论文标题
重建的CMB镜头双光谱
The reconstructed CMB lensing bispectrum
论文作者
论文摘要
宇宙中介入的大规模结构(LSS)的弱重力镜头是对宇宙微波背景(CMB)各向异性的领先非线性效应。可以通过估计值二次从镜头温度和极化各向异性从CMB模式中重建了导致失真的综合质量质量(称为透镜收敛),并且已经从多个CMB实验中测量了其功率谱。通过非线性结构演化来源,镜头收敛的双光谱提供了有关功率谱互补的延迟时间宇宙学演化的其他信息。但是,当试图估计重建透镜收敛的摘要统计数据时,会引入许多噪声偏置,因为先前的研究表明,功率谱显示。在这里,我们首次探索了测量重建镜头收敛的双光谱的噪声偏见。我们计算统一限制中的主要噪声偏置,并将我们的分析结果与模拟进行比较,发现了极好的一致性。我们的结果对于将来尝试使用实际CMB数据重建透镜收敛双光谱的尝试至关重要。
Weak gravitational lensing by the intervening large-scale structure (LSS) of the Universe is the leading non-linear effect on the anisotropies of the cosmic microwave background (CMB). The integrated line-of-sight mass that causes the distortion -- known as lensing convergence -- can be reconstructed from the lensed temperature and polarization anisotropies via estimators quadratic in the CMB modes, and its power spectrum has been measured from multiple CMB experiments. Sourced by the non-linear evolution of structure, the bispectrum of the lensing convergence provides additional information on late-time cosmological evolution complementary to the power spectrum. However, when trying to estimate the summary statistics of the reconstructed lensing convergence, a number of noise-biases are introduced, as previous studies have shown for the power spectrum. Here, we explore for the first time the noise-biases in measuring the bispectrum of the reconstructed lensing convergence. We compute the leading noise-biases in the flat-sky limit and compare our analytical results against simulations, finding excellent agreement. Our results are critical for future attempts to reconstruct the lensing convergence bispectrum with real CMB data.