Baryon acoustic oscillations in the Lyα forest of BOSS quasars
Author
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Busca, N. G.
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Delubac, T.
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Rich, J.
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Bailey, S.
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Font Ribera, A.
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Kirkby, D.
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Le Goff, J. M.
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Pieri, M. M.
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Slosar, A.
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Aubourg, É.
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Bautista, J. E.
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Bizyaev, D.
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Blomqvist, M.
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Bolton, A. S.
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Bovy, J.
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Brewington, H.
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Borde, A.
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Brinkmann, J.
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Carithers, B.
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Croft, R. A. C.
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Dawson, K. S.
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Ebelke, G.
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Eisenstein, D. J.
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Hamilton, J. C.
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Ho, S.
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Hogg, D. W.
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Honscheid, K.
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Lee, K. G.
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Lundgren, B.
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Malanushenko, E.
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Malanushenko, V.
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Margala, D.
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Maraston, C.
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Mehta, K.
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Miralda Escudé, J.
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Myers, A. D.
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Nichol, R. C.
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Noterdaeme, P.
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Olmstead, M. D.
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Oravetz, D.
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Palanque-Delabrouille, Nathalie
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Pan, K.
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Pâris, I.
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Percival, W. J.
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Petitjean, P.
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Roe, N. A.
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Rollinde, E.
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Ross, N. P.
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Rossi, G.
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Schlegel, D. J.
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Schneider, D. P.
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Shelden, A.
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Sheldon, E. S.
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Simmons, A.
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Snedden, S.
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Tinker, J. L.
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Viel, M.
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Weaver, B. A.
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Weinberg, D. H.
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White, M.
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Yèche, C.
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York, D. G.
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Admission date
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2014-02-05T13:54:10Z
Available date
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2014-02-05T13:54:10Z
Publication date
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2013
Cita de ítem
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A&A 552, A96 (2013)
en_US
Identifier
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DOI: 10.1051/0004-6361/201220724
Identifier
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https://repositorio.uchile.cl/handle/2250/126365
General note
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Artículo de publicación ISI
en_US
Abstract
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We report a detection of the baryon acoustic oscillation (BAO) feature in the three-dimensional correlation function of the transmitted
flux fraction in the Lyα forest of high-redshift quasars. The study uses 48 640 quasars in the redshift range 2.1 ≤ z ≤ 3.5 from the
Baryon Oscillation Spectroscopic Survey (BOSS) of the third generation of the Sloan Digital Sky Survey (SDSS-III). At a mean
redshift z = 2.3, we measure the monopole and quadrupole components of the correlation function for separations in the range
20 h−1 Mpc < r < 200 h−1 Mpc. A peak in the correlation function is seen at a separation equal to (1.01 ± 0.03) times the distance
expected for the BAO peak within a concordance ΛCDM cosmology. This first detection of the BAO peak at high redshift, when
the universe was strongly matter dominated, results in constraints on the angular diameter distance DA and the expansion rate H at
z = 2.3 that, combined with priors on H0 and the baryon density, require the existence of dark energy. Combined with constraints
derived from cosmic microwave background observations, this result implies H(z = 2.3) = (224 ± 8) km s−1 Mpc−1, indicating that
the time derivative of the cosmological scale parameter ˙a = H(z = 2.3)/(1 + z) is significantly greater than that measured with BAO
at z ∼ 0.5. This demonstrates that the expansion was decelerating in the range 0.7 < z < 2.3, as expected from the matter domination
during this epoch. Combined with measurements of H0, one sees the pattern of deceleration followed by acceleration characteristic of
a dark-energy dominated universe.