Redshift-space distortions around voids
Yan-Chuan Cai (IfA, Edinburgh), Andy Taylor (IfA, Edinburgh), John A., Peacock (IfA, Edinburgh), Nelson Padilla (Cat\'olica)

TL;DR
This paper develops estimators for the linear growth rate of cosmic structures using void-halo cross-correlations in redshift space, demonstrating accurate measurements and exploring the impact of void profiles on redshift-space distortions.
Contribution
It introduces new estimators for the growth rate based on void-halo cross-correlations, accounting for velocity dispersion and void profiles, improving measurement precision.
Findings
Achieved 9% precision in measuring the growth parameter β.
Found that void size and velocity dispersion affect redshift-space distortion patterns.
Discovered that void morphology in redshift space varies with void profile, complicating Alcock-Paczynski tests.
Abstract
We have derived estimators for the linear growth rate of density fluctuations using the cross-correlation function of voids and haloes in redshift space, both directly and in Fourier form. In linear theory, this cross-correlation contains only monopole and quadrupole terms. At scales greater than the void radius, linear theory is a good match to voids traced out by haloes in N-body simulations; small-scale random velocities are unimportant at these radii, only tending to cause small and often negligible elongation of the redshift-space cross-correlation function near its origin. By extracting the monopole and quadrupole from the cross-correlation function, we measure the linear growth rate without prior knowledge of the void profile or velocity dispersion. We recover the linear growth parameter to 9% precision from an effective volume of 3(Gpc/h)^3 using voids with radius…
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