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首页> 外文期刊>Physical review, D >Lensing bias to CMB measurements of compensated isocurvature perturbations
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Lensing bias to CMB measurements of compensated isocurvature perturbations

机译:镜头偏置到CMB测量的补偿等扰动扰动

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摘要

Compensated isocurvature perturbations (CIPs) are modes in which the baryon and dark matter density fluctuations cancel. They arise in the curvaton scenario as well as some models of baryogenesis. While they leave no observable effects on the cosmic microwave background (CMB) at linear order, they do spatially modulate two-point CMB statistics and can be reconstructed in a manner similar to gravitational lensing. Due to the similarity between the effects of CMB lensing and CIPs, lensing contributes nearly Gaussian random noise to the CIP estimator that approximately doubles the reconstruction noise power. Additionally, the cross correlation between lensing and the integrated Sachs-Wolfe effect generates a correlation between the CIP estimator and the temperature field even in the absence of a correlated CIP signal. For cosmicvariance limited temperature measurements out to multipoles l ≤ 2500, subtracting a fixed lensing bias degrades the detection threshold for CIPs by a factor of 1.3, whether or not they are correlated with the adiabatic mode.
机译:补偿的等围扰动(CIP)是重孔和暗质度波动取消的模式。它们在曲面方案中出现,以及一些型号的重新发生。虽然它们在线性顺序上对宇宙微波背景(CMB)留下没有可观察的影响,但它们确实在空间调制两点CMB统计数据,并且可以以类似于引力透镜的方式重建。由于CMB镜头和CIPS的效果之间的相似性,镜头对CIP估计器提供了几乎高斯随机噪声,其大致加倍重建噪声功率。另外,即使在没有相关的CIP信号的情况下,透镜和集成Sachs-Wolfe效应之间的互相关性也会产生CIP估计器和温度场之间的相关性。对于宇宙variance有限的温度测量到多能L≤2500,减去固定透镜偏置将填充的检测阈值降低1.3因子,无论它们是否与绝热模式都相关。

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