论文标题

CMB镜头在整个天空上都有仅剪切的重建

CMB lensing with shear-only reconstruction on the full sky

论文作者

Qu, Frank J., Challinor, Anthony, Sherwin, Blake D.

论文摘要

电流和即将进行的调查中CMB中重力镜头效应的重建仍然由温度各向异性主导。温度图中的阿拉加乳层面的前景可以引起用标准二次估计器获得的透镜功率谱的明显偏见。诸如掩蔽之类的技术无法完全消除这些前景,如果不算出,残差仍然会导致巨大的偏见。在本文中,我们研究了“仅剪切”估计量,这是一类几何方法的一个示例,这些估计方法抑制了阿加拉术前景污染,同时仅对前景特性做出最小的假设。仅剪切估计器仅在平坦的限制中配制,因此不容易应用于广泛的调查。在这里,我们得出了仅剪切估算器的全高版本及其概括为$ m = 2 $多极估计器,该估计器改善了较小尺度上的镜头重建的性能。多极估计器通常不可分离,因此计算昂贵。我们基于单数值分解探索可分离的近似值,该分解可以通过真实空间方法对估计器进行有效评估。最后,我们将这些估计量应用于包括外层状前景的模拟,并验证它们在抑制前景偏见方面的功效。

Reconstruction of gravitational lensing effects in the CMB from current and upcoming surveys is still dominated by temperature anisotropies. Extragalactic foregrounds in temperature maps can induce significant biases in the lensing power spectrum obtained with the standard quadratic estimators. Techniques such as masking cannot remove these foregrounds fully, and the residuals can still lead to large biases if unaccounted for. In this paper, we study the "shear-only" estimator, an example of a class of geometric methods that suppress extragalactic foreground contamination while making only minimal assumptions about foreground properties. The shear-only estimator has only been formulated in the flat-sky limit and so is not easily applied to wide surveys. Here, we derive the full-sky version of the shear-only estimator and its generalisation to an $m=2$ multipole estimator that has improved performance for lensing reconstruction on smaller scales. The multipole estimator is generally not separable, and so is expensive to compute. We explore separable approximations based on a singular-value decomposition, which allow efficient evaluation of the estimator with real-space methods. Finally, we apply these estimators to simulations that include extragalactic foregrounds and verify their efficacy in suppressing foreground biases.

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