论文标题

评估CMB温度和极化测量之间的一致性,并应用于Planck,ACT和SPT

Assessing consistency between CMB temperature and polarization measurements, with application to Planck, ACT and SPT

论文作者

La Posta, Adrien, Natale, Umberto, Calabrese, Erminia, Garrido, Xavier, Louis, Thibaut

论文摘要

普朗克的宇宙微波背景温度和极化观测值是限制宇宙学模型的主要数据集。如今,宇宙方差有限的温度有限,在大型和中等尺度上占主导地位。极化提供了额外的约束功率,并进一步审查了模型。为了从普朗克完成这张照片,基于地面的实验,例如Atacama Cosmology望远镜(ACT)和South Pole望远镜(SPT)继续在小尺度上增加温度和极化测量,从而可以从$ TE $和$ EE $ EE $ $ $ $ $ $ $ $ $ $ POWERPRA中提取竞争性宇宙学约束。同时匹配所有这些严格的探针是任何宇宙学模型的关键挑战和验证步骤。特别是,$λ$ CDM需要温度和极化测量之间的紧密一致性。在本文中,我们提出了许多方法来识别和量化温度和极化之间可能的不一致,我们将其应用于最新的Planck,ACT和SPT数据,并且没有发现与$λ$ CDM偏离的证据。这些方法的应用将对未来(更限制的CMB数据)提高重要性。

Planck's Cosmic Microwave Background temperature and polarization observations are the premier dataset for constraining cosmological models. Cosmic variance limited temperature at large and intermediate scales today dominates the constraints; polarization provides additional constraining power and further scrutiny of the models. To complete this picture from Planck, ground-based experiments, such as the Atacama Cosmology Telescope (ACT) and the South Pole Telescope (SPT) continue to add temperature and polarization measurements at small scales, allowing for the extraction of competitive cosmological constraints from the $TE$ and $EE$ power spectra. Matching at the same time all these stringent probes is a key challenge and validation step for any cosmological model. In particular, $Λ$CDM requires a tight consistency between the temperature and polarization measurements. In this paper, we present a number of methods to identify and quantify possible inconsistencies between temperature and polarization, we apply them to the latest Planck, ACT and SPT data and find no evidence for a deviation from $Λ$CDM. Application of these methods will have increased importance for future, more constraining CMB data.

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