...
首页> 外文期刊>The Astrophysical Journal. Supplement Series >Seven-year wilkinson microwave anisotropy probe (WMAP*) observations: Are there cosmic microwave background anomalies?
【24h】

Seven-year wilkinson microwave anisotropy probe (WMAP*) observations: Are there cosmic microwave background anomalies?

机译:威尔金森七年微波各向异性探测器(WMAP *)观察结果:是否存在宇宙微波背景异常?

获取原文
获取原文并翻译 | 示例
           

摘要

A simple six-parameter ∧CDM model provides a successful fit to WMAP data. This holds both when the WMAP data are analyzed alone or in combination with other cosmological data. Even so, it is appropriate to examine the data carefully to search for hints of deviations from the now standard model of cosmology, which includes inflation, dark energy, dark matter, baryons, and neutrinos. The cosmological community has subjected the WMAP data to extensive and varied analyses. While there is widespread agreement as to the overall success of the six-parameter ∧CDM model, various "anomalies" have been reported relative to that model. In this paper we examine potential anomalies and present analyses and assessments of their significance. In most cases we find that claimed anomalies depend on posterior selection of some aspect or subset of the data. Compared with sky simulations based on the best-fit model, one can select for low probability features of the WMAP data. Low probability features are expected, but it is not usually straightforward to determine whether any particular low probability feature is the result of the a posteriori selection or non-standard cosmology. Hypothesis testing could, of course, always reveal an alternative model that is statistically favored, but there is currently no model that is more compelling. We find that two cold spots in the map are statistically consistent with random cosmic microwave background (CMB) fluctuations. We also find that the amplitude of the quadrupole is well within the expected 95% confidence range and therefore is not anomalously low. We find no significant anomaly with a lack of large angular scale CMB power for the best-fit ∧CDM model. We examine in detail the properties of the power spectrum data with respect to the ∧CDM model and find no significant anomalies. The quadrupole and octupole components of the CMB sky are remarkably aligned, but we find that this is not due to any single map feature; it results from the statistical combination of the full-sky anisotropy fluctuations. It may be due, in part, to chance alignments between the primary and secondary anisotropy, but this only shifts the coincidence from within the last scattering surface to between it and the local matter density distribution. While this alignment appears to be remarkable, there was no model that predicted it, nor has there been a model that provides a compelling retrodiction. We examine claims of a hemispherical or dipole power asymmetry across the sky and find that the evidence for these claims is not statistically significant. We confirm the claim of a strong quadrupolar power asymmetry effect, but there is considerable evidence that the effect is not cosmological. The likely explanation is an insufficient handling of beam asymmetries. We conclude that there is no compelling evidence for deviations from the ∧CDM model, which is generally an acceptable statistical fit to WMAP and other cosmological data.
机译:一个简单的六参数∧CDM模型可以成功拟合WMAP数据。无论是单独分析WMAP数据还是与其他宇宙学数据结合分析,都适用。即便如此,还是要仔细检查数据以寻找与目前的宇宙学标准模型(包括膨胀,暗能量,暗物质,重子和中微子)偏离的暗示。宇宙学界对WMAP数据进行了广泛而多样的分析。尽管六参数∧CDM模型的整体成功已获得广泛认可,但已报道了与该模型有关的各种“异常”。在本文中,我们检查了潜在的异常,并对其意义进行了分析和评估。在大多数情况下,我们发现要求保护的异常取决于数据某些方面或子集的后验选择。与基于最佳拟合模型的天空模拟相比,可以为WMAP数据选择低概率特征。低概率特征是可以预期的,但是确定任何特定的低概率特征是后验选择还是非标准宇宙学的结果通常并不直接。假设检验当然可以总是显示出一个在统计学上受到青睐的替代模型,但是目前还没有哪个模型更具吸引力。我们发现地图上的两个冷点在统计上与随机宇宙微波背景(CMB)波动一致。我们还发现,四极杆的幅度很好地位于预期的95%置信度范围内,因此并非异常低。对于最佳拟合∧CDM模型,我们没有发现缺少大角度比例CMB功能的重大异常。我们针对examineCDM模型详细检查了功率谱数据的特性,没有发现明显的异常。 CMB天空的四极和八极分量显着对齐,但是我们发现这并不是由于任何单个地图特征所致;它是由全天空各向异性波动的统计组合得出的。这可能部分是由于主要和次要各向异性之间的偶然对准,但这仅使重合从最后一个散射表面内移动到其与局部物质密度分布之间。虽然这种一致性看起来很明显,但是没有模型可以预测它,也没有模型可以提供令人信服的追溯。我们检查了整个天空中半球或偶极子功率不对称的主张,发现这些主张的证据在统计上并不重要。我们确认声称具有很强的四极功率不对称效应,但是有相当多的证据表明该效应不是宇宙学的。可能的解释是对光束不对称性的处理不足。我们得出结论,没有令人信服的证据表明与∧CDM模型存在偏差,而CDM模型通常与WMAP和其他宇宙学数据可以接受。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号