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Baryon Oscillations and Consistency Tests for Photometrically-Determined Redshifts of Very Faint Galaxies

机译:重度星系的光度确定红移的重子振荡和一致性测试

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摘要

Weak lensing surveys that can potentially place strong constraints on dark energy parameters can only do so if the source redshift means and error distributions are very well known. We investigate prospects for controlling errors in these quantities by exploiting their influence on the power spectra of the galaxies. Although, from the galaxy power spectra alone, sufficiently precise and simultaneous determination of redshift biases and variances is not possible, a strong consistency test is. Given the redshift error rms, galaxy power spectra can be used to determine the mean redshift of a group of galaxies to subpercent accuracy. Although galaxy power spectra cannot be used to determine the redshift error rms, they can be used to determine this rms divided by the Hubble parameter, a quantity that may be even more valuable for interpretation of cosmic shear data than the rms itself. We also show that galaxy power spectra, due to the baryonic acoustic oscillations, can potentially lead to constraints on dark energy that are competitive with those due to the cosmic shear power spectra from the same survey.
机译:弱镜头调查可能会在暗能量参数上施加强大的约束,只有在非常了解源红移手段和误差分布的情况下,才能这样做。我们通过利用误差对星系功率谱的影响来研究控制误差的前景。尽管仅从银河系功率谱来看,不可能同时精确地确定红移偏差和方差,但仍需进行强一致性测试。给定红移误差均方根值,星系功率谱可用于确定一组星系的平均红移到低于百分之一的准确度。尽管无法使用星系功率谱来确定红移误差均方根值,但可以将其用于确定该均方根值除以哈勃参数,该值对于解释宇宙剪切数据比均方根本身更有价值。我们还表明,由于重子声波振荡,星系功率谱可能会导致对暗能量的约束,该约束与由于同一次调查的宇宙切变功率谱而引起的约束具有竞争性。

著录项

  • 作者

    Zhan, H; Knox, L;

  • 作者单位
  • 年度 2005
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  • 原文格式 PDF
  • 正文语种 eng
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