Detectable signals of post-Born lensing curl B-modes

IF 5.9 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS Journal of Cosmology and Astroparticle Physics Pub Date : 2025-02-14 DOI:10.1088/1475-7516/2025/02/034
Mathew Robertson, Giulio Fabbian, Julien Carron, Antony Lewis
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Abstract

Curl lensing, also known as lensing field-rotation or shear B-modes, is a distinct post-Born observable caused by two lensing deflections at different redshifts (lens-lens coupling). For the Cosmic Microwave Background (CMB), the field-rotation is approximately four orders of magnitude smaller than the CMB lensing convergence. Direct detection is therefore challenging for near-future CMB experiments such as the Simons Observatory (SO) or CMB `Stage-4' (CMB-S4). Instead, the curl can be probed in cross-correlation between a direct reconstruction and a template formed using pairs of large-scale structure (LSS) tracers to emulate the lens-lens coupling. In this paper, we derive a new estimator for the optimal curl template specifically adapted for curved-sky applications, and test it against non-Gaussian complications using N-body cosmology simulations. We find non-foreground biases to the curl cross-spectrum are purely Gaussian at the sensitivity of SO. However, higher-order curl contractions induce non-Gaussian bias at the order of 1σ for CMB-S4 using quadratic estimators (QE). Maximum a-Posteriori (MAP) lensing estimators significantly reduce biases for both SO and CMB-S4, in agreement with our analytic predictions. We also show that extragalactic foregrounds in the CMB can bias curl measurements at order of the signal, and evaluate a variety of mitigation strategies to control these biases for SO-like experiments. Near-future observations will be able to measure post-Born lensing curl B-modes.
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玻恩后透镜旋度b模的可探测信号
旋透镜,也被称为透镜场旋转或剪切b模式,是由不同红移的两个透镜偏转(透镜-透镜耦合)引起的独特的后玻恩观测。对于宇宙微波背景(CMB),场旋转大约比CMB透镜收敛小4个数量级。因此,直接探测对于不久的将来的CMB实验来说是具有挑战性的,比如西蒙斯天文台(SO)或CMB ' Stage-4' (CMB- s4)。相反,旋度可以在直接重建和使用大尺度结构(LSS)示踪剂对形成的模板之间的相互关系中进行探测,以模拟透镜-透镜耦合。在本文中,我们推导了一个新的适合于曲面天空应用的最优旋度模板估计量,并使用n体宇宙学模拟对其进行了非高斯复杂性的测试。我们发现,在SO的灵敏度下,旋度交叉光谱的非前景偏差是纯高斯的。然而,利用二次估计量(QE),高阶旋度收缩导致CMB-S4在1σ阶的非高斯偏差。最大后验(MAP)透镜估计器显著降低了SO和CMB-S4的偏差,与我们的分析预测一致。我们还表明,宇宙微波背景中的河外前景可以在信号的顺序上对旋度测量产生偏差,并评估了各种缓解策略来控制这些偏差,以用于类似so的实验。不久的将来,观测将能够测量玻恩后透镜旋度b模。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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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