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Exploring Cosmic Origins with CORE: Inflation
We forecast the scientific capabilities to improve our understanding of cosmic inflation of CORE, a proposed CMB space satellite submitted in response to the ESA fifth call for a medium-size mission opportunity. The CORE satellite will map the CMB anisotropies in temperature and polarization in 19 f...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2016
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1088/1475-7516/2018/04/016 http://cds.cern.ch/record/2239944 |
_version_ | 1780952991145132032 |
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author | Finelli, Fabio Bucher, Martin Achúcarro, Ana Ballardini, Mario Bartolo, Nicola Baumann, Daniel Clesse, Sébastien Errard, Josquin Handley, Will Hindmarsh, Mark Kiiveri, Kimmo Kunz, Martin Lasenby, Anthony Liguori, Michele Paoletti, Daniela Ringeval, Christophe Väliviita, Jussi Van Tent, Bartjan Vennin, Vincent Arroja, Frederico Ashdown, Marc Banday, A.J. Banerji, Ranajoy Baselmans, Jochem Bartlett, James G. de Bernardis, Paolo Bersanelli, Marco Bonaldi, Anna Borril, Julian Bouchet, François R. Boulanger, François Brinckmann, Thejs Cai, Zhen-Yi Calvo, Martino Challinor, Anthony Chluba, Jens D'Amico, Guido Delabrouille, Jacques Diego, Jose Maria De Zotti,Gianfranco Desjacques, Vincent Di Valentino, Eleonora Feeney, Stephen Fergusson, James R. Ferraro, Simone Forastieri, Francesco Galli, Silvia García-Bellido, Juan Génova-Santos, Ricardo T. Gerbino, Martina González-Nuevo, Joaquin Grandis, Sebastian Greenslade, Josh Hagstotz, Steffen Hanany, Shaul Hazra, Dhiraj K. Hernández-Monteagudo, Carlos Hivon, Eric Hu, Bin Kovetz, Ely D. Kurki-Suonio, Hannu Lattanzi, Massimiliano Lesgourgues, Julien Lizarraga, Joanes López-Caniego, Marcos Luzzi, Gemma Maffei, Bruno Martins, Carlos J.A.P. Martínez-González, Enrique McCarthy, Darragh Matarrese, Sabino Melchiorri, Alessandro Melin, Jean-Baptiste Monfardini, Alessandro Natoli, Paolo Negrello, Mattia Notari, Alessio Oppizzi, Filippo Paiella, A. Pajer, Enrico Patanchon, Guillaume Patil, Subodh P. Piat, Michael Pisano, Giampaolo Polastri, L. Polenta, Gianluca Poulin, Vivian Quartin, M. Ravenni, Andrea Remazeilles, Mathieu Renzi, Alessandro Roest, Diederik Salvati, Laura Tartari, Andrea Tasinato, Gianmassimo Torrado, Jesús Trappe, Neil Tucci, Marco Urrestilla, Jon Vielva, Patricio van de Weygaert, Rien |
author_facet | Finelli, Fabio Bucher, Martin Achúcarro, Ana Ballardini, Mario Bartolo, Nicola Baumann, Daniel Clesse, Sébastien Errard, Josquin Handley, Will Hindmarsh, Mark Kiiveri, Kimmo Kunz, Martin Lasenby, Anthony Liguori, Michele Paoletti, Daniela Ringeval, Christophe Väliviita, Jussi Van Tent, Bartjan Vennin, Vincent Arroja, Frederico Ashdown, Marc Banday, A.J. Banerji, Ranajoy Baselmans, Jochem Bartlett, James G. de Bernardis, Paolo Bersanelli, Marco Bonaldi, Anna Borril, Julian Bouchet, François R. Boulanger, François Brinckmann, Thejs Cai, Zhen-Yi Calvo, Martino Challinor, Anthony Chluba, Jens D'Amico, Guido Delabrouille, Jacques Diego, Jose Maria De Zotti,Gianfranco Desjacques, Vincent Di Valentino, Eleonora Feeney, Stephen Fergusson, James R. Ferraro, Simone Forastieri, Francesco Galli, Silvia García-Bellido, Juan Génova-Santos, Ricardo T. Gerbino, Martina González-Nuevo, Joaquin Grandis, Sebastian Greenslade, Josh Hagstotz, Steffen Hanany, Shaul Hazra, Dhiraj K. Hernández-Monteagudo, Carlos Hivon, Eric Hu, Bin Kovetz, Ely D. Kurki-Suonio, Hannu Lattanzi, Massimiliano