论文标题

快速估算孔径质量统计I:孔径质量方差和对CFHTLENS数据的应用

Fast estimation of aperture-mass statistics I: aperture mass variance and an application to the CFHTLenS data

论文作者

Porth, Lucas, Smith, Robert E., Simon, Patrick, Marian, Laura, Hilbert, Stefan

论文摘要

我们探索了一种通常的剪切相关函数方法的替代方法,以估计弱透镜调查数据中光圈质量统计数据。我们的方法基于Schneider的直接估算方法(1998)。在本文中,为了测试和验证方法,我们专注于光圈质量分散。在计算了一组加权的测量椭圆形的信号和噪声之后,我们显示了如何将直接估计器制作到线性阶算法中,该算法可以实现快速有效的计算。然后,我们在存在带有孔和芯片间隙的真实调查掩模的情况下研究直接估计器方法的适用性。为此,我们使用了大量的完整射线追踪模拟模拟。通过使用各种加权方案将来自不同光圈的信息结合在一起,我们发现,以孔径完整性大于70%的覆盖率加权各个孔径估计值的逆差异会产生与标准相关函数方法密切一致的答案。然后,我们将这种方法应用于CFHTLEN作为试验计划,并发现我们的方法恢复到了Kilbinger(2013)的差异E和B模式信号的差异之后,我们纠正了镜头Fit算法的剪切偏差的目录,而成对的剪切偏差比9英寸更接近。然后,我们仅使用fillsopic of the Fillsolopic of Fishester的信息来探索fishester的信息。拒绝孔径的宇宙学信息是低完整性的。

We explore an alternative method to the usual shear correlation function approach for the estimation of aperture mass statistics in weak lensing survey data. Our approach builds on the direct estimator method of Schneider (1998). In this paper, to test and validate the methodology, we focus on the aperture mass dispersion. After computing the signal and noise for a weighted set of measured ellipticites we show how the direct estimator can be made into a linear order algorithm that enables a fast and efficient computation. We then investigate the applicability of the direct estimator approach in the presence of a real survey mask with holes and chip gaps. For this we use a large ensemble of full ray-tracing mock simulations. By using various weighting schemes for combining information from different apertures we find that inverse variance weighting the individual aperture estimates with an aperture completeness greater than 70 per cent coverage yields an answer that is in close agreement with the standard correlation function approach. We then apply this approach to the CFHTLenS as pilot scheme and find that our method recovers to high accuracy the Kilbinger (2013) result for the variance of both the E and B mode signal, after we correct the catalogue for the shear bias in the lensfit algorithm for pairs closer than 9". We then explore the cosmological information content of the direct estimator using the Fisher information approach. We show that there is a only modest loss in cosmological information from the rejection of apertures that are of low completeness. This method unlocks the door to fast and efficient methods for recovering higher order aperture mass statistics in linear order operations.

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