.author L. Polastri
dc.contributor.author Carlo Burigana
dc.contributor.author Thejs Brinckmann
dc.contributor.author S. Matarrese
dc.contributor.author Alessandro Monfardini
dc.contributor.author D. Tramonte
dc.contributor.author Paolo Natoli
dc.contributor.author Mario Ballardini
dc.contributor.author K. Kiiveri
dc.contributor.author M. Piat
dc.contributor.author E. Di Valentino
dc.contributor.author G. de Zotti
dc.contributor.author C. Hernández-Monteagudo
dc.contributor.author Alessandro Melchiorri
dc.contributor.author M. Bonato
dc.contributor.author J. Greenslade
dc.contributor.author Vivian Poulin
dc.contributor.author Jose Alberto Rubino-Martin
dc.contributor.author Mattia Negrello
dc.contributor.author Daniel Baumann
dc.contributor.author P. de Bernardis
dc.contributor.author Jean-Baptiste Melin
dc.contributor.author H. K. Eriksen
dc.contributor.author Marco Bersanelli
dc.contributor.author Theodore Kisner
dc.contributor.author Ricardo Genova-Santos
dc.contributor.author Tiziana Trombetti
dc.contributor.author U. Fuskeland
dc.contributor.author Nicola Bartolo
dc.contributor.author G. Castellano
dc.contributor.author R. Van de Weijgaert
dc.contributor.author J. González-Nuevo
dc.contributor.author S. Galli
dc.contributor.author S. Basak
dc.contributor.author G. Patanchon
dc.control.author Ana Achúcarro
dc.control.author Michele Liguori
dc.control.author Alessandro Buzzelli
dc.control.author A. J. Banday
dc.control.author L. Polastri
dc.control.author Vivian Poulin
dc.control.author Marco Bersanelli
dc.control.author Nicola Bartolo
dc.control.author R. Van de Weijgaert
dc.control.author S. Basak
dc.date.accessioned 2025-06-16T11:15:04Z
dc.date.available 2025-06-16T11:15:04Z
dc.date.issued 2018-04-05
dc.description.abstract We demonstrate that, for the baseline design of the CORE satellite mission, the polarized foregrounds can be controlled at the level required to allow the detection of the primordial cosmic microwave background (CMB) $B$-mode polarization with the desired accuracy at both reionization and recombination scales, for tensor-to-scalar ratio values of ${r\gtrsim 5\times 10^{-3}}$. We consider detailed sky simulations based on state-of-the-art CMB observations that consist of CMB polarization with $��=0.055$ and tensor-to-scalar values ranging from $r=10^{-2}$ to $10^{-3}$, Galactic synchrotron, and thermal dust polarization with variable spectral indices over the sky, polarized anomalous microwave emission, polarized infrared and radio sources, and gravitational lensing effects. Using both parametric and blind approaches, we perform full component separation and likelihood analysis of the simulations, allowing us to quantify both uncertainties and biases on the reconstructed primordial $B$-modes. Under the assumption of perfect control of lensing effects, CORE would measure an unbiased estimate of $r=\left(5 \pm 0.4\right)\times 10^{-3}$ after foreground cleaning. In the presence of both gravitational lensing effects and astrophysical foregrounds, the significance of the detection is lowered, with CORE achieving a $4��$-measurement of $r=5\times 10^{-3}$ after foreground cleaning and $60$% delensing. For lower tensor-to-scalar ratios ($r=10^{-3}$) the overall uncertainty on $r$ is dominated by foreground residuals, not by the 40% residual of lensing cosmic variance. Moreover, the residual contribution of unprocessed polarized point-sources can be the dominant foreground contamination to primordial B-modes at this $r$ level, even on relatively large angular scales, $\ell \sim 50$. Finally, we report two sources of potential bias for the detection of the primordial $B$-modes.[abridged]
dc.description.epage 23
dc.description.spage 23
dc.description.volume 2018
dc.identifier.arxiv http://arxiv.org/abs/1704.04501
