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首页> 外文期刊>The Astrophysical journal >THE THREE-DIMENSIONAL POWER SPECTRUM OF GALAXIES FROM THE SLOAN DIGITAL SKY SURVEY
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THE THREE-DIMENSIONAL POWER SPECTRUM OF GALAXIES FROM THE SLOAN DIGITAL SKY SURVEY

机译:斯隆数字天空调查中星系的三维功率谱

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摘要

We measure the large-scale real-space power spectrum P(k) by using a sample of 205,443 galaxies from the Sloan Digital Sky Survey, covering 2417 effective square degrees with mean redshift z ≈ 0.1. We employ a matrix-based method using pseudo-Karhunen-Loeve eigenmodes, producing uncorrelated minimum-variance measurements in 22 k-bands of both the clustering power and its anisotropy due to redshift-space distortions, with narrow and well-behaved window functions in the range 0.02 h Mpc~(-1) < k < 0.3 h Mpc~(-1). We pay particular attention to modeling, quantifying, and correcting for potential systematic errors, nonlinear redshift distortions, and the artificial red-tilt caused by luminosity-dependent bias. Our results are robust to omitting angular and radial density fluctuations and are consistent between different parts of the sky. Our final result is a measurement of the real-space matter power spectrum P(k) up to an unknown overall multiplicative bias factor. Our calculations suggest that this bias factor is independent of scale to better than a few percent for k < 0.1 h Mpc~(-1), thereby making our results useful for precision measurements of cosmological parameters in conjunction with data from other experiments such as the Wilkinson Microwave Anisotropy Probe satellite. The power spectrum is not well-characterized by a single power law but unambiguously shows curvature. As a simple characterization of the data, our measurements are well fitted by a flat scale-invariant adiabatic cosmological model with h Ω_m = 0.213 +- 0.023 and σ_8 = 0.89 +- 0.02 for L_* galaxies, when fixing the baryon fraction Ω_b/Ω_m =0.17 and the Hubble parameter h = 0.72; cosmological interpretation is given in a companion paper.
机译:我们使用斯隆数字天空调查的205,443个星系样本,测量了大范围的真实空间功率谱P(k),覆盖了2417个有效平方度,平均红移z≈0.1。我们采用基于矩阵的方法,使用伪Karhunen-Loeve本征模式,由于红移空间畸变,在22 k波段的聚类能力及其各向异性中产生了不相关的最小方差测量值,并且具有狭窄且行为良好的窗口函数。范围0.02 h Mpc〜(-1)

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