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首页> 外文期刊>The Astrophysical journal >MUTUAL CONSTRAINTS BETWEEN REIONIZATION MODELS AND PARAMETER EXTRACTION FROM COSMIC MICROWAVE BACKGROUND DATA
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MUTUAL CONSTRAINTS BETWEEN REIONIZATION MODELS AND PARAMETER EXTRACTION FROM COSMIC MICROWAVE BACKGROUND DATA

机译:电离模型与从宇宙微波背景数据中提取参数之间的相互制约

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摘要

Spectroscopic studies of high-redshift objects and increasingly precise data on the cosmic microwave background (CMB) are beginning to independently place strong complementary bounds on the epoch of hydrogen reionization. Parameter estimation from current CMB data continues, however, to be subject to several degeneracies. Here, we focus on those degeneracies in CMB parameter forecasts related to the optical depth to reionization. We extend earlier work on the mutual constraints that such analyses of CMB data and a reionization model may place on each other to a more general parameter set and to the case of data anticipated from the MAP satellite. We focus in particular on a semianalytic model of reionization by the first stars, although the methods here are easily extended to other reionization sce-narios. A reionization model can provide useful complementary information for cosmological parameter extraction from the CMB, particularly for the degeneracies between the optical depth and either of the amplitude and index of the primordial scalar power spectrum, which are still present in the most recent data. Alternatively, by using a reionization model, known limits on astrophysical quantities can reduce the forecasted errors on cosmological parameters. Forthcoming CMB data also have the potential to constrain the sites of early star formation, as well as the fraction of baryons that participate in it, if reionization were caused by stellar activity at high redshifts. Finally, we examine the implications of an independent, e.g., spectroscopic, determination of the epoch of reionization for the determination of cosmological parameters from the CMB. This has the potential to significantly strengthen limits from the CMB on parameters such as the index of the power spectrum, while having the considerable advantage of being free of the choice of the reionization model.
机译:高红移物体的光谱学研究以及宇宙微波背景(CMB)上越来越精确的数据开始独立地在氢离子化的时代上强加互补的界限。但是,根据当前CMB数据进行的参数估计仍在继续,需要进行几个退化。在这里,我们专注于CMB参数预测中与电离深度有关的简并性。我们扩展了关于相互约束的早期工作,即对CMB数据和电离模型的这种分析可能会相互放置到更通用的参数集以及MAP卫星预期的数据情况上。尽管这里的方法很容易扩展到其他电离场景,但我们特别关注的是第一颗恒星进行电离的半解析模型。电离模型可以为从CMB提取宇宙学参数提供有用的补充信息,尤其是对于光学深度与原始标量功率谱的振幅和折射率中的任一个之间的简并性而言,这些仍然存在于最新数据中。或者,通过使用电离模型,天文学数量的已知限制可以减少宇宙参数的预测误差。如果离子化是由高红移的恒星活动引起的,即将到来的CMB数据也有可能限制早期恒星形成的位置以及参与其中的重子的比例。最后,我们检查了独立的(例如,光谱)确定电离时代对于确定CMB宇宙学参数的意义。这有可能显着增强CMB对功率谱指标等参数的限制,同时具有无需选择电离模型的显着优势。

著录项

  • 来源
    《The Astrophysical journal》 |2002年第1期|p.15-24|共10页
  • 作者

    APARNA VENKATESAN;

  • 作者单位

    CASA, Department of Astrophysical and Planetary Sciences, University of Colorado, 389 UCB, Boulder, CO 80309-0389;

  • 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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