Lesgourgues, Julien Lizarraga, Joanes López-Caniego, Marcos Luzzi, Gemma Maffei, Bruno Martins, Carlos J.A.P. Martínez-González, Enrique McCarthy, Darragh Matarrese, Sabino Melchiorri, Alessandro Melin, Jean-Baptiste Monfardini, Alessandro Natoli, Paolo Negrello, Mattia Notari, Alessio Oppizzi, Filippo Paiella, A. Pajer, Enrico Patanchon, Guillaume Patil, Subodh P. Piat, Michael Pisano, Giampaolo Polastri, L. Polenta, Gianluca Poulin, Vivian Quartin, M. Ravenni, Andrea Remazeilles, Mathieu Renzi, Alessandro Roest, Diederik Salvati, Laura Tartari, Andrea Tasinato, Gianmassimo Torrado, Jesús Trappe, Neil Tucci, Marco Urrestilla, Jon Vielva, Patricio van de Weygaert, Rien |
author_sort | Finelli, Fabio |
collection | CERN |
description | We forecast the scientific capabilities to improve our understanding of cosmic inflation of CORE, a proposed CMB space satellite submitted in response to the ESA fifth call for a medium-size mission opportunity. The CORE satellite will map the CMB anisotropies in temperature and polarization in 19 frequency channels spanning the range 60–600 GHz. CORE will have an aggregate noise sensitivity of 1.7 μK⋅ arcmin and an angular resolution of 5' at 200 GHz. We explore the impact of telescope size and noise sensitivity on the inflation science return by making forecasts for several instrumental configurations. This study assumes that the lower and higher frequency channels suffice to remove foreground contaminations and complements other related studies of component separation and systematic effects, which will be reported in other papers of the series "Exploring Cosmic Origins with CORE." We forecast the capability to determine key inflationary parameters, to lower the detection limit for the tensor-to-scalar ratio down to the 10−3 level, to chart the landscape of single field slow-roll inflationary models, to constrain the epoch of reheating, thus connecting inflation to the standard radiation-matter dominated Big Bang era, to reconstruct the primordial power spectrum, to constrain the contribution from isocurvature perturbations to the 10−3 level, to improve constraints on the cosmic string tension to a level below the presumptive GUT scale, and to improve the current measurements of primordial non-Gaussianities down to the fNLlocal < 1 level. For all the models explored, CORE alone will improve significantly on the present constraints on the physics of inflation. Its capabilities will be further enhanced by combining with complementary future cosmological observations. |
id | cern-2239944 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2016 |
record_format | invenio |
spelling | cern-22399442022-07-25T02:31:16Zdoi:10.1088/1475-7516/2018/04/016http://cds.cern.ch/record/2239944engFinelli, FabioBucher, MartinAchúcarro, AnaBallardini, MarioBartolo, NicolaBaumann, DanielClesse, SébastienErrard, JosquinHandley, WillHindmarsh, MarkKiiveri, KimmoKunz, MartinLasenby, AnthonyLiguori, MichelePaoletti, DanielaRingeval, ChristopheVäliviita, JussiVan Tent, BartjanVennin, VincentArroja, FredericoAshdown, MarcBanday, A.J.Banerji, RanajoyBaselmans, JochemBartlett, James G.de Bernardis, PaoloBersanelli, MarcoBonaldi, AnnaBorril, JulianBouchet, François R.Boulanger, FrançoisBrinckmann, ThejsCai, Zhen-YiCalvo, MartinoChallinor, AnthonyChluba, JensD'Amico, GuidoDelabrouille, JacquesDiego, Jose MariaDe Zotti,GianfrancoDesjacques, VincentDi Valentino, EleonoraFeeney, StephenFergusson, James R.Ferraro, SimoneForastieri, FrancescoGalli, SilviaGarcía-Bellido, JuanGénova-Santos, Ricardo