arXiv · 1504.04036
The Anisotropic Line Correlation Function as a Probe of Anisotropies in Galaxy Surveys
Abstract
We propose an anisotropic generalisation of the line correlation function (ALCF) to separate and quantify phase information in the large-scale structure of galaxies. The line correlation function probes the strictly non-linear regime of structure formation and since phase information drops out of the power spectrum, the line correlation function provides a complementary tool to commonly used techniques based on two-point statistics. Furthermore, it is independent of linear bias as well as the Gaussian variance on the modulus of the density field and thus may also prove to be advantageous compared to the bispectrum or similar higher-order statistics for certain cases. For future applications it is vital, though, to be able to account for observational effects that cause anisotropies in the distribution of galaxies. Based on a number of numerical studies, we find that our ALCF is well suited to accomplish this task and we demonstrate how the Alcock-Paczynski effect and kinematical redshift-space distortions can in principle be measured via the ALCF.
Explore related subjects
Keep this discovery
Alexander Eggemeier, Thorsten Battefeld, Robert E. Smith, Jens Niemeyer. 2015-04-15. The Anisotropic Line Correlation Function as a Probe of Anisotropies in Galaxy Surveys. https://doi.org/10.1093/mnras%2Fstv1602
Cite the original work for its findings. Save a collection to share your selection of sources.