Biasing from galaxy trough and peak profiles with the DES Y3 redMaGiC galaxies and the weak lensing mass map
arXiv:2509.18967 · doi:10.1093/mnras/stag006
Abstract
We measure the correspondence between the distribution of galaxies and matter around troughs and peaks in the projected galaxy density, by comparing \texttt{redMaGiC} galaxies () to weak lensing mass maps from the Dark Energy Survey (DES) Y3 data release. We obtain stacked profiles, as a function of angle , of the galaxy density contrast and the weak lensing convergence , in the vicinity of these identified troughs and peaks, referred to as `void' and `cluster' superstructures. The ratio of the profiles depend mildly on , indicating good consistency between the profile shapes. We model the amplitude of this ratio using a function that depends on cosmological parameters , scaled by the galaxy bias. We construct templates of using a suite of -body (`Gower Street') simulations forward-modelled with DES Y3-like noise and systematics. We discuss and quantify the caveats of using a linear bias model to create galaxy maps from the simulation dark matter shells. We measure the galaxy bias in three lens tomographic bins (near to far): for voids, and for clusters, assuming the best-fit \textit{Planck} cosmology. Similar values with shifts are obtained assuming the mean DES Y3 cosmology. The biases from troughs and peaks are broadly consistent, although a larger bias is derived for peaks, which is also larger than those measured from the DES Y3 -point analysis. This method shows an interesting avenue for measuring field-level bias that can be applied to future lensing surveys.
21 pages, 17 figures, matched to accepted version for MNRAS