T.Gerbino, MartinaGonzález-Nuevo, JoaquinGrandis, SebastianGreenslade, JoshHagstotz, SteffenHanany, ShaulHazra, Dhiraj K.Hernández-Monteagudo, CarlosHivon, EricHu, BinKovetz, Ely D.Kurki-Suonio, HannuLattanzi, MassimilianoLesgourgues, JulienLizarraga, JoanesLópez-Caniego, MarcosLuzzi, GemmaMaffei, BrunoMartins, Carlos J.A.P.Martínez-González, EnriqueMcCarthy, DarraghMatarrese, SabinoMelchiorri, AlessandroMelin, Jean-BaptisteMonfardini, AlessandroNatoli, PaoloNegrello, MattiaNotari, AlessioOppizzi, FilippoPaiella, A.Pajer, EnricoPatanchon, GuillaumePatil, Subodh P.Piat, MichaelPisano, GiampaoloPolastri, L.Polenta, GianlucaPoulin, VivianQuartin, M.Ravenni, AndreaRemazeilles, MathieuRenzi, AlessandroRoest, DiederikSalvati, LauraTartari, AndreaTasinato, GianmassimoTorrado, JesúsTrappe, NeilTucci, MarcoUrrestilla, JonVielva, Patriciovan de Weygaert, RienExploring Cosmic Origins with CORE: Inflationastro-ph.COAstrophysics and AstronomyWe forecast the scientific capabilities to improve our understanding of cosmic inflation of CORE, a proposed CMB space satellite submitted in response to the ESA fifth call for a medium-size mission opportunity. The CORE satellite will map the CMB anisotropies in temperature and polarization in 19 frequency channels spanning the range 60–600 GHz. CORE will have an aggregate noise sensitivity of 1.7 μK⋅ arcmin and an angular resolution of 5' at 200 GHz. We explore the impact of telescope size and noise sensitivity on the inflation science return by making forecasts for several instrumental configurations. This study assumes that the lower and higher frequency channels suffice to remove foreground contaminations and complements other related studies of component separation and systematic effects, which will be reported in other papers of the series "Exploring Cosmic Origins with CORE." We forecast the capability to determine key inflationary parameters, to lower the detection limit for the tensor-to-scalar ratio down to the 10−3 level, to chart the landscape of single field slow-roll inflationary models, to constrain the epoch of reheating, thus connecting inflation to the standard radiation-matter dominated Big Bang era, to reconstruct the primordial power spectrum, to constrain the contribution from isocurvature perturbations to the 10−3 level, to improve constraints on the cosmic string tension to a level below the presumptive GUT scale, and to improve the current measurements of primordial non-Gaussianities down to the fNLlocal < 1 level. For all the models explored, CORE alone will improve significantly on the present constraints on the physics of inflation. Its capabilities will be further enhanced by combining with complementary future cosmological observations.We forecast the scientific capabilities to improve our understanding of cosmic inflation of CORE, a proposed CMB space satellite submitted in response to the ESA fifth call for a medium-size mission opportunity. The CORE satellite will map the CMB anisotropies in temperature and polarization in 19 frequency channels spanning the range 60-600 GHz. CORE will have an aggregate noise sensitivity of $1.7 \mu$K$\cdot \,$arcmin and an angular resolution of 5' at 200 GHz. We explore the impact of telescope size and noise sensitivity on the inflation science return by making forecasts for several instrumental configurations. This study assumes that the lower and higher frequency channels suffice to remove foreground contaminations and complements other related studies of component