First Estimations of Cosmological Parameters From BOOMERANG

The anisotropy of the cosmic microwave background radiation contains information about the contents and history of the universe. We report new limits on cosmological parameters derived from the angular power spectrum measured in the first Antarctic flight of the BOOMERANG experiment. Within the fram...

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Published in:Physical Review D
Main Authors: Lange, A, Ade, P, Bock, J, Bond, JR, Borrill, J, Boscaleri, A, Coble, K, Crill, B, Bernardis, P, Farese, P, Ferreira, P, Ganga, K, Giacometti, M, Hivon, E, Hristov, V, Iacoangeli, A, Jaffe, A, Martinis, L, Masi, S, Mauskopf, P, Melchiorri, A, Montroy, T, Netterfield, C, Pascale, E, Piacentini, F
Format: Article in Journal/Newspaper
Language:unknown
Published: 2016
Subjects:
Online Access:https://doi.org/10.1103/PhysRevD.63.042001
https://ora.ox.ac.uk/objects/uuid:b4777a82-e5dd-4020-b6c7-e055e6284743
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author Lange, A
Ade, P
Bock, J
Bond, JR
Borrill, J
Boscaleri, A
Coble, K
Crill, B
Bernardis, P
Farese, P
Ferreira, P
Ganga, K
Giacometti, M
Hivon, E
Hristov, V
Iacoangeli, A
Jaffe, A
Martinis, L
Masi, S
Mauskopf, P
Melchiorri, A
Montroy, T
Netterfield, C
Pascale, E
Piacentini, F
author_facet Lange, A
Ade, P
Bock, J
Bond, JR
Borrill, J
Boscaleri, A
Coble, K
Crill, B
Bernardis, P
Farese, P
Ferreira, P
Ganga, K
Giacometti, M
Hivon, E
Hristov, V
Iacoangeli, A
Jaffe, A
Martinis, L
Masi, S
Mauskopf, P
Melchiorri, A
Montroy, T
Netterfield, C
Pascale, E
Piacentini, F
author_sort Lange, A
collection ORA - Oxford University Research Archive
container_issue 4
container_title Physical Review D
container_volume 63
description The anisotropy of the cosmic microwave background radiation contains information about the contents and history of the universe. We report new limits on cosmological parameters derived from the angular power spectrum measured in the first Antarctic flight of the BOOMERANG experiment. Within the framework of inflation-motivated adiabatic cold dark matter models, and using only weakly restrictive prior probabilites on the age of the universe and the Hubble expansion parameter $h$, we find that the curvature is consistent with flat and that the primordial fluctuation spectrum is consistent with scale invariant, in agreement with the basic inflation paradigm. We find that the data prefer a baryon density $\Omega_b h^2$ above, though similar to, the estimates from light element abundances and big bang nucleosynthesis. When combined with large scale structure observations, the BOOMERANG data provide clear detections of both dark matter and dark energy contributions to the total energy density $\Omega_{\rm {tot}}$, independent of data from high redshift supernovae.
format Article in Journal/Newspaper
genre Antarc*
Antarctic
genre_facet Antarc*
Antarctic
geographic Antarctic
Hubble
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Hubble
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long_lat ENVELOPE(158.317,158.317,-80.867,-80.867)
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op_doi https://doi.org/10.1103/PhysRevD.63.042001
op_relation doi:10.1103/PhysRevD.63.042001
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spelling ftuloxford:oai:ora.ox.ac.uk:uuid:b4777a82-e5dd-4020-b6c7-e055e6284743 2025-01-16T19:11:26+00:00 First Estimations of Cosmological Parameters From BOOMERANG Lange, A Ade, P Bock, J Bond, JR Borrill, J Boscaleri, A Coble, K Crill, B Bernardis, P Farese, P Ferreira, P Ganga, K Giacometti, M Hivon, E Hristov, V Iacoangeli, A Jaffe, A Martinis, L Masi, S Mauskopf, P Melchiorri, A Montroy, T Netterfield, C Pascale, E Piacentini, F 2016-07-29 https://doi.org/10.1103/PhysRevD.63.042001 https://ora.ox.ac.uk/objects/uuid:b4777a82-e5dd-4020-b6c7-e055e6284743 unknown doi:10.1103/PhysRevD.63.042001 https://ora.ox.ac.uk/objects/uuid:b4777a82-e5dd-4020-b6c7-e055e6284743 https://doi.org/10.1103/PhysRevD.63.042001 info:eu-repo/semantics/embargoedAccess Journal article 2016 ftuloxford https://doi.org/10.1103/PhysRevD.63.042001 2022-06-28T20:21:47Z The anisotropy of the cosmic microwave background radiation contains information about the contents and history of the universe. We report new limits on cosmological parameters derived from the angular power spectrum measured in the first Antarctic flight of the BOOMERANG experiment. Within the framework of inflation-motivated adiabatic cold dark matter models, and using only weakly restrictive prior probabilites on the age of the universe and the Hubble expansion parameter $h$, we find that the curvature is consistent with flat and that the primordial fluctuation spectrum is consistent with scale invariant, in agreement with the basic inflation paradigm. We find that the data prefer a baryon density $\Omega_b h^2$ above, though similar to, the estimates from light element abundances and big bang nucleosynthesis. When combined with large scale structure observations, the BOOMERANG data provide clear detections of both dark matter and dark energy contributions to the total energy density $\Omega_{\rm {tot}}$, independent of data from high redshift supernovae. Article in Journal/Newspaper Antarc* Antarctic ORA - Oxford University Research Archive Antarctic Hubble ENVELOPE(158.317,158.317,-80.867,-80.867) Physical Review D 63 4
spellingShingle Lange, A
Ade, P
Bock, J
Bond, JR
Borrill, J
Boscaleri, A
Coble, K
Crill, B
Bernardis, P
Farese, P
Ferreira, P
Ganga, K
Giacometti, M
Hivon, E
Hristov, V
Iacoangeli, A
Jaffe, A
Martinis, L
Masi, S
Mauskopf, P
Melchiorri, A
Montroy, T
Netterfield, C
Pascale, E
Piacentini, F
First Estimations of Cosmological Parameters From BOOMERANG
title First Estimations of Cosmological Parameters From BOOMERANG
title_full First Estimations of Cosmological Parameters From BOOMERANG
title_fullStr First Estimations of Cosmological Parameters From BOOMERANG
title_full_unstemmed First Estimations of Cosmological Parameters From BOOMERANG
title_short First Estimations of Cosmological Parameters From BOOMERANG
title_sort first estimations of cosmological parameters from boomerang
url https://doi.org/10.1103/PhysRevD.63.042001
https://ora.ox.ac.uk/objects/uuid:b4777a82-e5dd-4020-b6c7-e055e6284743