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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...

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Autores principales: 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
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1475-7516/2018/04/016
http://cds.cern.ch/record/2239944
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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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