论文标题

没有窗户的宇宙学:星系功率谱的二次估计器

Cosmology Without Windows: Quadratic Estimators for the Galaxy Power Spectrum

论文作者

Philcox, Oliver H. E.

论文摘要

银河功率谱估计的常规算法测量了与调查窗口函数相互卷积的真实频谱,对于参数推断,必须将其与类似卷曲的理论模型进行比较。在这项工作中,我们使用类似于1990年代后期引入的二次估计值直接估计不缩合的功率谱系。在高斯假设下,这些是最佳的,并且没有像素化和非仙境射击的领先效应。鉴于调查数据集和一系列已知宇宙学模拟,它们可能会直接计算出来。我们实现了基于像素的最大可能性估计器,并基于FKP加权方案进行了简化,这两者都可以通过FFT和共轭梯度下降方法计算。此外,估计器允许在任意线性压缩方案中直接计算频谱系数,而无需首先键入统计量。将技术应用于Boss DR12星系的一部分,我们发现基于像素的二次估计器可为使用通常的窗户方法获得的统计上一致的功率谱,压缩系数和宇宙学参数。由于样品的数量密度低和紧凑的窗口功能,最佳加权方案几乎没有改善简化形式。这对于密集调查或专注于原始非高斯的调查可能会发生变化。该技术被证明是有效且健壮的,并且在存在弱的非高斯性的情况下显示出无窗功率谱和双光谱的显着潜力。

Conventional algorithms for galaxy power spectrum estimation measure the true spectrum convolved with a survey window function, which, for parameter inference, must be compared with a similarly convolved theory model. In this work, we directly estimate the unwindowed power spectrum multipoles using quadratic estimators akin to those introduced in the late 1990s. Under Gaussian assumptions, these are optimal and free from the leading-order effects of pixellization and non-Poissonian shot-noise. They may be straightforwardly computed given the survey data-set and a suite of simulations of known cosmology. We implement the pixel-based maximum-likelihood estimator and a simplification based on the FKP weighting scheme, both of which can be computed via FFTs and conjugate gradient descent methods. Furthermore, the estimators allow direct computation of spectrum coefficients in an arbitrary linear compression scheme, without needing to first bin the statistic. Applying the technique to a subset of the BOSS DR12 galaxies, we find that the pixel-based quadratic estimators give statistically consistent power spectra, compressed coefficients, and cosmological parameters to those obtained with the usual windowed approaches. Due to the sample's low number density and compact window function, the optimal weighting scheme gives little improvement over the simplified form; this may change for dense surveys or those focusing on primordial non-Gaussianity. The technique is shown to be efficient and robust, and shows significant potential for measuring the windowless power spectrum and bispectrum in the presence of weak non-Gaussianity.

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