论文标题
用当前和将来的数据测试电子模式极化中的CMB异常
Testing CMB Anomalies in E-mode Polarization with Current and Future Data
论文作者
论文摘要
在本文中,我们探讨了宇宙微波背景(CMB)极化(E模式)数据的功能,以证实CMB温度数据中的四个潜在异常:缺乏较大的角度相关性,四极杆和八倍元(Q-O)的比对,并占用点对率高,并且是半明确的,并且是半明确的。我们使用具有三个实验的噪声代表的CMB模拟:Planck卫星,宇宙学大尺度测量师(类)和Litebird卫星 - 测试当前和将来的数据如何限制异常。我们发现温度和电子模式估计器之间的相关系数$ρ$小于$ 0.1 $,除了点 - 准则不对称($ρ= 0.17 $ for COSMIC-VARIANCE限制模拟),确认E-MODES对与温度数据的疾病有很大程度上独立于温度数据。与Planck组件分离的CMB数据(SMICA)相比,假定的LiteBird调查将通过$ \ sim 3 $的因素来减少电子模式异常估计量的错误,而半球性功率不对称和点 - 范式不对称,而$ \ sim 26 $对于缺乏大型相关性。由于巨大的宇宙差异,Q-O对齐的改进并不明显,但是我们发现固定估计值值的能力将通过因子$ \ gtrsim100 $提高。班级的改进与这些有关。
In this paper, we explore the power of the cosmic microwave background (CMB) polarization (E-mode) data to corroborate four potential anomalies in CMB temperature data: the lack of large angular-scale correlations, the alignment of the quadrupole and octupole (Q-O), the point-parity asymmetry, and the hemispherical power asymmetry. We use CMB simulations with noise representative of three experiments -- the Planck satellite, the Cosmology Large Angular Scale Surveyor (CLASS), and the LiteBIRD satellite -- to test how current and future data constrain the anomalies. We find the correlation coefficients $ρ$ between temperature and E-mode estimators to be less than $0.1$, except for the point-parity asymmetry ($ρ=0.17$ for cosmic-variance-limited simulations), confirming that E-modes provide a check on the anomalies that is largely independent of temperature data. Compared to Planck component-separated CMB data (SMICA), the putative LiteBIRD survey would reduce errors on E-mode anomaly estimators by factors of $\sim 3$ for hemispherical power asymmetry and point-parity asymmetry, and by $\sim 26$ for lack of large-scale correlation. The improvement in Q-O alignment is not obvious due to large cosmic variance, but we found the ability to pin down the estimator value will be improved by a factor $\gtrsim100$. Improvements with CLASS are intermediate to these.