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Galaxy skew-spectra in redshift-space

Marcel Schmittfull, Azadeh Moradinezhad Dizgah

2021Journal of Cosmology and Astroparticle Physics20 citationsDOIOpen Access PDF

Abstract

Modern galaxy surveys focus on the galaxy power spectrum or 2-point correlation function to test and constrain cosmological models. Additional information comes from higher-order N-point functions, but their analysis is challenging. A simple solution is to compute the cross-power spectrum between the squared galaxy density and the galaxy density. Being simple to measure and to plot, this skew-spectrum shares many of the familiar useful properties of the standard galaxy power spectrum. We show that by computing multiple quadratic fields and correlating them with the density, all contributions to the tree-level redshift-space galaxy bispectrum can be captured with skew-spectra. Using synthetic datasets, we show that our measurement pipeline matches analytical predictions, and that their dependence on galaxy bias parameters and the logarithmic growth rate is as expected theoretically.

Topics & Concepts

PhysicsAstrophysicsGalaxyInteracting galaxySpectral densityBispectrumMeasure (data warehouse)Field galaxyBrightest cluster galaxyProtogalaxyGalaxy formation and evolutionAstronomyLenticular galaxyType-cD galaxyCorrelation function (quantum field theory)Galaxy mergerDwarf galaxyLogarithmCosmologySurface brightness fluctuationComputational astrophysicsGalaxy clusterSimple (philosophy)Satellite galaxyGalactic haloFocus (optics)Function (biology)Galaxies: Formation, Evolution, PhenomenaAstronomy and Astrophysical ResearchStatistical Mechanics and Entropy
Galaxy skew-spectra in redshift-space | Litcius