The Information Content of Anisotropic Baryon Acoustic Oscillation Scale Measurements
Ashley J. Ross (CCAPP, OSU), Will J. Percival (Portsmouth, ICG), Marc, Manera (UCL)

TL;DR
This paper derives analytic formulas for anisotropic BAO measurements, identifying optimal moment combinations for extracting maximal information about cosmic expansion parameters from galaxy surveys.
Contribution
It provides explicit analytic expressions for the information content of different moments in anisotropic BAO analysis, guiding optimal measurement strategies.
Findings
Monopole and quadrupole measurements are optimal for BAO analysis.
Analytic predictions match well with mock galaxy sample results.
Optimal moments contain all available information for measuring $H(z)$ and $D_A(z)$.
Abstract
Anisotropic measurements of the Baryon Acoustic Oscillation (BAO) feature within a galaxy survey enable joint inference about the Hubble parameter and angular diameter distance . These measurements are typically obtained from moments of the measured 2-point clustering statistics, with respect to the cosine of the angle to the line of sight . The position of the BAO features in each moment depends on a combination of and , and measuring the positions in two or more moments breaks this parameter degeneracy. We derive analytic formulae for the parameter combinations measured from moments given by Legendre polynomials, power laws and top-hat Wedges in , showing explicitly what is being measured by each in real-space for both the correlation function and power spectrum, and in redshift-space for the power spectrum. The large volume covered by modern…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Cosmology and Gravitation Theories · Gamma-ray bursts and supernovae
