English

CFHTLenS: Galaxy bias as function of scale, stellar mass, and colour. Conflicts with predictions by semi-analytic models

Astrophysics of Galaxies 2021-02-17 v1 Cosmology and Nongalactic Astrophysics

Abstract

Galaxy models predict a tight relation between the clustering of galaxies and dark matter on cosmological scales, but predictions differ notably in the details. We used this opportunity and tested two semi-analytic models by the Munich and Durham groups with data from the Canada-France-Hawaii Telescope Lensing Survey (CFHTLenS). For the test we measured the scale-dependent galaxy bias factor b(k)b(k) and correlation factor r(k)r(k) from linear to non-linear scales of k10hMpc1k\approx10\,h\,\rm Mpc^{-1} at two redshifts zˉ=0.35,0.51\bar{z}=0.35,0.51 for galaxies with stellar mass between 5×1095\times10^9 and 3×1011h702M3\times10^{11}\,h_{\rm 70}^{-2}\,{\rm M}_\odot. Our improved gravitational lensing technique accounts for the intrinsic alignment of sources and the magnification of lens galaxies for better constraints for the galaxy-matter correlation r(k)r(k). Galaxy bias in CFHTLenS increases with kk and stellar mass, it is colour-dependent, revealing the individual footprints of galaxy types. Despite a reasonable model agreement for the relative change with both scale and galaxy properties, there is a clear conflict for b(k)b(k) with no model preference: the model galaxies are too weakly clustered. This may flag a model problem at z0.3z\gtrsim0.3 for all stellar masses. As in the models, however, there is a high correlation r(k)r(k) between matter and galaxy density on all scales, and galaxy bias is typically consistent with a deterministic bias on linear scales. Only our blue and low-mass galaxies of about 7×109h702M7\times10^9\,h_{\rm 70}^{-2}\,{\rm M}_\odot at zˉ=0.51\bar{z}=0.51 show, contrary to the models, a weak tendency towards a stochastic bias on linear scales where rls=0.75±0.14(stat.)±0.06(sys.)r_{\rm ls}=0.75\pm0.14\,{\rm(stat.)}\pm0.06\,{\rm(sys.)}. This result is of interest for cosmological probes, such as EGE_{\rm G}, that rely on a deterministic galaxy bias.

Keywords

Cite

@article{arxiv.2012.12299,
  title  = {CFHTLenS: Galaxy bias as function of scale, stellar mass, and colour. Conflicts with predictions by semi-analytic models},
  author = {Patrick Simon and Stefan Hilbert},
  journal= {arXiv preprint arXiv:2012.12299},
  year   = {2021}
}

Comments

17+13(Appendix) pages, 13+6 figures; Figs. A.1-A.4 are key figures; accepted by A&A, in press; Monte-Carlo realisations of $b(k)$ and $r(k)$ will be provided as online material on http://cdsweb.u-strasbg.fr/cgi-bin/qcat?J/A+A/