论文标题

关于Galaxy Redshift调查可用的原始信息

On the primordial information available to galaxy redshift surveys

论文作者

McQuinn, Matthew

论文摘要

我们通过研究一个简化的宇宙,其中的Zeldovich Zeldovich位移的Lagrangangian在线性密度领域中,我们研究了可以从光谱星系调查中重建的原始信息的量,以及在低波数中重建噪声的原因。对于本研究的某些研究,我们进一步采用直观的线性化极限,其中重建是一个凸问题,但解决方案也是解决完整非线性问题的解决方案,这是一个限制重建有效性的极限。线性化重建导致与线性输入字段与我们的完整非线性算法相似的跨相关系数。线性化的重建还产生了与宇宙N体模拟重建尝试相似的跨相关系数,这表明现有的重建算法正在提取大多数可访问信息。我们的方法有助于解释为什么重建算法准确地将初始条件重现至某些特征性波数,这时几乎没有相关性的快速过渡。这种过渡是由重建的约束数量(调查中的星系数)所设置的,而不是像传统上认为的那样超过聚类噪声的位置。我们进一步表明,在线性尺度上,如果可以充分限制Galaxy Lagrangian位移,则可以重建模式,远低于Shot噪声期望。我们提供了非线性重建的理想示例,其中射击噪声的表现胜过。

We investigate the amount of primordial information that can be reconstructed from spectroscopic galaxy surveys, as well as what sets the noise in reconstruction at low wavenumbers, by studying a simplified universe in which galaxies are the Zeldovich displaced Lagrangian peaks in the linear density field. For some of this study, we further take an intuitive linearized limit in which reconstruction is a convex problem but where the solution is also a solution to the full nonlinear problem, a limit that bounds the effectiveness of reconstruction. The linearized reconstruction results in similar cross correlation coefficients with the linear input field as our full nonlinear algorithm. The linearized reconstruction also produces similar cross correlation coefficients to those of reconstruction attempts on cosmological N-body simulations, which suggests that existing reconstruction algorithms are extracting most of the accessible information. Our approach helps explain why reconstruction algorithms accurately reproduce the initial conditions up to some characteristic wavenumber, at which point there is a quick transition to almost no correlation. This transition is set by the number of constraints on reconstruction (the number of galaxies in the survey) and not by where shot noise surpasses the clustering signal, as is traditionally thought. We further show that on linear scales a mode can be reconstructed with precision well below the shot noise expectation if the galaxy Lagrangian displacements can be sufficiently constrained. We provide idealized examples of nonlinear reconstruction where shot noise can be outperformed.

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