Title of article :
Detection of the Baryon Acoustic Peak in the LargeScale Correlation Function of SDSS Luminous Red Galaxies
Author/Authors :
Timothy A. McKay، نويسنده , , Daniel-J.-Eisenstein، نويسنده , , Idit-Zehavi، نويسنده , , David-W.-Hogg، نويسنده , , Roman-Scoccimarro، نويسنده , , Michael-R.-Blanton، نويسنده , , Robert-C.-Nichol، نويسنده , , Ryan-Scranton، نويسنده , , Hee-Jong-Seo، نويسنده , , Max-Tegmark، نويسنده , , Zheng-Zheng، نويسنده , , Scott-F.-Anderson، نويسنده , , Jim-Annis، نويسنده , , Neta-Bahcall، نويسنده , , Jon-Brinkmann، نويسنده , , Scott-Burles، نويسنده , , Francisco-J.-Castander، نويسنده , , Andrew-Connolly، نويسنده , , Istvan-Csabai، نويسنده , , Mamoru-Doi، نويسنده , , Masataka-Fukugita، نويسنده , , Joshua-A.-Frieman، نويسنده , , Karl-Glazebrook، نويسنده , , James-E.-Gunn، نويسنده , , John-S.-Hendry، نويسنده , , Gregory-Hennessy، نويسنده , , Zeljko-Ivezic، نويسنده , , Stephen-Kent، نويسنده , , Gillian-R.-Knapp، نويسنده , , Huan-Lin، نويسنده , , Yeong-Shang-Loh، نويسنده , , Robert-H.-Lupton، نويسنده , , Bruce-Margon، نويسنده , , Avery-Meiksin، نويسنده , , Jeffery-A.-Munn، نويسنده , , Adrian-Pope، نويسنده , , Michael-W.-Richmond، نويسنده , , David-Schlegel، نويسنده , , Donald-P.-Schneider، نويسنده , , Kazuhiro-Shimasaku، نويسنده , , Christopher-Stoughton، نويسنده , , Michael-A.-Strauss، نويسنده , , Mark-SubbaRao، نويسنده , , Alexander-S.-Szalay، نويسنده , , Istvan-Szapudi، نويسنده , , Douglas-L.-Tucker، نويسنده , , Brian-Yanny، نويسنده , , Donald-G.-York، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی 2 سال 2005
Pages :
-55
From page :
56
To page :
0
Abstract :
We present the large-scale correlation function measured from a spectroscopic sample of 46,748 luminous red galaxies from the Sloan Digital Sky Survey. The survey region covers 0.72 h-3 Gpc3 over 3816 deg2 and 0.16 < z < 0.47, making it the best sample yet for the study of large-scale structure. We find a well-detected peak in the correlation function at 100 h-1 Mpc separation that is an excellent match to the predicted shape and location of the imprint of the recombination-epoch acoustic oscillations on the low-redshift clustering of matter. This detection demonstrates the linear growth of structure by gravitational instability between z ~~1000 and the present and confirms a firm prediction of the standard cosmological theory. The acoustic peak provides a standard ruler by which we can measure the ratio of the distances to z = 0.35 and z = 1089 to 4% fractional accuracy and the absolute distance to z = 0.35 to 5% accuracy. From the overall shape of the correlation function, we measure the matter density (omega)mh2 to 8% and find agreement with the value from cosmic microwave background (CMB) anisotropies. Independent of the constraints provided by the CMB acoustic scale, we find (omega)m = 0.273 +- 0.025 + 0.123(1 + w0) + 0.137(omega)K. Including the CMB acoustic scale, we find that the spatial curvature is (omega)K = -0.010 +- 0.009 if the dark energy is a cosmological constant. More generally, our results provide a measurement of cosmological distance, and hence an argument for dark energy, based on a geometric method with the same simple physics as the microwave background anisotropies. The standard cosmological model convincingly passes these new and robust tests of its fundamental properties.
Keywords :
cosmological parameters , large-scale structure of universe , Cd , cosmic microwave background , Observations , cosmology , elliptical and lenticular , galaxies , distance scale
Journal title :
Astrophysical Journal
Serial Year :
2005
Journal title :
Astrophysical Journal
Record number :
74051
Link To Document :
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