Map-based E/B separation of filtered timestreams using space-based E-mode observations

IF 5.3 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
Yuyang Zhou, Adrian Lee and Yuji Chinone
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Abstract

E to B mixing or "leakage" due to time-ordered data (TOD) filtering has become an important source of sensitivity loss that ground-based cosmic microwave background polarization experiments must address. However, it is a difficult problem for which very few viable solutions exist. In this paper, we expand upon satellite E-mode methods to cover E/B leakage specifically due to TOD filtering. We take a satellite E-mode map and TOD filter it through the ground-based experiment data analysis pipeline, from which we construct a map-space "leakage template" and subtract it from the ground-based experiment map. We evaluate the residual leakage by simulating the satellite E-mode maps with Planck-like and LiteBIRD-like noise levels, and simulate the ground-based experiment with Simons Observatory-like and CMB-S4-like noise levels. The effectiveness of the method is measured in the improvement of the Fisher uncertainty σ(r = 0). We find that our method can reduce σ(r = 0) by ∼ 15–75% depending on the noise levels considered.
利用天基电子模式观测数据对过滤后的时间流进行基于地图的 E/B 分离
由于时序数据(TOD)滤波导致的E - B混合或“泄漏”已经成为地面宇宙微波背景极化实验必须解决的重要灵敏度损失来源。然而,这是一个困难的问题,几乎没有可行的解决办法。在本文中,我们扩展了卫星E模式方法,以涵盖由于TOD滤波导致的E/B泄漏。我们取卫星e模图,通过地面实验数据分析管道进行TOD滤波,构建地图空间“泄漏模板”,并将其从地面实验图中提取出来。我们通过模拟Planck-like和LiteBIRD-like噪声水平的卫星e模图,以及模拟Simons - Observatory-like和CMB-S4-like噪声水平的地面实验来评估剩余泄漏。该方法的有效性是通过改善费雪不确定性σ(r = 0)来衡量的。我们发现,根据所考虑的噪声水平,我们的方法可以将σ(r = 0)降低~ 15-75%。
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来源期刊
Journal of Cosmology and Astroparticle Physics
Journal of Cosmology and Astroparticle Physics 地学天文-天文与天体物理
CiteScore
10.20
自引率
23.40%
发文量
632
审稿时长
1 months
期刊介绍: Journal of Cosmology and Astroparticle Physics (JCAP) encompasses theoretical, observational and experimental areas as well as computation and simulation. The journal covers the latest developments in the theory of all fundamental interactions and their cosmological implications (e.g. M-theory and cosmology, brane cosmology). JCAP''s coverage also includes topics such as formation, dynamics and clustering of galaxies, pre-galactic star formation, x-ray astronomy, radio astronomy, gravitational lensing, active galactic nuclei, intergalactic and interstellar matter.
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