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首页> 外文期刊>The Astrophysical journal >OPTIMAL WEIGHTING SCHEME IN REDSHIFT-SPACE POWER SPECTRUM ANALYSIS AND A PROSPECT FOR MEASURING THE COSMIC EQUATION OF STATE
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OPTIMAL WEIGHTING SCHEME IN REDSHIFT-SPACE POWER SPECTRUM ANALYSIS AND A PROSPECT FOR MEASURING THE COSMIC EQUATION OF STATE

机译:位移空间功率谱分析中的最佳加权方案及状态宇宙方程的测量前景

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摘要

We develop a useful formula for power spectrum analysis for high- and intermediate-redshift galaxy samples, as an extension of the work by Feldman, Kaiser & Peacock. An optimal weight factor, which minimizes the errors of the power spectrum estimator, is obtained so that the light cone effect and redshift-space distortions are incorporated. Using this formula, we assess the feasibility of the power spectrum analysis with the luminous red galaxy (LRG) sample in the Sloan Digital Sky Survey as a probe of the equation of state of the dark energy. Fisher matrix analysis shows that the LRG sample can be sensitive to the equation of state around redshift z = 0.13. It is also demonstrated that the LRG sample can constrain the equation of state with (1 σ) error of 10% level, if other fundamental cosmological parameters are well determined independently. For a useful constraint, we point out the importance of modeling the bias, taking the luminosity dependence into account. We also discuss the optimized strategy to constrain the equation of state using power spectrum analysis. For a sample with a fixed total number of objects, it is most advantageous to have a sample with the mean number density 10~(-4) h~3 Mpc~(-3) in the range of the redshift 0.4 approx< z approx< 1.
机译:作为Feldman,Kaiser和Peacock所做工作的扩展,我们为高和中红移星系样本的功率谱分析开发了一个有用的公式。获得使功率谱估计器的误差最小化的最佳权重因子,从而合并了光锥效应和红移空间失真。使用此公式,我们评估了斯隆数字天空测量中的发光红色星系(LRG)样本作为暗能量状态方程的探究进行功率谱分析的可行性。 Fisher矩阵分析表明,LRG样本对红移z = 0.13附近的状态方程很敏感。还证明了,如果独立地确定其他基本宇宙学参数,则LRG样本可以将状态方程约束为(1σ)误差为10%的水平。对于有用的约束条件,我们指出了对偏差建模的重要性,并考虑了光度依赖性。我们还讨论了使用功率谱分析约束状态方程的优化策略。对于具有固定对象总数的样本,最有利的是使样本的平均数密度为10〜(-4)h〜3 Mpc〜(-3)在红移范围内0.4近似

著录项

  • 来源
    《The Astrophysical journal》 |2003年第1期|p.577-588|共12页
  • 作者

    KAZUHIRO YAMAMOTO;

  • 作者单位

    Max-Planck-Institut fur Physik und Astrophysik, Karl-Schwarzschild-Strasse 1, D-85741 Garching, Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 天文学;
  • 关键词

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