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 Antarctic flight of the BOOMERANG experiment within the framework o...

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Main Authors: Lange, A E, Ade, P A R, Bock, J J, Bond, J R, Borrill, J, Boscaleri, A, Coble, K, Crill, B P, De Bernardis, P, Farese, P, Ferreira, P, Ganga, K, Giacometti, M, Hivon, E, Hristov, V V, Iacoangeli, A, Jaffe, A H, Martinis, L, Masi, S, Mauskopf, P D, Melchiorri, A, Montroy, T, Netterfield, C B, Pascale, E, Piacentini, F, Pogosyan, D, Prunet, S, Rao, S, Romeo, G, Ruhl, J E, Scaramuzzi, F, Sforza, D M
Language:English
Published: 2001
Subjects:
Online Access:http://cds.cern.ch/record/436373
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author Lange, A E
Ade, P A R
Bock, J J
Bond, J R
Borrill, J
Boscaleri, A
Coble, K
Crill, B P
De Bernardis, P
Farese, P
Ferreira, P
Ganga, K
Giacometti, M
Hivon, E
Hristov, V V
Iacoangeli, A
Jaffe, A H
Martinis, L
Masi, S
Mauskopf, P D
Melchiorri, A
Montroy, T
Netterfield, C B
Pascale, E
Piacentini, F
Pogosyan, D
Prunet, S
Rao, S
Romeo, G
Ruhl, J E
Scaramuzzi, F
Sforza, D M
author_facet Lange, A E
Ade, P A R
Bock, J J
Bond, J R
Borrill, J
Boscaleri, A
Coble, K
Crill, B P
De Bernardis, P
Farese, P
Ferreira, P
Ganga, K
Giacometti, M
Hivon, E
Hristov, V V
Iacoangeli, A
Jaffe, A H
Martinis, L
Masi, S
Mauskopf, P D
Melchiorri, A
Montroy, T
Netterfield, C B
Pascale, E
Piacentini, F
Pogosyan, D
Prunet, S
Rao, S
Romeo, G
Ruhl, J E
Scaramuzzi, F
Sforza, D M
author_sort Lange, A E
collection CERN Document Server (CDS)
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 Antarctic flight of the BOOMERANG experiment within the framework of inflation-motivated adiabatic cold dark matter models. Using a weak prior on the Hubble expansion parameter $h$ we find that the curvature is close to flat and the primoridal fluctuation spectrum is nearly 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 evidence for both dark matter and dark energy contributions to the total energy density $\Omega_{tot}$.
genre Antarc*
Antarctic
genre_facet Antarc*
Antarctic
geographic Antarctic
Hubble
The Antarctic
geographic_facet Antarctic
Hubble
The Antarctic
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institution Open Polar
language English
long_lat ENVELOPE(158.317,158.317,-80.867,-80.867)
op_collection_id ftcern
op_relation http://cds.cern.ch/record/436373
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spelling ftcern:oai:cds.cern.ch:436373 2025-01-16T19:01:38+00:00 First Estimations of Cosmological Parameters From BOOMERANG Lange, A E Ade, P A R Bock, J J Bond, J R Borrill, J Boscaleri, A Coble, K Crill, B P De Bernardis, P Farese, P Ferreira, P Ganga, K Giacometti, M Hivon, E Hristov, V V Iacoangeli, A Jaffe, A H Martinis, L Masi, S Mauskopf, P D Melchiorri, A Montroy, T Netterfield, C B Pascale, E Piacentini, F Pogosyan, D Prunet, S Rao, S Romeo, G Ruhl, J E Scaramuzzi, F Sforza, D M 2001 http://cds.cern.ch/record/436373 eng eng http://cds.cern.ch/record/436373 astro-ph/0005004 oai:cds.cern.ch:436373 Astrophysics and Astronomy 2001 ftcern 2018-07-28T04:30:26Z 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 Antarctic flight of the BOOMERANG experiment within the framework of inflation-motivated adiabatic cold dark matter models. Using a weak prior on the Hubble expansion parameter $h$ we find that the curvature is close to flat and the primoridal fluctuation spectrum is nearly 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 evidence for both dark matter and dark energy contributions to the total energy density $\Omega_{tot}$. Other/Unknown Material Antarc* Antarctic CERN Document Server (CDS) Antarctic Hubble ENVELOPE(158.317,158.317,-80.867,-80.867) The Antarctic
spellingShingle Astrophysics and Astronomy
Lange, A E
Ade, P A R
Bock, J J
Bond, J R
Borrill, J
Boscaleri, A
Coble, K
Crill, B P
De Bernardis, P
Farese, P
Ferreira, P
Ganga, K
Giacometti, M
Hivon, E
Hristov, V V
Iacoangeli, A
Jaffe, A H
Martinis, L
Masi, S
Mauskopf, P D
Melchiorri, A
Montroy, T
Netterfield, C B
Pascale, E
Piacentini, F
Pogosyan, D
Prunet, S
Rao, S
Romeo, G
Ruhl, J E
Scaramuzzi, F
Sforza, D M
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
topic Astrophysics and Astronomy
topic_facet Astrophysics and Astronomy
url http://cds.cern.ch/record/436373