论文标题

CMB镜头重建中的仪器系统偏见:基于模拟的评估

Instrumental systematics biases in CMB lensing reconstruction: a simulation-based assessment

论文作者

Mirmelstein, Mark, Fabbian, Giulio, Lewis, Antony, Peloton, Julien

论文摘要

宇宙微波背景(CMB)的弱重力镜头是一个重要的宇宙学工具,它使我们能够了解宇宙的结构,组成和演变。即将进行的CMB实验,例如Simons天文台(SO),将提供高分辨率和低噪声CMB测量值。我们考虑仪器系统学对相应的高精度镜头重建功率谱测量的影响。我们为类似的仪器和潜在的扫描策略模拟CMB温度和极化图,并探索与光束不对称和偏移,无光指向,极化角度,增益漂移,增益校准和电动串扰有关的系统学。我们的分析表明,我们建模的系统引起的大多数偏差低于$ \ sim0.6σ$的检测水平。我们讨论了潜在的缓解技术,以进一步减少更重要的系统学的影响,并为未来与镜片相关的系统分析铺平道路。

Weak gravitational lensing of the cosmic microwave background (CMB) is an important cosmological tool that allows us to learn about the structure, composition and evolution of the Universe. Upcoming CMB experiments, such as the Simons Observatory (SO), will provide high-resolution and low-noise CMB measurements. We consider the impact of instrumental systematics on the corresponding high-precision lensing reconstruction power spectrum measurements. We simulate CMB temperature and polarization maps for an SO-like instrument and potential scanning strategy, and explore systematics relating to beam asymmetries and offsets, boresight pointing, polarization angle, gain drifts, gain calibration and electric crosstalk. Our analysis shows that the majority of the biases induced by the systematics we modeled are below a detection level of $\sim 0.6σ$. We discuss potential mitigation techniques to further reduce the impact of the more significant systematics, and pave the way for future lensing-related systematics analyses.

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