separation and systematic effects, which will be reported in other papers of the series "Exploring Cosmic Origins with CORE." We forecast the capability to determine key inflationary parameters, to lower the detection limit for the tensor-to-scalar ratio down to the $10^{-3}$ level, to chart the landscape of single field slow-roll inflationary models, to constrain the epoch of reheating, thus connecting inflation to the standard radiation-matter dominated Big Bang era, to reconstruct the primordial power spectrum, to constrain the contribution from isocurvature perturbations to the $10^{-3}$ level, to improve constraints on the cosmic string tension to a level below the presumptive GUT scale, and to improve the current measurements of primordial non-Gaussianities down to the $f_{NL}^{\rm local} < 1$ level. For all the models explored, CORE alone will improve significantly on the present constraints on the physics of inflation. Its capabilities will be further enhanced by combining with complementary future cosmological observations.arXiv:1612.08270oai:cds.cern.ch:22399442016-12-25 |
spellingShingle | astro-ph.CO Astrophysics and Astronomy Finelli, Fabio Bucher, Martin Achúcarro, Ana Ballardini, Mario Bartolo, Nicola Baumann, Daniel Clesse, Sébastien Errard, Josquin Handley, Will Hindmarsh, Mark Kiiveri, Kimmo Kunz, Martin Lasenby, Anthony Liguori, Michele Paoletti, Daniela Ringeval, Christophe Väliviita, Jussi Van Tent, Bartjan Vennin, Vincent Arroja, Frederico Ashdown, Marc Banday, A.J. Banerji, Ranajoy Baselmans, Jochem Bartlett, James G. de Bernardis, Paolo Bersanelli, Marco Bonaldi, Anna Borril, Julian Bouchet, François R. Boulanger, François Brinckmann, Thejs Cai, Zhen-Yi Calvo, Martino Challinor, Anthony Chluba, Jens D'Amico, Guido Delabrouille, Jacques Diego, Jose Maria De Zotti,Gianfranco Desjacques, Vincent Di Valentino, Eleonora Feeney, Stephen Fergusson, James R. Ferraro, Simone Forastieri, Francesco Galli, Silvia García-Bellido, Juan Génova-Santos, Ricardo T. Gerbino, Martina González-Nuevo, Joaquin Grandis, Sebastian Greenslade, Josh Hagstotz, Steffen Hanany, Shaul Hazra, Dhiraj K. Hernández-Monteagudo, Carlos Hivon, Eric Hu, Bin Kovetz, Ely D. Kurki-Suonio, Hannu Lattanzi, Massimiliano Lesgourgues, Julien Lizarraga, Joanes López-Caniego, Marcos Luzzi, Gemma Maffei, Bruno Martins, Carlos J.A.P. Martínez-González, Enrique McCarthy, Darragh Matarrese, Sabino Melchiorri, Alessandro Melin, Jean-Baptiste Monfardini, Alessandro Natoli, Paolo Negrello, Mattia Notari, Alessio Oppizzi, Filippo Paiella, A. Pajer, Enrico Patanchon, Guillaume Patil, Subodh P. Piat, Michael Pisano, Giampaolo Polastri, L. Polenta, Gianluca Poulin, Vivian Quartin, M. Ravenni, Andrea Remazeilles, Mathieu Renzi, Alessandro Roest, Diederik Salvati, Laura Tartari, Andrea Tasinato, Gianmassimo Torrado, Jesús Trappe, Neil Tucci, Marco Urrestilla, Jon Vielva, Patricio van de Weygaert, Rien Exploring Cosmic Origins with CORE: Inflation |
title | Exploring Cosmic Origins with CORE: Inflation |
title_full | Exploring Cosmic Origins with CORE: Inflation |
title_fullStr | Exploring Cosmic Origins with CORE: Inflation |
title_full_unstemmed | Exploring Cosmic Origins with CORE: Inflation |
title_short | Exploring Cosmic Origins with CORE: Inflation |
title_sort | exploring cosmic origins with core: inflation |
topic | astro-ph.CO Astrophysics and Astronomy |
url | https://dx.doi.org/10.1088/1475-7516/2018/04/016 http://cds.cern.ch/record/2239944 |
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