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Cosmological Parameters from Eigenmode Analysis of Sloan Digital Sky Survey Galaxy Redshifts

Authors :
David H. Weinberg
Bhuvnesh Jain
István Szapudi
Donald P. Schneider
Jon Brinkmann
Adrian Pope
Alexander S. Szalay
Avery Meiksin
James E. Gunn
Robert H. Lupton
Joshua A. Frieman
Robert C. Nichol
Neta A. Bahcall
David B. R. Johnston
Michael R. Blanton
Takahiko Matsubara
Tamás Budavári
Michael S. Vogeley
S. Kent
Michael A. Strauss
Andrew J. Connolly
Idit Zehavi
Jim Gray
Max Tegmark
Daniel J. Eisenstein
Ryan Scranton
Source :
The Astrophysical Journal. 607:655-660
Publication Year :
2004
Publisher :
American Astronomical Society, 2004.

Abstract

We present estimates of cosmological parameters from the application of the Karhunen-Loeve transform to the analysis of the 3D power spectrum of density fluctuations using Sloan Digital Sky Survey galaxy redshifts. We use Omega_m*h and f_b = Omega_b/Omega_m to describe the shape of the power spectrum, sigma8 for the (linearly extrapolated) normalization, and beta to parametrize linear theory redshift space distortions. On scales k < 0.16 h/Mpc, our maximum likelihood values are Omega_m*h = 0.264 +/-0.043, f_b = 0.286 +/- 0.065, sigma8 = 0.966 +/- 0.048, and beta = 0.45 +/- 0.12. When we take a prior on Omega_b from WMAP, we find Omega_m*h = 0.207 +/- 0.030, which is in excellent agreement with WMAP and 2dF. This indicates that we have reasonably measured the gross shape of the power spectrum but we have difficulty breaking the degeneracy between Omega_m*h and f_b because the baryon oscillations are not resolved in the current spectroscopic survey window function.<br />LaTeX, 8 pages, 3 figures; figures updated, references added, minor changes to text; accepted by ApJ

Details

ISSN :
15384357 and 0004637X
Volume :
607
Database :
OpenAIRE
Journal :
The Astrophysical Journal
Accession number :
edsair.doi.dedup.....df3e6297a6d8ecb343283e9cf2cc8692
Full Text :
https://doi.org/10.1086/383533