dc.identifier.doi 10.1088/1475-7516/2018/04/023
dc.identifier.doi 10.48550/arxiv.1704.04501
dc.identifier.handle 10651/48910
dc.identifier.handle 11245.1/4fb183ba-506e-4110-a568-7e4636375026
dc.identifier.handle 10852/67723
dc.identifier.handle 20.500.14243/427875
dc.identifier.handle 2434/570151
dc.identifier.handle 11577/3270053
dc.identifier.handle 2108/188240
dc.identifier.handle 11573/1121527
dc.identifier.handle 11392/2401404
dc.identifier.handle 2013/ULB-DIPOT:oai:dipot.ulb.ac.be:2013/317578
dc.identifier.issn 1475-7516
dc.identifier.openaire doi_dedup___
dc.identifier.uri https://ror.circle-u.eu/handle/123456789/588701
dc.openaire.affiliation University of Oslo
dc.openaire.affiliation Université Paris Cité
dc.openaire.collaboration 2
dc.publisher IOP Publishing
dc.rights OPEN
dc.rights.license IOP Copyright Policies
dc.source Journal of Cosmology and Astroparticle Physics
dc.subject cosmic background radiation: polarization
dc.subject cosmic background radiation
dc.subject Atomic
dc.subject B-mode: primordial
dc.subject thermal
dc.subject Particle and Plasma Physics
dc.subject CMBR experiments; cosmological parameters from CMBR; gravitational waves and CMBR polarization; inflation; Astronomy and Astrophysics
dc.subject Polarization
dc.subject CMBR experiments
dc.subject CMB POLARIZATION
dc.subject QC
dc.subject QB
dc.subject Physics
dc.subject astro-ph.CO; astro-ph.CO; astro-ph.GA; astro-ph.IM
dc.subject Cosmology: observations
dc.subject cosmological parameters from CMBR
dc.subject Nuclear & Particles Physics
dc.subject 520
dc.subject gravitational waves and CMBR polarization; CMBR experiments; cosmological parameters from CMBR; inflation
dc.subject INTERNAL LINEAR COMBINATION
dc.subject Physical Sciences
dc.subject infrared
dc.subject astro-ph.CO
dc.subject GALACTIC SYNCHROTRON EMISSION
dc.subject Astrophysics - Instrumentation and Methods for Astrophysics
dc.subject Astronomical and Space Sciences
dc.subject Astrophysics - Cosmology and Nongalactic Astrophysics
dc.subject RADIO-SOURCES
dc.subject satellite: Planck
dc.subject Cosmology and Nongalactic Astrophysics (astro-ph.CO)
dc.subject ANGULAR POWER SPECTRUM
dc.subject astro-ph.GA
dc.subject Particles & Fields
dc.subject hydrogen: recombination
dc.subject FOS: Physical sciences
dc.subject parametric
dc.subject Settore FIS/05 - ASTRONOMIA E ASTROFISICA
dc.subject Astronomy & Astrophysics
dc.subject 530
dc.subject cosmic background radiation: B-mode
dc.subject gravitation: lens
dc.subject ionization
dc.subject synchrotron
dc.subject STAR-FORMING GALAXIES
dc.subject Nuclear
dc.subject [PHYS.PHYS.PHYS-INS-DET]Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det]
dc.subject inflation
dc.subject Instrumentation and Methods for Astrophysics (astro-ph.IM)
dc.subject Astrophysique
dc.subject Science & Technology
dc.subject 500
dc.subject Molecular
dc.subject POINT-SOURCE DETECTION
dc.subject methods: data analysis
dc.subject Astrophysics - Astrophysics of Galaxies
dc.subject diffuse radiation
dc.subject [PHYS.PHYS.PHYS-INS-DET] Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det]
dc.subject Astrophysics of Galaxies (astro-ph.GA)
dc.subject PROBE WMAP OBSERVATIONS
dc.subject STATISTICAL PROPERTIES
dc.subject microwaves: emission
dc.subject spectral
dc.subject galaxy
dc.subject [PHYS.ASTR] Physics [physics]/Astrophysics [astro-ph]
dc.subject [PHYS.ASTR]Physics [physics]/Astrophysics [astro-ph]
dc.subject gravitational waves and CMBR polarization
dc.subject MICROWAVE BACKGROUND POLARIZATION
dc.subject astro-ph.IM
dc.subject.fos 01 natural sciences
dc.subject.fos 0103 physical sciences
dc.subject.sdg 13. Climate action
dc.title Exploring cosmic origins with CORE:<i>B</i>-mode component separation
dc.type publication

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